Showing posts with label Revision. Show all posts
Showing posts with label Revision. Show all posts

Saturday, July 11, 2026

[Botany • 2026] Nymphoides crucioides, N. miniata, N. thailandica, ... • Integration of Cytogenetics and Morphology for the Taxonomic Revision of Nymphoides (Menyanthaceae) in Thailand including Five New Species

 


Nymphoides miniata Noppornch. & Suwanph.,

in Suwanphakdee, Nopporncharoenkul et Hodkinson, 2026. 

Highlights: 
• A full revision of Thai Nymphoides based on morphology and cytogenetic evidence is provided.
• Cytogenetic and morphological evidence supports Nymphoides species boundaries.
• Ten Nymphoides species are described in Thailand, including five new endemic species
Abstract 
A taxonomic revision of Nymphoides (Menyanthaceae) in Thailand was undertaken using cytogenetics and morphology. Specimens were collected throughout Thailand. Cytogenetic analyses were conducted on living collections. The morphological characters used in the descriptions of all taxa were measured from living specimens, which were subsequently maintained for ex-situ conservation. We provide a new generic description, a key to species, and descriptions of all species. Line drawings are provided for the five new species and color photographic illustrations are provided for all taxa. Herbarium voucher specimens were prepared and deposited in Thai herbaria. Ten species are recognized in Thailand, including five new species described in the present study for the first time, namely Nymphoides chumphonense, N. crucioides, N. miniata, N. thailandica and N. thungyaiense. Cytogenetic evidence supports the proposed species boundaries of Thai Nymphoides.
 
Keywords: Aquatic plants, Terrarium plants, Tropical plants, Wetland


Nymphoides chumphonense Suwanph. 
Nymphoides crucioides Suwanph. & Hodk. 



Nymphoides miniata Noppornch. & Suwanph. 


Nymphoides thungyaiense Suwanph & Noppornch. 
 Nymphoides thailandica Suwanph. 

 
Chalermpol Suwanphakdee, Nattapon Nopporncharoenkul and Trevor R. Hodkinson. 2026. Integration of Cytogenetics and Morphology for the Taxonomic Revision of Nymphoides (Menyanthaceae) in Thailand including Five New Species. Aquatic Botany. 207, 104044. DOI: doi.org/10.1016/j.aquabot.2026.104044 

ðŸŒļ āļĄāļŦāļēāļ§ิāļ—āļĒāļēāļĨัāļĒāđ€āļāļĐāļ•āļĢāļĻāļēāļŠāļ•āļĢ์ āļžāļšāļšัāļ§āļšāļēāļŠāļ™ิāļ”āđƒāļŦāļĄ่āļ‚āļ­āļ‡āđ‚āļĨāļ 5 āļŠāļ™ิāļ” āļˆāļēāļāđāļŦāļĨ่āļ‡āļ™้āļģāļ‚āļ­āļ‡āļ›āļĢāļ°āđ€āļ—āļĻāđ„āļ—āļĒ āļš่āļ‡āļŠี้āļ–ึāļ‡āļ„āļ§āļēāļĄāļĢ่āļģāļĢāļ§āļĒāļ—āļĢัāļžāļĒāļēāļāļĢāļžืāļŠāļ‚āļ­āļ‡āđ„āļ—āļĒ āđāļĨāļ°āļ„āļ§āļēāļĄāļŠāļģāļ„ัāļāļ‚āļ­āļ‡āļ‡āļēāļ™āļ§ิāļˆัāļĒāļ§ิāļ—āļĒāļēāļĻāļēāļŠāļ•āļĢ์āļžื้āļ™āļāļēāļ™ āļ‚āļ­āļ‡āļŠāļ–āļēāļšัāļ™āļāļēāļĢāļĻึāļāļĐāļē💚
āļ™ัāļāļ§ิāļˆัāļĒ āļĄāļ āļ™āļģāđ‚āļ”āļĒ āļĢāļĻ.āļ”āļĢ. āđ€āļ‰āļĨิāļĄāļžāļĨ āļŠุāļ§āļĢāļĢāļ“āļ ัāļāļ”ี āļˆāļēāļāļ āļēāļ„āļ§ิāļŠāļēāļžāļĪāļāļĐāļĻāļēāļŠāļ•āļĢ์ āļ„āļ“āļ°āļ§ิāļ—āļĒāļēāļĻāļēāļŠāļ•āļĢ์ āļĄāļŦāļēāļ§ิāļ—āļĒāļēāļĨัāļĒāđ€āļāļĐāļ•āļĢāļĻāļēāļŠāļ•āļĢ์ āļ„้āļ™āļžāļšāļšัāļ§āļšāļēāļŠāļ™ิāļ”āđƒāļŦāļĄ่āļ‚āļ­āļ‡āđ‚āļĨāļāļˆāļģāļ™āļ§āļ™ 5 āļŠāļ™ิāļ” āđ‚āļ”āļĒāļ•ีāļžิāļĄāļž์āđ€āļœāļĒāđāļžāļĢ่āļāļēāļĢāļ„้āļ™āļžāļšāļ™ี้āđƒāļ™āļ§āļēāļĢāļŠāļēāļĢ Aquatic Botany āļ‰āļšัāļšāļ›ี 2026 āļāļēāļĢāļ„้āļ™āļžāļšāļ„āļĢั้āļ‡āļ™ี้āđ€āļ›็āļ™āļāļēāļĢāļšูāļĢāļ“āļēāļāļēāļĢāļ§ิāļˆัāļĒāļĢ่āļ§āļĄāļĢāļ°āļŦāļ§่āļēāļ‡āļŦāļ™่āļ§āļĒāļ‡āļēāļ™āļ‹ึ่āļ‡āļ›āļĢāļ°āļāļ­āļšāļ”้āļ§āļĒ āļ”āļĢ. āļ“ัāļāļžāļĨ āļ™āļžāļžāļĢāđ€āļˆāļĢิāļāļุāļĨ āļ™ัāļāļ§ิāļˆัāļĒ āļˆāļēāļāļ­āļ‡āļ„์āļāļēāļĢāļžิāļžิāļ˜āļ ัāļ“āļ‘์āļ§ิāļ—āļĒāļēāļĻāļēāļŠāļ•āļĢ์āđāļŦ่āļ‡āļŠāļēāļ•ิ (āļ­āļžāļ§āļŠ) āđāļĨāļ° Prof. Dr. Trevor R. Hodkinson āļˆāļēāļāļ—āļĢิāļ™ิāļ•ี้āļ„āļ­āļĨāđ€āļĨāļˆ āļĄāļŦāļēāļ§ิāļ—āļĒāļēāļĨัāļĒāđāļŦ่āļ‡āļāļĢุāļ‡āļ”ัāļšāļĨิāļ™ āļ›āļĢāļ°āđ€āļ—āļĻāđ„āļ­āļĢ์āđāļĨāļ™āļ”์ āđ‚āļ”āļĒāđ€āļ›็āļ™āļāļēāļĢāļšูāļĢāļ“āļēāļāļēāļĢāļ§ิāļˆัāļĒāļĢ่āļ§āļĄāļ—āļēāļ‡āļ”้āļēāļ™āļ­āļ™ุāļāļĢāļĄāļ§ิāļ˜āļēāļ™āļžืāļŠ āļŠัāļ“āļāļēāļ™āļ§ิāļ—āļĒāļēāđāļĨāļ°āđ€āļ‹āļĨāļĨ์āļ§ิāļ—āļĒāļē 
.
āļĢāļĻ.āļ”āļĢ. āđ€āļ‰āļĨิāļĄāļžāļĨ āļŠุāļ§āļĢāļĢāļ“āļ ัāļāļ”ี  āļāļĨ่āļēāļ§āļ§่āļē āļžืāļŠāļŠāļุāļĨāļšัāļ§āļšāļē (Nymphoides) āļ§āļ‡āļĻ์ Menyanthaceae āđ€āļ›็āļ™āļžืāļŠāļ™้āļģāļ—ี่āļĄีāļāļēāļĢāđƒāļŠ้āļ›āļĢāļ°āđ‚āļĒāļŠāļ™์āļ—āļēāļ‡āļ”้āļēāļ™āļāļēāļĢāđƒāļŠ้āđ€āļ›็āļ™āļžืāļŠāļ›āļĢāļ°āļ”ัāļš āđāļĨāļ°āļœัāļāļžื้āļ™āļš้āļēāļ™ āđƒāļ™āļ›āļĢāļ°āđ€āļ—āļĻāđ„āļ—āļĒāđ€āļ„āļĒāļĄีāļĢāļēāļĒāļ‡āļēāļ™ 5 āļŠāļ™ิāļ” āļˆāļēāļāļāļēāļĢāļĻึāļāļĐāļēāļ§ิāļˆัāļĒāļžāļšāļ§่āļē āļšัāļ§āļšāļēāļ‚āļ­āļ‡āļ›āļĢāļ°āđ€āļ—āļĻāđ„āļ—āļĒāļĄีāļ—ั้āļ‡āļŦāļĄāļ” 10 āļŠāļ™ิāļ” āđāļĨāļ°āđ€āļ›็āļ™āļžืāļŠāļŠāļ™ิāļ”āđƒāļŦāļĄ่āļ‚āļ­āļ‡āđ‚āļĨāļ 5 āļŠāļ™ิāļ” āđāļ•่āļĨāļ°āļŠāļ™ิāļ”āļĄีāļĻัāļāļĒāļ āļēāļžāđƒāļ™āļāļēāļĢāļ™āļģāđ„āļ›āđƒāļŠ้āļ›āļĢāļ°āđ‚āļĒāļŠāļ™์āļ—āļēāļ‡āļ”้āļēāļ™āļāļēāļĢāđƒāļŠ้āđ€āļ›็āļ™āļžืāļŠāļ›āļĢāļ°āļ”ัāļšāļŠāļ§āļ™āļ‚āļ§āļ” āļŠāļ§āļ™āļāļĢāļ°āļˆāļ āđāļĨāļ°āļ•ู้āđ„āļĄ้āļ™้āļģ āļ­ีāļāļ—ั้āļ‡āļĒัāļ‡āđ€āļ™้āļ™āđƒāļŦ้āļ•āļĢāļ°āļŦāļ™ัāļāļ–ึāļ‡āļāļēāļĢāļ­āļ™ุāļĢัāļāļĐ์āđāļŦāļĨ่āļ‡āļ™้āļģāļˆืāļ” āļ‹ึ่āļ‡āđ€āļ›็āļ™āļ—ี่āļ­āļĒู่āļ‚āļ­āļ‡āļžืāļŠāļŠāļ™ิāļ”āđ€āļŦāļĨ่āļēāļ™ี้ āļš่āļ‡āļŠี้āļ–ึāļ‡āļ„āļ§āļēāļĄāļĢ่āļģāļĢāļ§āļĒāļ—āļĢัāļžāļĒāļēāļāļĢāļžืāļŠāļ‚āļ­āļ‡āļ›āļĢāļ°āđ€āļ—āļĻāđ„āļ—āļĒ āđāļĨāļ°āļ„āļ§āļēāļĄāļŠāļģāļ„ัāļāļ‚āļ­āļ‡āļ‡āļēāļ™āļ§ิāļˆัāļĒāļ§ิāļ—āļĒāļēāļĻāļēāļŠāļ•āļĢ์āļžื้āļ™āļāļēāļ™ 
āļšัāļ§āļšāļē 5 āļŠāļ™ิāļ”āļ™ี้āļ›āļĢāļ°āļāļ­āļšāļ”้āļ§āļĒ 
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1. āļŠāļēāļĒāļ•ิ้āļ‡ āļŦāļĢืāļ­ āļŠāļēāļĒāļ•ิ่āNymphoides chumphonense Suwanph. 
 āļžāļšāđƒāļ™āđāļŦāļĨ่āļ‡āļ™้āļģāļˆืāļ”āļ•ื้āļ™āđ† āļšāļĢิāđ€āļ§āļ“ āļˆ. āļŠุāļĄāļžāļĢ āđāļĨāļ°āļŠุāļĢāļēāļĐāļŽāļĢ์āļ˜āļēāļ™ี  āđ‚āļ”āļĒāļ•ั้āļ‡āļŠื่āļ­āļ•āļēāļĄ āļˆ. āļŠุāļĄāļžāļĢ āļŠāļ–āļēāļ™āļ—ี่āļžāļšāļ•ัāļ§āļ­āļĒ่āļēāļ‡āđ€āļ›็āļ™āļ—ี่āđāļĢāļ āļžืāļŠāļŠāļ™ิāļ”āļ™ี้āļĄีāļāļēāļĢāđƒāļŠ้āļ›āļĢāļ°āđ‚āļĒāļŠāļ™์āđ€āļ›็āļ™āļœัāļāļžื้āļ™āļš้āļēāļ™ āđ‚āļ”āļĒāļิāļ™āļŠāļ”āļัāļšāļ™้āļģāļžāļĢิāļ āđāļĨāļ°āļĄีāļ‚āļēāļĒāđƒāļ™āļ•āļĨāļēāļ” āļ–ูāļāļˆัāļ”āļŠāļ–āļēāļ™āļ°āđƒāļāļĨ้āļŠูāļāļžัāļ™āļ˜ุ์ (Endangered: EN) āđ€āļ™ื่āļ­āļ‡āļˆāļēāļāļāļēāļĢāļŠูāļāđ€āļŠีāļĒāđāļŦāļĨ่āļ‡āļ—ี่āļ­āļĒู่ āđāļĨāļ°āļāļēāļĢāļĢุāļāļĢāļēāļ™āļ‚āļ­āļ‡āļ™้āļģāđ€āļ„็āļĄ āļ­ีāļāļ—ั้āļ‡āļ•ิāļ”āļœāļĨāđāļĨāļ°āđ€āļĄāļĨ็āļ”āđ„āļ”้āļ™้āļ­āļĒ
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2. āļšัāļ§āļšāļēāļŦัāļ§āļĨูāļāļĻāļĢ Nymphoides crucioides Suwanph. & Hodk. 
 āļžāļšāđƒāļ™āđāļŦāļĨ่āļ‡āļ™้āļģāļˆืāļ”āļ•ื้āļ™āđ† āđāļĨāļ°āđƒāļ™āļ™āļēāļ‚้āļēāļ§ āļšāļĢิāđ€āļ§āļ“ āļˆ. āļ›āļĢāļēāļˆีāļ™āļšุāļĢี āđāļĨāļ°āļĒāļ°āļĨāļē āđ‚āļ”āļĒāļ•ั้āļ‡āļŠื่āļ­āļ•āļēāļĄāļĨัāļāļĐāļ“āļ°āļ”āļ­āļāļ—ี่āļ„āļĨ้āļēāļĒāļāļēāļāļšāļēāļ—  āļžืāļŠāļŠāļ™ิāļ”āļ™ี้āļĄีāļĻัāļāļĒāļ āļēāļžāđƒāļ™āļāļēāļĢāļ™āļģāđ„āļ›āđƒāļŠ้āđ€āļ›็āļ™āđ„āļĄ้āļ›āļĢāļ°āļ”ัāļšāļŠāļ§āļ™āļ‚āļ§āļ” āļŠāļ§āļ™āļāļĢāļ°āļˆāļ āđāļĨāļ°āļ•ู้āđ„āļĄ้āļ™้āļģ āļĄีāļ—ั้āļ‡āļ—ี่āļĄีāļŸāļ­āļĢ์āļĄāļ™้āļģāđāļĨāļ°āļŸāļ­āļĢ์āļĄāļšāļ āļ–ูāļāļˆัāļ”āļŠāļ–āļēāļ™āļ°āđƒāļāļĨ้āļŠูāļāļžัāļ™āļ˜ุ์āļ­āļĒ่āļēāļ‡āļĒิ่āļ‡ (Critically Endangered - CR) āđ€āļ™ื่āļ­āļ‡āļˆāļēāļāļāļēāļĢāļŠูāļāđ€āļŠีāļĒāđāļŦāļĨ่āļ‡āļ—ี่āļ­āļĒู่ āđāļĨāļ°āļāļēāļĢāđƒāļŠ้āļŠāļēāļĢāļāļģāļˆัāļ”āļ§ัāļŠāļžืā 
.
3. āļšāļēāļˆิ๋āļ§ Nymphoides miniata Noppornch. & Suwanph. 
 āđ€āļ›็āļ™āļšัāļ§āļšāļēāļ—ี่āļĄีāļ‚āļ™āļēāļ”āđ€āļĨ็āļāļ—ี่āļŠุāļ”āļ‚āļ­āļ‡āđ‚āļĨāļ āļžāļšāđƒāļ™āđāļŦāļĨ่āļ‡āļ™้āļģāļˆืāļ”āļ•ื้āļ™āđ† āđāļĨāļ°āđƒāļ™āļ™āļēāļ‚้āļēāļ§ āļšāļĢิāđ€āļ§āļ“ āļˆ. āļ›āļĢāļēāļˆีāļ™āļšุāļĢี āđ‚āļ”āļĒāļ•ั้āļ‡āļŠื่āļ­āļ•āļēāļĄāļĨัāļāļĐāļ“āļ°āļ”āļ­āļāļ—ี่āļĄีāļ‚āļ™āļēāļ”āđ€āļĨ็āļāļ—ี่āļŠุāļ”āļ‚āļ­āļ‡āđ‚āļĨāļ āļžืāļŠāļŠāļ™ิāļ”āļ™ี้āļĄีāļĻัāļāļĒāļ āļēāļžāđƒāļ™āļāļēāļĢāļ™āļģāđ„āļ›āđƒāļŠ้āđ€āļ›็āļ™āđ„āļĄ้āļ›āļĢāļ°āļ”ัāļšāļŠāļ§āļ™āļ‚āļ§āļ” āļŠāļ§āļ™āļāļĢāļ°āļˆāļ āđāļĨāļ°āļ•ู้āđ„āļĄ้āļ™้āļģ āļĄีāļ—ั้āļ‡āļ—ี่āļĄีāļŸāļ­āļĢ์āļĄāļ™้āļģāđāļĨāļ°āļŸāļ­āļĢ์āļĄāļšāļ āļ–ูāļāļˆัāļ”āļŠāļ–āļēāļ™āļ°āđƒāļāļĨ้āļŠูāļāļžัāļ™āļ˜ุ์āļ­āļĒ่āļēāļ‡āļĒิ่āļ‡ (Critically Endangered - CR) āđ€āļ™ื่āļ­āļ‡āļˆāļēāļāļāļēāļĢāļŠูāļāđ€āļŠีāļĒāđāļŦāļĨ่āļ‡āļ—ี่āļ­āļĒู่ āđāļĨāļ°āļāļēāļĢāđƒāļŠ้āļŠāļēāļĢāļāļģāļˆัāļ”āļ§ัāļŠāļžืā 
.
4. āļšāļēāļŠāļĒāļēāļĄ Nymphoides thailandica Suwanph. 
āļšัāļ§āļšāļēāļ—ี่āļĄีāļ‚āļ™āļēāļ”āđ€āļĨ็āļ āļžāļšāđƒāļ™āđāļŦāļĨ่āļ‡āļ™้āļģāļˆืāļ”āļ•ื้āļ™āđ† āđāļĨāļ°āđƒāļ™āļ™āļēāļ‚้āļēāļ§ āļšāļĢิāđ€āļ§āļ“ āļˆ. āļ›āļĢāļēāļˆีāļ™āļšุāļĢี āļāļĢāļ°āļšี่ āđāļĨāļ°āļĒāļ°āļĨāļē āđ‚āļ”āļĒāļ•ั้āļ‡āļŠื่āļ­āļ•āļēāļĄāļ›āļĢāļ°āđ€āļ—āļĻāđ„āļ—āļĒ āļžืāļŠāļŠāļ™ิāļ”āļ™ี้āļĄีāļĻัāļāļĒāļ āļēāļžāđƒāļ™āļāļēāļĢāļ™āļģāđ„āļ›āđƒāļŠ้āđ€āļ›็āļ™āđ„āļĄ้āļ›āļĢāļ°āļ”ัāļšāļŠāļ§āļ™āļ‚āļ§āļ” āļŠāļ§āļ™āļāļĢāļ°āļˆāļ āđāļĨāļ°āļ•ู้āđ„āļĄ้āļ™้āļģ āļĄีāļ—ั้āļ‡āļ—ี่āļĄีāļŸāļ­āļĢ์āļĄāļ™้āļģāđāļĨāļ°āļŸāļ­āļĢ์āļĄāļšāļ āļ–ูāļāļˆัāļ”āļŠāļ–āļēāļ™āļ°āđƒāļāļĨ้āļŠูāļāļžัāļ™āļ˜ุ์āļ­āļĒ่āļēāļ‡āļĒิ่āļ‡ (Critically Endangered - CR) āđ€āļ™ื่āļ­āļ‡āļˆāļēāļāļāļēāļĢāļŠูāļāđ€āļŠีāļĒāđāļŦāļĨ่āļ‡āļ—ี่āļ­āļĒู่ āđāļĨāļ°āļāļēāļĢāđƒāļŠ้āļŠāļēāļĢāļāļģāļˆัāļ”āļ§ัāļŠāļžืā 
.
5. āļ”āļēāļ§āļĢāļ”āļē Nymphoides thungyaiense Suwanph & Noppornch. 
āđ€āļ›็āļ™āļšัāļ§āļšāļēāļ—ี่āļĄีāļ‚āļ™āļēāļ”āļ„่āļ­āļ™āļ‚้āļēāļ‡āđƒāļŦāļ่ āļžāļšāđƒāļ™āđāļŦāļĨ่āļ‡āļ™้āļģāļˆืāļ”āļ•ื้āļ™āđ† āļšāļĢิāđ€āļ§āļ“ āļˆ. āļ•āļēāļ āđ‚āļ”āļĒāļ•ั้āļ‡āļŠื่āļ­āļ•āļēāļĄāđāļŦāļĨ่āļ‡āļ—ี่āļžāļš āļ–ูāļāļˆัāļ”āļŠāļ–āļēāļ™āļ°āđƒāļāļĨ้āļŠูāļāļžัāļ™āļ˜ุ์āļ­āļĒ่āļēāļ‡āļĒิ่āļ‡ (Critically Endangered - CR) āđ€āļ™ื่āļ­āļ‡āļˆāļēāļāļžāļšāļ›āļĢāļ°āļŠāļēāļāļĢāđ€āļžีāļĒāļ‡āđāļŦāļĨ่āļ‡āđ€āļ”ีāļĒāļ§  

Sunday, June 28, 2026

[Cnidaria • 2026] Hemicorallium osmanthogemmum • A New Species of Hemicorallium (Anthozoa: Octocorallia: Coralliidae), along with a revised identification key to species of the genus


Hemicorallium osmanthogemmum
Koido, 2026 
 
 
Abstract
A new precious coral species, Hemicorallium osmanthogemmum sp. nov. (Scleralcyonacea, Coralliidae), retrieved from a depth of 550 m in Kochi Prefecture, Japan, is described, and an updated identification key for the genus Hemicorallium is provided. The new species is confirmed as belonging to the genus Hemicorallium based on the presence of nonretractile but contractile autozooids with an ovate-cylindrical shape and sclerites comprising elongated rods, 6–8-radiates and double clubs, with elongated rods present exclusively in the tentacles. Moreover, the species is distinct from all its congeners in that it has orange coenenchyme and a pink axis, with autozooids distributed only on the front side of the branch, forming clusters at the branch tips. These morphological features differ from those of all previously described species of Hemicorallium, and molecular analysis of mitochondrial sequences (16S, ND1, ND2, ND3, ND6, COI, MSH, and IGR1) further corroborates the validity of this new species. This is the first report of Hemicorallium off the coast of Kochi Prefecture, Japan.

Key words: Cnidaria, deep-sea corals, precious coral, Scleralcyonacea, Western Pacific
 
Hemicorallium osmanthogemmum sp. nov. (Holotype: KBF-OA-00436).
 A. ‘‘Front’’ and ‘‘back’’ of colony; B. Branch, showing autozooid (AZ); C. Exposed axis with the coenenchyme removed; D, E. Surface detail of branch, showing autozooid (AZ), siphonozooid (SZ), burrows (Bu), cluster of autozooids (CL), warts on coenenchyme surface (W), and commensal polychaete (Po).
 Scale bars: 50 mm (A); 10 mm (B–E).


Class Octocorallia Haeckel, 1866
Order Scleralcyonacea McFadden, van Ofwegen & Quattrini, 2022

Family Coralliidae Lamouroux, 1812

Genus Hemicorallium Gray, 1867
Hemicorallium osmanthogemmum sp. nov. 
 New Japanese name. Kinmokusei-mizo-sango.

Diagnosis. The colony branches in one plane, and anastomoses are present only where broken branches come into contact with other branches. Autozooids are contracted but not retracted, and they are distributed only on one side of the colony. Spacing is almost absent on the twigs, and clusters are formed at the tips. The axis has no pits beneath the autozooids and is pale pink to pink in colour. Sclerites are predominantly radiate, and double clubs are rare. Warty rods are present only in the tentacles.
 


Tatsuki Koido. 2026. A New Species of Hemicorallium (Anthozoa, Octocorallia, Coralliidae), along with a revised identification key to species of the genus. ZooKeys. 1277: 339-354.  DOI: doi.org/10.3897/zookeys.1277.184620 [20 Apr 2026]

Monday, June 15, 2026

[Arachnida • 2026] Orchestina nojimai & O. insulana • Taxonomic Revision of the Jumping Goblin Spider Genus Orchestina Simon, 1882 (Araneae: Oonopidae) in Japan with Descriptions of Two New Species


A–B. Orchestina flava Ono, 2005, females. 
C. Orchestina insulana sp. nov., female; D. O. sanguinea Oi, 1955;
Orchestina saltitans Banks, 1894; O. okitsui Oi, 1958, male. 

Suzuki, 2026

Abstract 
The goblin spider genus Orchestina Simon, 1882 (Araneae: Oonopidae) in Japan has been revised, recognizing nine species including two new species and four species newly recorded from Japan: O. okitsui Oi, 1958 (♂♀), O. flava Ono, 2005 (♂♀), O. sanguinea Oi, 1955 (♀), O. saaristoi Henrard & JocquÃĐ, 2012 (♂♀, new record), O. saltitans Banks, 1894 (♂♀, new record), O. colubrina Liu, Henrard & Xu, 2019 (♂, new record), O. pavesii (Simon, 1873) (♂♀, new record), Orchestina nojimai sp. nov. (♀) and O. insulana sp. nov. (♀). A literature survey revealed errors in the correspondences between figures and captions in a pictorial book, which likely led to the misidentification of the synanthropically introduced species O. saltitans as the forest-dwelling native species O. okitsui. The misrepresentation also gave rise to the erroneous assumption that the male of O. sanguinea had been described, although no male specimen has actually been reported. In addition, Orchestina flagella Saaristo & van Harten, 2006, is here synonymized with O. saltitans (O. flagella syn. nov.). This study provides photographs and illustrations of nine Orchestina species, including the type specimens of O. okitsui, O. flava and O. sanguinea, notes on their habitats, distribution maps, supplemental molecular data, and a graphical character matrix of Orchestina species in Japan.

Keywords: Arachnida, misidentification, type material, synanthropic species, Synspermiata

Live specimens of species of Orchestina Simon, 1882.
A. Orchestina okitsui Oi, 1958, male (YSPC-Op-1). B. Orchestina saltitans Banks, 1894, male (YSPC-Op-2).

Live specimens of species of Orchestina Simon, 1882.
 A–B. Orchestina flava Ono, 2005, females (TKPM-AR, voucher specimen numbers not specified). C. Orchestina insulana sp. nov., female (TKPM-AR 3489). D. Orchestina sanguinea Oi, 1955, female (TKPM-AR 3491).
 

Yuya SUZUKI. 2026. Taxonomic Revision of the Jumping Goblin Spider Genus Orchestina Simon, 1882 (Araneae: Oonopidae) in Japan with Descriptions of Two New Species. European Journal of Taxonomy.  1068: 1–49. DOI: doi.org/10.5852/ejt.2026.1068.3293 [2026-06-12]

Thursday, June 11, 2026

[Entomology • 2026] Kongobatha spinosistyla, K. serpens & K. rufilineaStriking, Slender, and Secretly Spinose: A Revision of the Snake Mantises of the Genus Kongobatha (Mantodea: Nanomantidae: Fulciniinae: Neomantini)


Kongobatha spinosistyla Connors, 

in Connors, Yeeles, Lach et  Rentz, 2026
 
Abstract
Kongobatha is one of the most commonly encountered of all Australian mantis genera, and yet despite this, very little is known about the taxonomy or biology of the genus. Described to include a single Australian species, K. diademata, the only subsequent work on the genus has been the description of a second species from New Guinea, K. papua. We here describe three additional speciesK. spinosistyla Connors sp. nov., K. serpens Connors sp. nov., and K. rufilinea Connors sp. nov., and redescribe K. diademata and K. papua in detail, the latter of which is recorded from Australia for the first time. We also describe for the first time the unusual, heavily spinose styli of male Kongobatha. These are apparently unique among Mantodea as a whole, but their function remains unknown. 

Mantodea, mantis, snake mantis, Australia, New Guinea, taxonomy, styli, citizen science

Male and female Kongobatha spinosistyla (Rainforest Snake Mantis), Kuranda, North Queensland.
photo: Maurice Allan


MATTHEW G. CONNORS, PETER YEELES, LORI LACH and DAVID C.F. RENTZ. 2026. Striking, Slender, and Secretly Spinose: A Revision of the Snake Mantises of the Genus Kongobatha (Mantodea: Nanomantidae: Fulciniinae: Neomantini).  Zootaxa. 5807(1); 45-84. DOI: doi.org/10.11646/zootaxa.5807.1.2 [2026-05-08]

Wednesday, June 3, 2026

[Entomology • 2026] Stygioides hecateA Golden Shadow in the Mountains: A New Stygioides Bruand, 1853 (Lepidoptera: Cossidae) from Turkey


 Stygioides hecate Japaridze & Junnilainen, 

in JaparidzeJunnilainen et Sihvonen, 2026.  
 
Abstract
A new species of the genus Stygioides Bruand, 1853 (Lepidoptera: Cossidae) is described from central Turkey. Stygioides hecate Japaridze & Junnilainen sp. nov. is based on material collected in the Sultan DaðlarÃ― Mountains (Konya Province). The new species is characterised by its distinct wing coloration in females. Adults are diurnal, as in other members of the genus, and were collected by daytime netting. DNA barcode data (COI) are provided and compared with available sequences in the Barcode of Life Data Systems (BOLD Systems), supporting the distinctiveness of the new taxon. The discovery of this species increases the number of Stygioides species to 10 and those from Turkey to three, thus contributing to a better understanding of the diversity and distribution of the genus in the Palaearctic realm.

Lepidoptera, carpenter moths, DNA barcoding, Heteroneura, Middle East

Adults of Stygioides hecate Japaridze & Junnilainen sp. nov.
 A–B. Paratype male, dorsal and ventral view and associated labels.
C–D. Holotype female, dorsal and ventral view and associated labels.
Scale bar: 10 mm

Stygioides hecate Japaridze & Junnilainen sp. nov. 

Diagnosis: Males of S. hecate Japaridze & Junnilainen sp. nov. differ from S. nupponenorum by the presence of a distinct white tip of the male abdomen and white scales on the antennae, the absence of brown piliform scales on the abdomen, a narrower apex of the valvae, and a shorter saccus (Figs 1A–1B, 2 C; cf. LingenhÃķle et al. 2016: fig. 6; Yakovlev 2011: fig. 35). Females are readily distinguished from all congeners by the presence of golden-yellow scales on the antennae, head, thorax and wings (Figs 1C–1D; cf. LingenhÃķle et al. 2017: figs 1–3, 9; Japaridze et al. 2025b: fig. 22).

Etymology: The species name is derived from Hecate, the ancient Greek goddess associated with the night and commonly depicted carrying yellow or golden torches. This name alludes to the coloration of the holotype female, which is predominantly black with yellow-golden scales on the wings, thorax, head, and antennae.


LASHA-GIORGI JAPARIDZE, JARI JUNNILAINEN and PASI SIHVONEN. 2026. A Golden Shadow in the Mountains: A New Stygioides Bruand, 1853 (Lepidoptera: Cossidae) from Turkey.  Zootaxa. 5821(2); 274-280. DOI: doi.org/10.11646/zootaxa.5821.2.8 [2026-05-29]

Friday, May 15, 2026

[Arachnida • 2026] Kambiwa itacarambi, K. maracas, Sertana capivara, S. sagarana, ... • Ninetine Spiders in Brazilian Caatinga and Cerrado: Revision of Kambiwa and Description of Sertana gen. nov. (Araneae: Pholcidae), with analyses of predicted range shifts due to climate change


A–B. Kambiwa itacarambi Huber sp. nov., ♂♀ with egg sac from NW of Itacarambi.
E–F. K. coribe Huber sp. nov., ♂♀ with egg sac from E of SÃĢo Felix do Coribe.
G–H. K. maracas Huber sp. nov., ♂♀ with egg sac from S of Contendas do SincorÃĄ.
K–L. K. mucuge Huber sp. nov., ♂♀ from NE of MucugÊ.

in Huber, Meng, KrÃĄl, Herrera et Carvalho., 2026. 

Abstract
Among daddy long-legs spiders (Pholcidae), Ninetinae is a distinctive subfamily that comprises short-legged, fast-running spiders. Most species are small or tiny, lead reclusive lives, and are largely restricted to semiarid regions, which together has made them poorly collected and poorly known. Here, we build on focused recent collections in the Brazilian Cerrado and Caatinga biomes, two of the World’s richest tropical savanna, xeric shrubland and thorn forest regions. Our focus is on the taxonomy of the genus Kambiwa Huber, 2000 that previously contained only two nominal species, each known from a single locality. Combining morphological and molecular (CO1 barcode) data, we describe six new species in Kambiwa (K. brumado Huber sp. nov.; K. coribe Huber sp. nov.; K. ibo Huber sp. nov.; K. itacarambi Huber sp. nov.; K. maracas Huber sp. nov.; K. mucuge Huber sp. nov.), redescribe the type species K. neotropica (Kraus, 1957), and synonymize the monotypic genus Pemona Huber, 2019 with Kambiwa, resulting in the new combination K. sapo (Huber, 2019) comb. nov. In addition, we describe a new genus of superficially Kambiwa-like spiders from the same geographic region: Sertana Huber gen. nov., with five new species (S. bumba Huber gen. et sp. nov.; S. capivara Huber gen. et sp. nov.; S. igapora Huber gen. et sp. nov.; S. lapa Huber gen. et sp. nov.; S. sagarana Huber gen. et sp. nov.). In line with previous efforts to explore the processes underlying the geographical distribution of Ninetinae, we also evaluate the potential effects of future climate change on the environmental niche occupied by three selected species of Kambiwa. Our results corroborate previous findings that demonstrate an altitude-mediated response to climate change. For a highland species, areas of high habitat suitability almost disappear under more severe climate change scenarios. For two species with lowland records, the areas with high habitat suitability increase significantly. Finally, we analyze the male karyotype of K. ibo which consists of 28 chromosomes including a X1X2X3Y system. All chromosomes are biarmed except for the Y chromosome. This contribution concludes a series of publications on the subfamily Ninetinae. We use this opportunity to summarize current knowledge about the subfamily, to discuss open questions and knowledge gaps, and to suggest further research topics focusing on these tiny but exceptional pholcids.

Keywords: CO1 barcodes, climate change, karyotype, niche modeling, taxonomy

Kambiwa Huber, 2000; live specimens from Brazil; all at same scale.
A–B. Kambiwa itacarambi Huber sp. nov., ♂♀ with egg sac from NW of Itacarambi. C–D. K. ibo Huber sp. nov., ♂♀ with egg sac from NE of Lagoa Grande. E–F. K. coribe Huber sp. nov., ♂♀ with egg sac from E of SÃĢo Felix do Coribe.
G–H. K. maracas Huber sp. nov., ♂♀ with egg sac from S of Contendas do SincorÃĄ. I–J. K. brumado Huber sp. nov., ♂♀ with egg sac from W of Marcolino Moura. K–L. K. mucuge Huber sp. nov., ♂♀ from NE of MucugÊ.

Kambiwa Huber, 2000 spp., typical habitats; all localities are in Brazil.
A. Bahia, between IbÃģ and CuraÃ§ÃĄ; Kambiwa sp. aff. neotropica. B. Bahia, E of SÃĢo Felix do Coribe; type locality of Kambiwa coribe Huber sp. nov. 
C. Bahia, NE of Brumado; type locality of K. brumado Huber sp. nov. D. Bahia, SW of Maracas; type locality of K. maracas Huber sp. nov.
E. Bahia, NE of MucugÊ; type locality of K. mucuge Huber sp. nov. F. Minas Gerais, NW of Itacarambi; type locality of K. itacarambi Huber sp. nov.

Kambiwa brumado Huber sp. nov.
 K. coribe Huber sp. nov.
K. ibo Huber sp. nov.
K. itacarambi Huber sp. nov.
 K. maracas Huber sp. nov.
 K. mucuge Huber sp. nov.
K. sapo (Huber, 2019) comb. nov.  

 Sertana Huber gen. nov. 
S. bumba Huber gen. et sp. nov. 
 S. capivara Huber gen. et sp. nov. 
 S. igapora Huber gen. et sp. nov.
S. lapa Huber gen. et sp. nov.
 S. sagarana Huber gen. et sp. nov. 
 

Bernhard A. Huber, Guanliang Meng, Jiří KrÃĄl, IvalÚ M. Ávila Herrera, Leonardo S. Carvalho. 2026. Ninetine Spiders in Brazilian Caatinga and Cerrado: Revision of Kambiwa and Description of Sertana gen. nov. (Araneae, Pholcidae), with analyses of predicted range shifts due to climate change. European Journal of Taxonomy. 1054(1), 1–126. DOI: doi.org/10.5852/ejt.2026.1054.3276 [2026-05-14]

Tuesday, May 5, 2026

[Crustacea • 2026] Frodromia elegans, F. granulosa, ... • Revision of Frodromia McLay, 1993 (Brachyura: Dromiidae) and the Status of Frodromiinae Å tevčić, 2005


A, Frodromia atypica (Sakai, 1936),; B, F. reticulata (Sakai, 1974);
C, F. elegans, new species, holotype male, Taiwan; D, F. granulosa, new species, holotype male, Vanuatu;
 E, F, F. iners, new species, holotype male, Philippines. 
Ng, 2026 

RAFFLES BULLETIN OF ZOOLOGY. 74
Photographs: C, T.-Y. Chan; D, J.C.E. Mendoza; E, F, P.K.L. Ng.

Abstract
 The taxonomy of the West Pacific dromiid genus, Frodromia McLay, 1993, is revised using a suite of characters pertaining to the carapace form and armature, proportions of the ambulatory dactylus, and structures of the pereopods, thoracic sternum, male pleon, and gonopods. The identity of the poorly known type species, F. atypica (Sakai, 1936), is clarified and the species is rediagnosed and illustrated based on the single non-type dried specimen available. Frodromia reticulata (Sakai, 1974) is also rediagnosed on the basis of a series of Japanese specimens. The material identified as F. atypica by McLay (1993) from New Caledonia and the Indonesian Moluccas is here shown to belong to two new species, F. granulosa and F. caileani, respectively; with F. granulosa also reported from Vanuatu. Two other new speciesF. elegans and F. iners, are described from the South China Sea and the Philippines, respectively. As a result, Frodromia is hereby classified in the subfamily Frodromiinae Å tevčić, 2005, which was originally established as a tribe in Sphaerodromiinae Guinot & Tavares, 2003, and which is here redefined and rediagnosed.

Key words. sponge crab, Dromioidea, systematics, subfamily definition, new species, key to taxa, Indo-West Pacific

Colour in life. A, Frodromia atypica (Sakai, 1936), after Sakai (1936: pl. 2 fig. 1); B, F. reticulata (Sakai, 1974), after Sakai (1976: pl. 5 fig. 1);
C, F. elegans, new species, holotype male (6.6 × 7.5 mm) (ZRC 2024.0144), Taiwan; D, F. granulosa, new species, holotype male (6.5 × 7.1 mm) (ZRC 2024.0517), Vanuatu;
E, F, F. iners, new species, holotype male (6.3 × 7.0 mm) (ZRC 2024.0518), Philippines [partly covered with sand particles and debris].
Photographs: C, T.-Y. Chan; D, J.C.E. Mendoza; E, F, P.K.L. Ng.

Frodromia granulosa 
F. caileani 
F. elegans 
 F. iners


PETER K. L. NG. 2026. Revision of Frodromia McLay, 1993 (Crustacea: Brachyura: Dromiidae) and the Status of Frodromiinae Å tevčić, 2005. RAFFLES BULLETIN OF ZOOLOGY. 74: 332–358. DOI: 10.26107/RBZ-2026-0023  [4 May 2026]

Monday, April 6, 2026

[Cnidaria • 2026] Rhytisma acoronatum, R. calyaceum, R. karibu, ... • Phylogenomics-guided Revision of the Genus Rhytisma Alderslade, 2000 (Octocorallia: Malacalcyonacea: Lemnaliidae), with Descriptions of Six New Sspecies

 

(a, b) Rhytisma karibu sp. nov.
(c, d) R. acoronatum sp. nov. 
(e, f) R. oblongum sp. nov.
 (c) R. inaequale sp. nov., with expanded polyps 
(d) R. calyaceum sp. nov., with partially expanded polyps 
(e) R. sperkolae sp. nov.polyps partly expanded

Samimi-Namin, Benayahu, Durkin, Ekins, Quattrini & McFadden, 2026
Photographs by Y. Benayahu, and M. Ekins.
 
The genus Rhytisma Alderslade, 2000 (Octocorallia: Malacalcyonacea: Lemnaliidae), formerly comprising four nominal species (R. fulvum, R. fuscum, R. monticulum and R. rubiginosum), is revised using an integrative approach. We combine morphological and phylogenomic data for newly collected and historical specimens. A neotype is designated for R. fulvum and a lectotype for R. fuscum to stabilise the application of these names. Six new species are described from the Indo-Pacific: R. acoronatum sp. nov., R. calyaceum sp. nov., R. oblongum sp. nov., R. inaequale sp. nov., R. karibu sp. nov. and R. sperkolae sp. nov. Species delimitation is supported by discrete combinations of morphological characters – particularly those of the tentacle and polyp sclerites – as well as multi-locus DNA barcoding and phylogenomic analyses of conserved elements (UCE and exon loci). Our findings highlight the diagnostic value of tentacle sclerites and reveal extensive species-level diversity that was previously obscured by insufficient morphological examination. The revised genus currently comprises 10 valid species, many of which display restricted geographic distributions, reflecting patterns of regional endemism in Indo-Pacific octocoral assemblages. These results underscore the importance of integrative taxonomy in uncovering hidden biodiversity.
 
Keywords: biogeography, DNA barcoding, endemism, Indo-Pacific, integrative taxonomy, neotype, soft corals, species delimitation, taxonomic revision, ultraconserved elements

Underwater images of Rhytisma species in their respective type localities.
(a, b) Rhytisma fulvum yellow colour and grey colour morphs, polyps partly expanded
(c) R. inaequale sp. nov., with expanded polyps (d) R. calyaceum sp. nov., with partially expanded polyps
(e) R. sperkolae sp. nov., mat morphology reflects underlying irregular reef substrate, polyps partly expanded. (f) R. monticulum with expanded polyps.
Photographs by (a–c, e) Y. Benayahu, (d, f) M. Ekins.

Underwater images of Rhytisma species in their respective type localities.
(a, b) Rhytisma karibu sp. nov., growing on seagrass blades and reef substrate (c, d) R. acoronatum sp. nov. (e, f) R. oblongum sp. nov. 
Photographs by (a, b, e, f) Y. Benayahu, and (c, d) M. Ekins.

Rhytisma acoronatum sp. nov., R. calyaceum sp. nov., 
R. oblongum sp. nov., R. inaequale sp. nov., 
R. karibu sp. nov. and R. sperkolae sp. nov. 


Kaveh Samimi-Namin, Yehuda Benayahu, Kathleen M. Durkin, Merrick Ekins, Andrea M. Quattrini and Catherine S. McFadden. 2026. Phylogenomics-guided Revision of the Genus Rhytisma Alderslade, 2000 (Octocorallia: Malacalcyonacea: Lemnaliidae), with Descriptions of Six New Sspecies. Invertebr Syst. 40(3); IS25068. DOI: doi.org/10.1071/IS25068   [30 March 2026]

Wednesday, March 11, 2026

[Herpetology • 2021] Hemidactylus cinganji, H. faustus, ... • Between Sand, Rocks and Branches: An Integrative Taxonomic Revision of Angolan Hemidactylus Goldfuss, 1820 (Squamata, Gekkonidae), with Description of Four New Species


  Hemidactylus cinganji
H. carivoensis
H. faustus 
H. pfindaensis 
 LobÃģn-Rovira, Conradie, Iglesias, Ernst, Veríssimo, Baptista & Vaz Pinto, 2021 
       
 
Abstract
The taxonomy of Angolan Hemidactylus has recently been revised. However, the lack of fresh material for some groups and regions, has led to the misidentification of some taxa and an underestimation of actual diversity in others. To shed light on the evolutionary history and systematics of Angolan Hemidactylus, we generated a new phylogenetic hypothesis for the group, and updated the taxonomy following an integrative approach. This resulted in the description of four new species (Hemidactylus pfindaensis sp. nov., H. faustus sp. nov., H. carivoensis sp. nov. and H. cinganji sp. nov.), the reevaluation of two recently described species (H. vernayi and H. paivae) and the synonymization of a recently described species (H. hannahsabinnae). We estimate divergence times for these lineages, providing a preliminary interpretation of their speciation process. Moreover, we suggest and outline 13 Angolan Main Biogeographic Units (AMBUs) in the area, defining a new biogeographic context for future works on Angolan herpetofauna. We now recognize eleven Hemidactylus species in Angola, and we provide here a new morphological key for Angolan Hemidactylus to help with identifications and species assignments in this group.

Keywords: Angola, biogeography, Gekkota, Hemidactylus, systematics, taxonomy

Hemidactylus bayonii-group 
Hemidactylus vernayi Ceríaco, Agarwal, Marques and Bauer 2020


Hemidactylus pfindaensis sp. nov.

Etymology: The name “pfindaensis” derives from the local word “pfinda” which in Kikongo – the main language used in Uíge Province and northwestern Angola – refers to a “gallery forest” or a “continuous block of thick forest”, the main habitat type associated with the species.


Hemidactylus longicephalus-group

Hemidactylus paivae Ceríaco, Agarwal, Marques and Bauer 2020

A – From top, dorsolateral view of Hemidactylus cinganji sp. nov. (FKH0435), H. benguellensis (FKH0413) and H. carivoensis sp. nov. (MNCN 50543);
B – records of H. benguellensis–group (purple color represents records of H. cinganji sp. nov.; blue H. benguellensis; dark green H. carivoensis sp. nov.; circles represent genetically assigned records, while triangles represent historical or non-genetically assigned records by Ceríaco et al. 2020a; color stars depict type or neotype localities; black star depicts original type locality of H. benguellensis assigned by Bocage (1893);
C – habitat of H. cinganji sp. nov. at Ebanga; D – habitat of H. carivoensis sp. nov between Dombe–Echimina. E – habitat of H. benguellensis at Tchivinguiro.
 Photos Javier LobÃģn–Rovira (A–D) and William R. Branch (E).

Hemidactylus benguellensis-group

Hemidactylus cinganji sp. nov.

Etymology: The name “cinganji” is a widespread traditional word used in Angolan local languages that represents an ancestral spiritual entity that reincarnates assuming different physical forms in different places and occasions. This name is suitable as the new species corresponds to a taxon that was first described under a different name, then became lost and now resurfaces after its original name had been hijacked by a surrogate sister-species. The species epithet is used as a neuter singular noun in opposition to the generic name.


Hemidactylus carivoensis sp. nov.

Etymology: The species epithet “carivoensis” refers to the Farm Carivo, an old estate situated along the banks of the mid-lower Coporolo River on the coastal plain of Benguela Province, and where most of the type series was collected. The species proved to be common in the area, and by recognizing the farm, we also acknowledge the ongoing support from the owners to researchers, similar to the Chapmans nearly a century ago.



Species not assignable to specific species groups

Hemidactylus faustus sp. nov.   
  
Etymology: The name “faustus” applies to a Latin word that designate ‘good luck’, evoking the serendipitous discovery of this species. The species epithet is used as a masculine adjective singular. The first specimen was found by Beatriz Vaz Pinto, daughter of PVP, under a small stone which was removed while preparing a campsite. This unexpected find led to further collecting of this new and previously unrecorded form, albeit from a locality that had been regularly surveyed since the mid-19th century.  
 

 Javier LobÃģn-Rovira, Werner Conradie, David Buckley Iglesias, Raffael Ernst, Luis Veríssimo, Ninda Baptista and Pedro Vaz Pinto. 2021. Between Sand, Rocks and Branches: An Integrative Taxonomic Revision of Angolan Hemidactylus Goldfuss, 1820, with Description of Four New Species. Vertebrate Zoology. 71: 465-501. DOI: 10.3897/vz.71.e64781

Saturday, March 7, 2026

[Entomology • 2026] Staphylus neideae, S. ricardoi, ... • Integrative Taxonomic Revision of Capilla Grishin, 2023, Subgenus of Staphylus Godman & Salvin, 1896 (Lepidoptera: Hesperiidae: Pyrginae), with Descriptions of Four New Species


[M–P] Staphylus (C.) nicoleae Lemes, sp. nov.; [Q, R] S. (C.) neivae sp. nov.
[S, T] S. (C.) ricardoi Lemes, sp. nov.; [U–X] S. (C.) neideae Lemes, sp. nov.

in Lemes, Siewert, Mielke, Casagrande et Warren, 2026. 

Abstract
The taxonomy of the subgenus Staphylus (Capilla) is reviewed, including redescriptions of known species, identification keys, and detailed distribution maps. The female genitalia of Staphylus (Capillaazteca (Scudder, 1872), S. (C.) caribbea (Williams & Bell, 1940), S. (C.) corumba (Williams & Bell, 1940), S. (C.) eryx Evans, 1953, S. (C.) tucumanus (PlÃķtz, 1884) and S. (C.) tyro (Mabille, 1878) are described and illustrated for the first time. Four new species are described: Staphylus (Capillanicoleae Lemes sp. nov. from Colombia and Venezuela, S. (C.) ricardoi Lemes, sp. nov. from Peru, S. (C.) neideae Lemes sp. nov. and S. (C.) neivae sp. nov. from Brazil. Pholisora imperspicua Hayward, 1940 is a syn. nov. of Staphylus (C.) lizeri lizeri (Hayward, 1938) and Hesperia melangon epicaste Mabille, 1903 is a syn. nov. of Staphylus (C.) melangon melangon (Mabille, 1883). Neotypes are designated for Staphylus epicaste Mabille, 1903, Nisoniades tucumanus PlÃķtz, 1884 and Staphylus fascia Hayward, 1933. Lectotypes are designated for Pholisora azteca Scudder, 1872, Bolla machuca Schaus, 1913, Helias tyro Mabille, 1878, Staphylus anginus Schaus, 1902, Hesperia melangon 1883, Hesperia musculus Burmeister, 1875 and Helias aurocapilla Staudinger, 1876.

Keywords: Butterflies, Cytochrome oxidase subunit 1, Neotropical, Skippers

Species of Staphylus (Capilla) in dorsal and ventral views.  
A–D S. (C.) ascalon: A, B male (Brazil, SÃĢo Paulo, Teodoro Sampaio, Morro do Diabo, OM 17.996); C, D female (Brazil, Minas Gerais, Passa Quatro, DZ 46.813).
E, F S. (C.) buena: male (Bolivia, Santa Cruz, Buenavista, holotype, CMNH 7188).
G–J S. (C.) caribbea: G, H male (Costa Rica, LimÃģn Province, La Bomba, MGCL 1112082); I, J female (Costa Rica, LimÃģn Province, Germania, MGCL 1112078).
K–N S. (C.) eryx: K, L male (Brazil, ParÃĄ, SantarÃĐm, DZ 46.566); M, N female (Brazil, ParÃĄ, SantarÃĐm, MGCL 1112109).
O–R S. (C.) corumba: O, P male (Brazil, ParÃĄ, Santo AntÃīnio do TauÃĄ, Reserva Sonho Azul, DZ 45.033); Q, R female (Brazil, ParÃĄ, Santo AntÃīnio do TauÃĄ, Reserva Sonho Azul, DZ 45.005).
S, T S. (C.) lizeri album: male (Brazil, Minas Gerais, Carmo do Rio Claro, OM 2.788). U–X S. (C.) lizeri lizeri: U, V male (Peru, Madre de Dios, Tambopata Reserve, DZ 46.176); W, X female (Colombia, Meta, Villavencio, Bosque Bavaria, DZ 45.526).
 Scale bar = 1 cm.

Species of Staphylus (Capilla) in dorsal and ventral views.
A–D S. (C.) tucumanus: A, B male (Argentina, Salta, Pichanal, DZ 45.125); C, D female (Paraguay, Presidente Hayes, Estancia Victoria, Rio Norte Lindo, OM 37.963).
E–H S. (C.) azteca: E, F male (El Salvador, La Libertad, Santa Tecla, MGCL 1112133); G, H female (Mexico, Chiapas, San JerÃģnimo, DZ 45.085).
I–L S. (C.) tyro: I, J male (Venezuela, Aragua, Ocumare de la Costa, DZ 22.893); K, L female (Venezuela, Aragua, Ocumare de la Costa, DZ 46.608).

M–P Staphylus (C.) nicoleae sp. nov.: M, N male (Colombia, Cundinamarca, El Boqueron, holotype, DZ 45.163); O, P female (Colombia, no specific locality, paratype, NHMUK015052554);
Q, R S. (C.) neivae sp. nov.: male (Brazil, Paraíba, SÃĢo JosÃĐ da Mata, Campina Grande, holotype, DZ 44.944).
S, T S. (C.) ricardoi sp. nov.: male (Peru, Tingo Maria, holotype, OM 41.643).
U–X S. (C.) neideae sp. nov.: U, V male (Brazil, Minas Gerais, Brumadinho, holotype, OM 55.562); W, X female (Brazil, Minas Gerais, Brumadinho, paratype, OM 55.476).
Scale bar = 1 cm.

M–P Staphylus (C.) nicoleae sp. nov.: M, N male (Colombia, Cundinamarca, El Boqueron, holotype, DZ 45.163); O, P female (Colombia, no specific locality, paratype, NHMUK015052554);
Q, R S. (C.) neivae sp. nov.: male (Brazil, Paraíba, SÃĢo JosÃĐ da Mata, Campina Grande, holotype, DZ 44.944). 
S, T S. (C.) ricardoi sp. nov.: male (Peru, Tingo Maria, holotype, OM 41.643).
U–X S. (C.) neideae sp. nov.: U, V male (Brazil, Minas Gerais, Brumadinho, holotype, OM 55.562); W, X female (Brazil, Minas Gerais, Brumadinho, paratype, OM 55.476).
Scale bar = 1 cm.


Staphylus (Capillanicoleae Lemes sp. nov. from Colombia and Venezuela, 
S. (C.) ricardoi Lemes, sp. nov. from Peru, 
S. (C.) neideae Lemes sp. nov. and S. (C.) neivae sp. nov. from Brazil.  


 JosÃĐ Ricardo Assmann Lemes, Ricardo Russo Siewert, Olaf Hermann Hendrik Mielke, Mirna Martins Casagrande and Andrew David Warren. 2026. Integrative Taxonomic Revision of Capilla Grishin, 2023, Subgenus of Staphylus Godman & Salvin, 1896 (Lepidoptera, Hesperiidae, Pyrginae, Carcharodini), with Descriptions of Four New Species. Arthropod Systematics & Phylogeny. 84: 123-173. DOI: doi.org/10.3897/asp.84.e179328 [24 Feb 2026]

Friday, March 6, 2026

[Mammalogy • 2026] Found Alive After 6,000 years: Modern Records of An ‘Extinct’ Papuan Marsupial, Dactylonax kambuayai (Marsupialia: Petauridae), with A Revision of the Systematics and Zoogeography of the Genus Dactylonax


Dactylonax kambuayai (Aplin, 1999) 
Pygmy Long-fingered Possum

in Flannery, Aplin, Bocos, Koungoulos et Helgen, 2026. 
Records of the Australian Museum. 78
 painting by Peter Schouten. 

Abstract
The Pygmy Long-fingered Possum, Dactylonax kambuayai, is the smallest of the striped possums (the petaurid subfamily Dactylopsilinae). It is a ‘Lazarus species’, found living when previously known only from fossils. Recently collected museum specimens, and observations and photographs of living individuals, correspond taxonomically to the only previously reported specimens of D. kambuayai, which are fossil remains from a nearby Holocene location, all occurring in low- to mid-elevation rainforests on the Vogelkop Peninsula of New Guinea. Together with the recent discovery of another Lazarus possum, ‘Petauroidesayamaruensis, they represent the only marsupials known as modern animals only from low elevations (below 1000 m) on the Vogelkop Peninsula. Both of these species are diminutive species with enigmatic natural histories. In reviewing the systematics of this species, we demonstrate the distinctness of Dactylonax as a genus-level taxon, and clarify species boundaries in this genus. Dactylonax palpator, the type species of Dactylonax, was previously considered to be a widespread montane taxon, but is recognized here as two separate species: D. palpator is restricted to the Arfak Mountains of the Vogelkop, while D. ernstmayri is widely distributed on the New Guinean Central Cordillera and the Huon Peninsula at elevations above 800 m. Dactylonax palpator replaces, or co-occurs with, D. kambuayai at elevations between around 900 m and 1,400 m on the Vogelkop. We hypothesize that colonization of montane habitats on the Vogelkop by a D. kambuayai-like ancestor gave rise to the larger bodied D. palpator, and dispersal of this lineage to montane habitats in the Central Cordillera gave rise to the highly specialized D. ernstmayri. The fact that the montane taxon of the Vogelkop Dactylonax species couplet was able to migrate eastwards, while the lowland taxon was not, suggests that an unusual elevational zoogeographic filter was in play. We observe that D. kambuayai is thus far recorded from sites where the other small petaurid of New Guinea, Petaurus papuanus, is not recorded or is uncommon.

Keywords: Marsupialia; Petauridae; Dactylonaxkambuayaipalpatorernstmayri; Lazarus taxon; Vogelkop; New Guinea; systematic review


Photograph of a living female Dactylonax kambuayai, Klalik area, Vogelkop.
Photo: Carlos Bocos.

Dactylonax kambuayai (Aplin, 1999)

Hands of the four extant genera (and three subfamilies) of family Petauridae.
Palmar surfaces of the manus, showing key differences in phalangeal proportions, claws, palmar pads, furring, and patagial development in
(a) Dactylopsila, subfamily Dactylopsilinae (represented by Dactylopsila trivirgata); (b) Dactylonax, subfamily Dactylopsilinae (represented by Dactylonax palpator);
(c) Gymnobelideus, represented by G. leadbeateri (Gymnobelideus McCoy, 1867 is type genus of the new subfamily proposed here: Gymnobelideinae Helgen & Flannery, subfam. nov., Gymnobelideus leadbeateri McCoy, 1867 is type species of Gymnobelideus, the new subfamily and its type genus are both monotypic);
(d) Petaurus, subfamily Petaurinae (represented by P. norfolcensis). Modified from Flannery (1994:61–65). Drawings by Peter Schouten.

Dactylonax kambuayai (Aplin, 1999)—a painting by Peter Schouten.
 This artwork is based on the two modern specimens in the Australian Museum (M.56796 adult female and pouch young M.56797).


Tim F. Flannery; Kenneth P. Aplin; Carlos Bocos; Loukas G. Koungoulos; Kristofer M. Helgen. 2026. Found Alive After 6,000 years: Modern Records of An ‘Extinct’ Papuan Marsupial, Dactylonax kambuayai (Marsupialia: Petauridae), with A Revision of the Systematics and Zoogeography of the Genus DactylonaxRecords of the Australian Museum. 78; 17-34. DOI: doi.org/10.3853/j.2201-4349.78.2026.3003 [06 March 2026]