[an error occurred while processing this directive] [an error occurred while processing this directive]
[an error occurred while processing this directive]2023年现生膜翅目新分类单元
收稿日期: 2024-07-15
录用日期: 2024-10-13
网络出版日期: 2024-12-15
基金资助
中国科学院战略生物资源计划(CAS-TAX-24-009);国家自然科学基金(32330013)
New taxa of extant Hymenoptera in 2023
Received date: 2024-07-15
Accepted date: 2024-10-13
Online published: 2024-12-15
Supported by
Biological Resources Programme, Chinese Academy of Sciences(CAS-TAX-24-009);National Natural Science Foundation of China(32330013)
膜翅目生物多样性丰富, 提供了重要的生态系统服务功能。基于数据库检索, 本文系统梳理并总结了2023年发表的现生膜翅目新分类单元。共纳入本年发表的297篇相关期刊论文, 涵盖了957个新分类单元, 包括23个新属、7个新亚属、920个新种、7个新亚种, 涉及17个总科、51个科和313个属。在各总科新种数量对比中, 姬蜂总科、蜜蜂总科和胡蜂总科新种数量最多, 分别约占新种总数的31.1% (286/920)、19.8% (182/920)和13.4% (123/920)。2023年共有57篇期刊论文涉及中国现生膜翅目新分类单元, 涵盖了151个新分类单元, 包括4个新属和103个新种(广腰亚目13种, 细腰亚目90种(针尾部21种, 寄生部69种)), 另有2个新记录属、2个新记录亚属和40个新记录种, 共涉及11个总科、26个科和62个属; 其中新属和新种涉及11个总科、26个科和54个属。中国现生膜翅目中, 姬蜂总科、小蜂总科和胡蜂总科发表新种数量最多, 分别约占中国现生膜翅目新种总数的35.9% (37/103)、24.3% (25/103)和17.5% (18/103)。从地理单元角度来看, 亚洲发表新种数量最多, 约占新种总数的47.5% (437/920); 洲级地理亚单元中, 东南亚发表新种数量最多, 约占新种总数的15.5% (143/920); 在国家和地区行政单元中, 中国发表新种数量最多, 约占新种总数的11.2% (103/920)。在涉及现生膜翅目新分类单元的75个期刊的297篇论文中, 有295篇英文论文、1篇中文论文、1篇西班牙语论文; 其中, 来自73个期刊的295篇论文涉及新种发表。2023年, 现生膜翅目新种命名人389人, 其中中国学者69人, 占比约17.7%。膜翅目新种正模保藏机构150家, 其中21家位于中国, 占比约14.0%。综上所述, 中国膜翅目分类在世界膜翅目分类中发挥着十分重要的作用。
曹焕喜 , 周青松 , 罗阿蓉 , 唐璞 , 李廷景 , 李泽建 , 陈华燕 , 牛泽清 , 朱朝东 . 2023年现生膜翅目新分类单元[J]. 生物多样性, 2024 , 32(11) : 24319 . DOI: 10.17520/biods.2024319
Aim: The order Hymenoptera encompasses rich biodiversity and provides essential ecosystem services. This study aims to catalogue and summarize new taxa of extant Hymenoptera based on published works in 2023.
Methods: We obtained and analyzed a total of 297 journal publications on the new taxa of extant Hymenoptera in 2023 by searching the available zoological databases.
Results: Across 297 journal articles, 957 new taxa were recognized, including 23 new genera, 7 new subgenera, 920 new species, 7 new subspecies, spanning 17 superfamilies, 51 families, and 313 genera. The superfamilies Ichneumonoidea, Apoidea, and Vespoidea display the highest number of new species, which accounts for approximately 31.1% (286/920), 19.8% (182/920), and 13.4% (123/920) of the total new species, respectively. In 2023, 57 journal articles detailing newly classified extant Hymenoptera taxa in China were published, comprising 151 new taxa. These include 4 new genera, 103 new species, as well as 2 newly recorded genera, 2 newly recorded subgenera and 40 newly recorded species. These taxa span 11 superfamilies, 26 families, and 62 genera. Notably, the superfamilies Ichneumonoidea, Chalcidoidea and Vespoidea account for the highest number of new species in Chinese extant Hymenoptera, contributing approximately 35.9% (37/103), 24.3% (25/103), and 17.5% (18/103) of the new Chinese species, respectively. Globally, Asia accounts for the highest number of newly described species with approximately 47.5% (437/920), and Southeast Asia leads the count at approximately 15.5% (143/920) of new species. At the national and regional administrative level, China contributed the highest number of new species, accounting for approximately 11.2% (103/920). Of the 297 articles published in 75 journals on the newly classified taxa of extant Hymenoptera, 295 were in English, 1 was in Chinese, and 1 in Spanish. Of these 297 articles, 295 reported the newly described species. In 2023, a total of 389 scholars contributed to naming Hymenoptera new species, including 69 scholars (17.7%) from China. Worldwide, 150 institutions preserved the holotypes of newly described Hymenoptera species, including 21 located in China, accounting for approximately 14.0% of the total.
Conclusion: Our results suggest China plays a key role in the global taxonomy of Hymenoptera.
Key words: Apocrita; Symphyta; new taxa; distribution of new taxa; China
[1] | Aguiar AP, Deans AR, Engel MS, Forshage M, Huber JT, Jennings JT, Johnson NF, Lelej AS, Longino JT, Lohrmann V, Mikó I, Ohl M, Rasmussen C, Taeger A, Yu DSK (2013) Order Hymenoptera. Zootaxa, 3703, 51-62. |
[2] | Cao HX, Niu ZQ, Tang P, Li T, Zhu CD (2021) New taxa and taxonomic changes of Hymenoptera from China in 2020. Biodiversity Science, 29, 1026-1034. (in Chinese with English abstract) |
[曹焕喜, 牛泽清, 唐璞, 李涛, 朱朝东 (2021) 中国膜翅目2020年新分类单元. 生物多样性, 29, 1026-1034.] | |
[3] | Cao HX, Luo AR, Niu ZQ, Zhang YZ, Xiao H, Zhu CD (2022) New taxa of the order Hymenoptera in 2021. Biodiversity Science, 30, 22162. (in Chinese with English abstract) |
[曹焕喜, 罗阿蓉, 牛泽清, 张彦周, 肖晖, 朱朝东 (2022) 2021年膜翅目新增分类单元. 生物多样性, 30, 22162.] | |
[4] | Cao HX, Jiang W, Ganbaatar B, Zhang D, Zhou QS, Aishan Z, Wang X, Tang P, Luo AR, Niu ZQ, Zhang YZ, Xiao H, Zhu CD (2023) New taxa of extant Hymenoptera in 2022. Biodiversity Science, 31, 23223. (in Chinese with English abstract) |
[曹焕喜, 蒋雯, Bolormaa Ganbaatar, 张丹, 周青松, 朱丽得孜?艾山, 王旭, 唐璞, 罗阿蓉, 牛泽清, 张彦周, 肖晖, 朱朝东,(2023) 2022年现生膜翅目新分类单元. 生物多样性, 31, 23223.] | |
[5] | Feinerer I, Hornik K, Meyer D (2008) Text mining infrastructure in R. Journal of Statistical Software, 25, 1-54. |
[6] | Goulet H, Huber JT (1993) Hymenoptera of the World: An Identification Guide to Families. Canada Communication Group, Ottawa. |
[7] | Hong DY, Zhuang WY, Zhu M, Ma KP, Wang XQ, Huang DW, Zhang YL, Ren GD, Bu WJ, Cai WZ, Ren D, Yang D, Liang AP, Bai FY, Zhang RZ, Lei FM, Li SQ, Kong HZ, Cai L, Dai YC, Zhu CD, Yang QS, Chen J, Sha ZL, Jiang JP, Che J, Wu DH, Li JT, Wang Q, Wei XL, Bai M, Liu XY, Chen XX, Qiao GX (2022) Positioning taxonomic research for the future. Zoological Systematics, 47, 185-187. |
[8] | Le Pennec E, Slowikowski K (2019) ggwordcloud: A Word Cloud Geom for ‘ggplot2’. R package version 0.5.0. https://CRAN.R-project.org/package=ggwordcloud. (accessed on 2024-07-06) |
[9] | Ma KP (2015) Species Catalogue of China: A remarkable achievement in the field of biodiversity science in China. Biodiversity Science, 23, 137-138. (in Chinese) |
[马克平 (2015) 中国生物多样性编目取得重要进展. 生物多样性, 23, 137-138.] | |
[10] | R Core Team (2024) R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, Vienna, Austria. https://www.R-project.org/. (accessed on 2024-07-06) |
[11] | Sharkey MJ, Baker A, McCluskey K, Smith A, Naik S, Ratnasingham S, Manjunath R, Perez K, Sones J, D’Souza M, St Jacques B, Hajibabaei M, Whitfield J, Arias D, Solis A, Metz M, Burns J, Zuniga R, Phillips-Rodriguez E, Espinoza B, Chacon I, Hebert P, Hallwachs W, Janzen D (2023) Minimalist revision of Mesochorus Gravenhorst, 1829 (Hymenoptera: Ichneumonidae: Mesochorinae) from área de Conservación Guanacaste, Costa Rica, with 158 new species and host records for 129 species Revista De Biologia Tropical, 71, e53316. |
[12] | Wheeler Q (2014) Are reports of the death of taxonomy an exaggeration? New Phytologist, 201, 370-371. |
[13] | Wickham H (2016) ggplot2:Elegant Graphics for Data Analysis. Springer-Verlag, New York. https://CRAN.R-project.org/package=ggplot2. (accessed on 2024-07-06) |
[14] | Wickham H (2019) stringr: Simple, Consistent Wrappers for Common String Operations. R package version 1.4.0. https://CRAN.R-project.org/package=stringr. (accessed on 2024-07-06) |
[15] | Wickham H, Fran?ois R, Henry L, Müller K (2021) dplyr: A Grammar of Data Manipulation. R package version 1.0.5. https://CRAN.R-project.org/package=dplyr. (accessed on 2024-07-06) |
[16] | Wickham H, Vaughan D, Girlich M (2023) tidyr: Tidy Messy Data. R package version 1.3.0. https://CRAN.R-project.org/package=tidyr. (accessed on 2024-07-06) |
[17] | Zhang ZQ (2011) Animal biodiversity: An introduction to higher-level classification and taxonomic richness. Zootaxa, 3148, 7-12. |
[18] | Zhu CD, Luo AR, Bai M, Orr MC, Hou ZE, Ge SQ, Chen J, Hu YB, Zhou XM, Qiao GX, Kong HZ, Lu LM, Jin XH, Cai L, Wei XL, Zhao RL, Wei M, Wang QF, Sha ZL, Lin Q, Meng Q, Jiang JP, Li JT, Che J, Jiang XL, Chen XY, Gao LM, Ren ZX, Xiang CL, Luo SX, Wu DH, Liu D, Peng YQ, Su T, Cai CY, Zhu TQ, Cai WZ, Liu XY, Li H, Xue HJ, Ye Z, Chen XX, Tang P, Wei SJ, Pang H, Xie Q, Zhang F, Zhang F, Peng XJ, Zhang AB, Gao TP, Zhou CF, Shao C, Ma LB, Wei ZM, Luan YX, Yin ZW, Dai W, Wei C, Huang XL, Liu JX, Chen XS, Yi TC, Zhang ZS, Aishan Z, Li Q, Hu HY (2022) A joint call for actions to advance taxonomy in China. Zoological Systematics, 47, 188-197. |
/
〈 |
|
〉 |