Species delimitation and DNA barcoding for Chinese Mantodea (Insecta, Dictyoptera).

IF 1.3 3区 生物学 Q2 ZOOLOGY ZooKeys Pub Date : 2025-02-24 eCollection Date: 2025-01-01 DOI:10.3897/zookeys.1229.129123
Guangju Yang, Wenjing Wang, Yuwei Tong, Zhijun Zhou
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Abstract

DNA barcoding has been proposed as a rapid and reliable tool for animal identification and species delineation. The 5' end of the mitochondrial cytochrome c oxidase I gene (COI-5P) was sequenced for 318 specimens of 55 mantis species. Of these, 44 species had not been sequenced before, thus being new COI-5P barcode sequences to science. Another 61 COI-5P barcode sequences comprising five species were retrieved from the Barcode of Life Database (BOLD; www.boldsystems.org). Five species delimitation algorithms were employed to sort barcode sequences into Molecular Operational Taxonomic Units (MOTUs), namely the distance-based Barcode Index Number (BIN) System, Generalized Mixed Yule Coalescent (GMYC), a Java program that uses an explicit, determinate algorithm to define Molecular Operational Taxonomic Unit (jMOTU), Assemble Species by Automatic Partitioning (ASAP), and Bayesian implementation of the Poisson Tree Processes model (bPTP). All species, except Hierodulachinensis Werner, 1929, were recovered as monophyletic on the neighbor-joining (NJ) tree. For the final dataset, 379 COI-5P barcode sequences were assigned to 68 BINs. Fifty-five out of 68 BINs obtained were new to BOLD. The low level of BIN overlap with other nations highlights the importance of constructing a regional DNA barcode reference library. The algorithms ASAP, jMOTU, bPTP, and GMYC clustered barcode sequences into 32, 58, 68, and 60 MOTUs, respectively. All species delimitation algorithms (except ASAP analysis) split Anaxarchasinensis Beier, 1933, Anaxarchazhengi Ren & Wang, 1994, H.chinensis, Spilomantisoccipitalis (Westwood, 1889), Titanodulaformosana Giglio-Tos, 1912 into more than one MOTUs. All algorithms merged Hierodula sp. BCM-2019 and H.chinensis into the same MOTU, as for Tenoderaaridifolia Stoll, 1813 and Tenoderasinensis Saussure, 1871. More accurate identification results need to be supplemented by detailed morphological classification.

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Species中国螳螂亚目(昆虫亚目,双翅目)的划界和DNA条形码。
DNA条形码被认为是一种快速可靠的动物鉴定和物种描述工具。对55种螳螂318份标本的线粒体细胞色素c氧化酶I基因(COI-5P)的5′端进行了测序。其中有44种以前没有被测序过,因此是新的COI-5P条形码序列。另外从生命条形码数据库(BOLD;www.boldsystems.org)。采用5种物种划分算法将条形码序列划分为分子操作分类单元(MOTUs),即基于距离的条形码索引号(BIN)系统、广义混合Yule Coalescent (GMYC)、使用明确的确定算法定义分子操作分类单元(jMOTU)的Java程序、自动划分装配物种(ASAP)和贝叶斯实现的泊松树过程模型(bPTP)。除1929年的Hierodulachinensis Werner外,所有种属在相邻联结(NJ)树上均为单系。对于最终的数据集,379个COI-5P条形码序列被分配到68个bin中。获得的68个箱子中有55个是BOLD的新箱子。我国与其他国家的DNA条码重叠程度较低,这凸显了建立区域性DNA条码参考文库的重要性。ASAP、jMOTU、bPTP和GMYC算法分别将条形码序列聚类为32、58、68和60个motu。所有物种划分算法(ASAP分析除外)都将Anaxarchasinensis Beier, 1933, Anaxarchazhengi Ren & Wang, 1994, H.chinensis, spilomantisocciitalis (Westwood, 1889), Titanodulaformosana Giglio-Tos, 1912拆分为多个MOTUs。所有算法都将Hierodula sp. BCM-2019和H.chinensis合并到同一个MOTU中,Tenoderaaridifolia Stoll, 1813和Tenoderasinensis Saussure, 1871。更准确的鉴定结果需要辅以详细的形态分类。
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来源期刊
ZooKeys
ZooKeys 生物-动物学
CiteScore
2.70
自引率
15.40%
发文量
400
审稿时长
3 months
期刊介绍: ZooKeys is a peer-reviewed, open-access, online and print, rapidly produced journal launched to support free exchange of ideas and information in systematic zoology, phylogeny and biogeography. All papers can be freely copied, downloaded, printed and distributed at no charge. Authors and readers are thus encouraged to post the pdf files of published papers on homepages or elsewhere to expedite distribution. There is no charge for color.
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