Phylogenetics, Molecular Species Delimitation and Geometric Morphometrics of All Reddish-Brown Species in the Genus Neotriplax Lewis, 1887 (Coleoptera: Erotylidae: Tritomini)

被引:1
作者
Liu, Jing [1 ]
Xu, Huixin [1 ]
Wang, Ziqing [1 ]
Li, Panpan [2 ]
Yan, Zihan [3 ]
Bai, Ming [1 ,2 ]
Li, Jing [1 ]
机构
[1] Hebei Agr Univ, Coll Plant Protect, Baoding 071000, Peoples R China
[2] Chinese Acad Sci, Inst Zool, Key Lab Anim Biodivers Conservat & Integrated Pest, Beijing 100101, Peoples R China
[3] Shijiazhuang Ctr Dis Control & Prevent, Shijiazhuang 050011, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
DNA barcoding; phylogeny; systematics; species delimitation; geometric morphometrics; DNA; MITOCHONDRIAL; DIVERSITY; HISTORY; LIFE; LEPIDOPTERA; DELINEATION; HYMENOPTERA; TEMPERATURE; GENITALIA;
D O I
10.3390/insects15070508
中图分类号
Q96 [昆虫学];
学科分类号
摘要
Simple Summary: Due to the instability of interspecific morphological characteristics and the significant convergence phenomenon, it is difficult to identify most species of Neotriplax based on morphology. Through integrated research on the reddish-brown species of Neotriplax, which feature many phenotypic similarities, and by comprehensively utilizing morphology, molecular phylogeny, and geometric morphometrics, the relationship among all these species was reconstructed. The taxonomic status within the genus was partly clarified, with three new species being identified: N. qinghaiensis sp. nov., N. maoershanensis sp. nov., and N. guangxiensis sp. nov. To date, five species of reddish-brown Neotriplax have been described, but their highly similar body color and other phenotypic traits make accurate taxonomy challenging. To clarify species-level taxonomy and validate potential new species, the cytochrome oxidase subunit I (COI) was used for phylogenetic analysis and the geometric morphometrics of elytron, pronotum, and hind wing were employed to distinguish all reddish-brown Neotriplax species. Phylogenetic results using maximum likelihood and Bayesian analyses of COI sequences aligned well with the current taxonomy of the Neotriplax species group. Significant K2P divergences, with no overlap between intra- and interspecific genetic distances, were obtained in Neotriplax species. The automatic barcode gap discovery (ABGD), assemble species by automatic partitioning (ASAP), and generalized mixed Yule coalescent (GMYC) approaches concurred, dividing the similar species into eight molecular operational taxonomic units (MOTUs). Geometric morphometric analysis using pronotum, elytron, hind wing shape and wing vein patterns also validated the classification of all eight species. By integrating these analytical approaches with morphological evidence, we successfully delineated the reddish-brown species of Neotriplax into eight species with three new species: N. qinghaiensis sp. nov., N. maoershanensis sp. nov., and N. guangxiensis sp. nov. Furthermore, we documented the first record of N. lewisii in China. This study underscores the utility of an integrative taxonomy approach in species delimitation within Neotriplax and serves as a reference for the taxonomic revision of other morphologically challenging beetles through integrative taxonomy.
引用
收藏
页数:25
相关论文
共 101 条
[1]   A field comes of age: geometric morphometrics in the 21st century [J].
Adams, Dean C. ;
Rohlf, F. James ;
Slice, Dennis E. .
HYSTRIX-ITALIAN JOURNAL OF MAMMALOGY, 2013, 24 (01) :7-14
[2]   The impact of species concept on biodiversity studies [J].
Agapow, PM ;
Bininda-Emonds, ORP ;
Crandall, KA ;
Gittleman, JL ;
Mace, GM ;
Marshall, JC ;
Purvis, A .
QUARTERLY REVIEW OF BIOLOGY, 2004, 79 (02) :161-179
[3]   Evolution of the male genitalia: morphological variation of the aedeagi in a natural population of Drosophila mediopunctata [J].
Andrade, Carlos A. C. ;
Vieira, R. D. ;
Ananina, G. ;
Klaczko, Louis B. .
GENETICA, 2009, 135 (01) :13-23
[4]  
Arrow G.J., 1925, The Fauna of British India, Including Ceylon and Burma, VVolume XVI, P416
[5]   TEMPERATURE AND ORGANISM SIZE - A BIOLOGICAL LAW FOR ECTOTHERMS [J].
ATKINSON, D .
ADVANCES IN ECOLOGICAL RESEARCH, VOL 25, 1994, 25 :1-58
[6]  
Bai Ming, 2017, Zoological Systematics, V42, P1, DOI 10.11865/zs.201701
[7]   Mandible evolution in the Scarabaeinae (Coleoptera: Scarabaeidae) and adaptations to coprophagous habits [J].
Bai, Ming ;
Li, Sha ;
Lu, Yuanyuan ;
Yang, Haidong ;
Tong, Yijie ;
Yang, Xingke .
FRONTIERS IN ZOOLOGY, 2015, 12
[8]   Evolutionary Constraints in Hind Wing Shape in Chinese Dung Beetles (Coleoptera: Scarabaeinae) [J].
Bai, Ming ;
McCullough, Erin ;
Song, Ke-Qing ;
Liu, Wan-Gang ;
Yang, Xing-Ke .
PLOS ONE, 2011, 6 (06)
[9]   Assessing Genetic Diversity in Four Stink Bug Species, Chinavia hilaris, Chlorochroa uhleri, Chlorochroa sayi, and Thyanta pallidovirens (Hemiptera: Pentatomidae), Using DNA Barcodes [J].
Barman, A. K. ;
Joyce, A. L. ;
Torres, R. ;
Higbee, B. S. .
JOURNAL OF ECONOMIC ENTOMOLOGY, 2017, 110 (06) :2590-2598
[10]  
BERVEN KA, 1983, AM ZOOL, V23, P85