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多位点系统发育分析揭示了物种界限,并发现了两种新的昆虫病原线虫物种,即新种 和 新种 。

Multi-locus phylogenetic analyses uncover species boundaries and reveal the occurrence of two new entomopathogenic nematode species, n. sp. and n. sp.

作者信息

Machado Ricardo A R, Bhat Aashaq Hussain, Abolafia Joaquín, Muller Arthur, Bruno Pamela, Fallet Patrick, Arce Carla C M, Turlings Ted C J, Bernal Julio S, Kajuga Joelle, Waweru Bancy, Toepfer Stefan

机构信息

Experimental Biology Research Group. Institute of Biology. Faculty of Sciences. University of Neuchâtel. Rue Emile-Argand 11, 2000 Neuchâtel, Switzerland.

Department of Zoology, Government Degree College. Billawar-184204, Kathua, Jammu, Jammu and Kashmir, India.

出版信息

J Nematol. 2021 Nov 11;53. doi: 10.21307/jofnem-2021-089. eCollection 2021.

Abstract

Species of the nematode genus are important biological control agents against agricultural pests. The taxonomy of this group is still unclear as it currently relies on phylogenetic reconstructions based on a few genetic markers with little resolutive power, specially of closely related species. To fill this knowledge gap, we sequenced several phylogenetically relevant genetic loci and used them to reconstruct phylogenetic trees, to calculate sequence similarity scores, and to determine signatures of species- and population-specific genetic polymorphism. In addition, we revisited the current literature related to the description, synonymisation, and declaration as of species to compile taxonomically relevant morphological and morphometric characters, characterized new nematode isolates at the morphological and morphometrical level, and conducted self-crossing and cross-hybridization experiments. The results of this study show that the sequences of the mitochondrial cytochrome C oxidase subunit I (COI) gene provide better phylogenetic resolutive power than the sequences of nuclear rRNA genes and that this gene marker can phylogenetically resolve closely related species and even populations of the same species with high precision. Using this gene marker, we found two new species, n. sp. and n. sp. A detailed characterization of these species at the morphological and morphometric levels and nematode reproduction assays revealed that the threshold for species delimitation in this genus, using sequences, is 97% to 98%. Our study illustrates the importance of rigorous morphological and morphometric characterization and multi-locus sequencing for the description of new species within the genus , serves to clarify the phylogenetic relationships of this important group of biological control agents, and can inform future species descriptions to advance our efforts towards developing more tools for sustainable and environmentally friendly agriculture.

摘要

线虫属的物种是防治农业害虫的重要生物防治剂。该类群的分类学仍不明确,因为目前它依赖于基于少数分辨能力有限的遗传标记的系统发育重建,特别是对于亲缘关系密切的物种。为了填补这一知识空白,我们对几个系统发育相关的基因位点进行了测序,并利用它们重建系统发育树、计算序列相似性得分以及确定物种和种群特异性遗传多态性的特征。此外,我们重新审视了当前与该属物种的描述、同义化和声明相关的文献,以汇编分类学相关的形态和形态测量特征,在形态和形态测量水平上对新的线虫分离株进行表征,并进行自交和杂交实验。本研究结果表明,线粒体细胞色素C氧化酶亚基I(COI)基因的序列比核rRNA基因的序列具有更好的系统发育分辨能力,并且该基因标记可以在系统发育上高精度地分辨亲缘关系密切的物种甚至同一物种的不同种群。利用这个基因标记,我们发现了两个新物种,[新物种1名称]和[新物种2名称]。在形态和形态测量水平上对这些物种的详细表征以及线虫繁殖试验表明,使用[COI基因]序列,该属物种界定的阈值为97%至98%。我们的研究说明了严格的形态和形态测量表征以及多位点测序对于该属新物种描述的重要性,有助于阐明这一重要生物防治剂群体的系统发育关系,并可为未来的物种描述提供参考,以推动我们开发更多可持续和环境友好型农业工具的努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d369/8588743/49742bec687e/jofnem-53-089-g001.jpg

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