首页> 外文会议>International Symposium on Insect Vectors and Insect-Borne Diseases >Overview of the Phylogeny, Taxonomy and Diversity of the Leafhopper (Hemiptera: Auchenorrhyncha: Cicadomorpha: MembracoideaiCicadellidae) Vectors of Plant Pathogens
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Overview of the Phylogeny, Taxonomy and Diversity of the Leafhopper (Hemiptera: Auchenorrhyncha: Cicadomorpha: MembracoideaiCicadellidae) Vectors of Plant Pathogens

机译:叶蝉的系统发生,分类和多样性概述(Hemiptera:Auchenorrhyncha:Cicadomorpha:MembracodeagicaCadellidae植物病原体载体

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Comprising-20,000 described species, leafhoppers (Cicadellidae) are the largest family of sap-sucking herbivores and comprise the largest number of known vectors of plant pathogens of any insect family Although recent studies of tropical faunas indicate that the vast majority of extant species remain to be discovered, availability of new cybertaxonomic tools is enabling newly trained taxonomists to increase the rate of species discovery. Phylogenetic relationships among leafhoppers remain largely unexplored, but recent published phylogenies based on morphological and molecular data have begun to elucidate the phylogenetic status and relationships of previously recognized tribes and subfamilies. As a result of such studies, several changes to thehigher classification have been proposed, including changes to the concepts of subfamilies Cicadellinae, Delocephalinaeand Megophthalminae, the groups comprising the majority of known vector species. Taking newly available phylogenetic information intoaccount may help focus the ongoing search for competent vectors on the groups most closely related to known vector species. New molecular phylogenetic and functional genomic tools and techniques may facilitate more rapid and extensive surveys of the microbiota associated with non-pest leafhoppers and promote more comprehensive approaches to the study of the evolution of leafhopper-pathogen-plant associations.
机译:包含-20,000种描述的物种,叶蝉(Cicadellidae)是SAP吸吮食草动物中最大的家族,并且包括任何昆虫家族的植物病原体的最多植物病原体数量,尽管最近对热带动物群的研究表明绝大多数现存物种仍然存在被发现,新的讯讯人工工具的可用性是启用新培训的分类家,以提高物种发现的速度。叶蝉中的系统发育关系仍然很大程度上是未开发的,但近期基于形态学和分子数据的发表的文学发育者已经开始阐明先前公认的部落和亚属的系统发育状态和关系。由于这些研究,已经提出了对高速分类的几种变化,包括对亚科西米德利那德,Delocephalinaeand Megophthalminae的概念的变化,包括大多数已知载体物种的基团。采取新可用的系统发育信息陷入困境,可能有助于重点关注与已知载体物种最密切相关的群体的持续搜索。新的分子系统和功能性基因组工具和技术可以促进与非害虫叶片相关的微生物蛋白的更快速和广泛的调查,并促进更全面的方法来研究叶蝉病原植物关联的进化。

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