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The draft genome of whitefly Bemisia tabaci MEAM1, a global crop pest, provides novel insights into virus transmission, host adaptation, and insecticide resistance.

机译:烟粉虱烟粉虱MEAM1(一种全球农作物害虫)的基因组草案为病毒传播,宿主适应和杀虫剂抗性提供了新颖的见解。

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摘要

Background: The whitefly Bemisia tabaci (Hemiptera: Aleyrodidae) is among the 100 worst invasive species in the world. As one of the most important crop pests and virus vectors, B. tabaci causes substantial crop losses and poses a serious threat to global food security. Results: We report the 615-Mb high-quality genome sequence of B. tabaci Middle East-Asia Minor 1 (MEAM1), the first genome sequence in the Aleyrodidae family, which contains 15,664 protein-coding genes. The B. tabaci genome is highly divergent from other sequenced hemipteran genomes, sharing no detectable synteny. A number of known detoxification gene families, including cytochrome P450s and UDP-glucuronosyltransferases, are significantly expanded in B. tabaci. Other expanded gene families, including cathepsins, large clusters of tandemly duplicated B. tabaci-specific genes, and phosphatidylethanolamine-binding proteins (PEBPs), were found to be associated with virus acquisition and transmission and/or insecticide resistance, likely contributing to the global invasiveness and efficient virus transmission capacity of B. tabaci. The presence of 142 horizontally transferred genes from bacteria or fungi in the B. tabaci genome, including genes encoding hopanoid/sterol synthesis and xenobiotic detoxification enzymes that are not present in other insects, offers novel insights into the unique biological adaptations of this insect such as polyphagy and insecticide resistance. Interestingly, two adjacent bacterial pantothenate biosynthesis genes, panB and panC, have been co-transferred into B. tabaci and fused into a single gene that has acquired introns during its evolution. Conclusions: The B. tabaci genome contains numerous genetic novelties, including expansions in gene families associated with insecticide resistance, detoxification and virus transmission, as well as numerous horizontally transferred genes from bacteria and fungi. We believe these novelties likely have shaped B. tabaci as a highly invasive polyphagous crop pest and efficient vector of plant viruses. The genome serves as a reference for resolving the B. tabaci cryptic species complex, understanding fundamental biological novelties, and providing valuable genetic information to assist the development of novel strategies for controlling whiteflies and the viruses they transmit.
机译:背景:烟粉虱烟粉虱(Hemiptera:Aleyrodidae)是世界上100种最严重的入侵物种之一。作为最重要的农作物病虫害和病毒载体之一,烟粉虱造成大量农作物损失,并对全球粮食安全构成严重威胁。结果:我们报告了烟粉虱中东小亚细亚1(MEAM1)的615-Mb高质量基因组序列,这是Aleyrodidae家族的第一个基因组序列,其中包含15,664个蛋白质编码基因。烟粉虱的基因组与其他测序的半足动物基因组高度不同,没有可检测的同义性。许多已知的排毒基因家族,包括细胞色素P450和UDP-葡糖醛酸糖基转移酶,在烟粉杆菌中得到了显着扩展。发现其他扩展的基因家族,包括组织蛋白酶,大量串联的烟粉虱特异性基因以及磷脂酰乙醇胺结合蛋白(PEBP),与病毒的获取,传播和/或杀虫剂抗性有关,可能有助于全球烟粉虱的侵袭性和有效的病毒传播能力。烟粉虱基因组中细菌或真菌的142种水平转移基因的存在,包括编码其他类昆虫中不存在的类hopanoid /固醇合成和异种解毒酶的基因,为这种昆虫的独特生物学适应提供了新的见解,例如多食性和抗杀虫剂。有趣的是,两个相邻的细菌泛酸生物合成基因panB和panC已被共转移到烟粉虱中,并融合到在进化过程中获得内含子的单个基因中。结论:烟粉虱基因组包含许多遗传学新颖性,包括与杀虫剂抗性,解毒和病毒传播相关的基因家族的扩展,以及来自细菌和真菌的许多水平转移基因。我们认为这些新颖性可能已将烟粉虱塑造成一种高度侵入性的多食性农作物害虫和植物病毒的有效载体。该基因组可作为解决烟粉虱隐性物种复合体,了解基本生物学新颖性以及提供有价值的遗传信息以协助开发控制粉虱及其传播病毒的新策略的参考。

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