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Draft genome of the most devastating insect pest of coffee worldwide: the coffee berry borer Hypothenemus hampei

机译:世界上最具破坏性的咖啡害虫的基因组草案:咖啡果蛀虫Hypothenemus hampei

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摘要

The coffee berry borer, Hypothenemus hampei, is the most economically important insect pest of coffee worldwide. We present an analysis of the draft genome of the coffee berry borer, the third genome for a Coleopteran species. The genome size is ca. 163 Mb with 19,222 predicted protein-coding genes. Analysis was focused on genes involved in primary digestion as well as gene families involved in detoxification of plant defense molecules and insecticides, such as carboxylesterases, cytochrome P450, gluthathione S-transferases, ATP-binding cassette transporters, and a gene that confers resistance to the insecticide dieldrin. A broad range of enzymes capable of degrading complex polysaccharides were identified. We also evaluated the pathogen defense system and found homologs to antimicrobial genes reported in the Drosophila genome. Ten cases of horizontal gene transfer were identified with evidence for expression, integration into the H. hampei genome, and phylogenetic evidence that the sequences are more closely related to bacterial rather than eukaryotic genes. The draft genome analysis broadly expands our knowledge on the biology of a devastating tropical insect pest and suggests new pest management strategies.
机译:咖啡浆果蛀虫,Hypothenemus hampei,是全球范围内经济上最重要的咖啡害虫。我们提出了对咖啡蛀虫的基因组草案的分析,这是鞘翅目物种的第三个基因组。基因组大小约为。 163 Mb具有19,222个预测的蛋白质编码基因。分析的重点是与初级消化有关的基因以及与植物防御分子和杀虫剂解毒有关的基因家族,例如羧酸酯酶,细胞色素P450,谷硫硫醚S-转移酶,ATP结合盒转运蛋白和赋予对烟草抗性的基因。杀虫剂狄氏剂。鉴定了能够降解复杂多糖的多种酶。我们还评估了病原体防御系统,并发现与果蝇基因组中报道的抗菌素基因同源。确定了10个水平基因转移的案例,这些案例具有表达证据,已整合到汉普酵母基因组中的证据以及系统发育证据,表明该序列与细菌而非真核基因更紧密相关。基因组分析草案广泛地扩展了我们对破坏性热带害虫的生物学知识,并提出了新的害虫管理策略。

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