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咖啡果蛀果象(Hypothenemus hampei)基因组组装揭示了一个减少的化学感觉受体基因库和雄性特异性基因组序列。

A coffee berry borer (Hypothenemus hampei) genome assembly reveals a reduced chemosensory receptor gene repertoire and male-specific genome sequences.

机构信息

National Coffee Research Center-CENICAFE, Manizales, Colombia.

Estadual Paulista, UNESP-Univ, São José Do Rio Preto, SP, Brazil.

出版信息

Sci Rep. 2021 Mar 1;11(1):4900. doi: 10.1038/s41598-021-84068-1.

Abstract

Coffee berry borer-CBB (Hypothenemus hampei) is a globally important economic pest of coffee (Coffea spp.). Despite current insect control methods for managing CBB, development of future control strategies requires a better understanding of its biology and interaction with its host plant. Towards this objective, we performed de novo CBB genome and transcriptome sequencing, improved CBB genome assembly and predicted 18,765 protein-encoding genes. Using genome and transcriptome data, we annotated the genes associated with chemosensation and found a reduced gene repertoire composed by 67 odorant receptors (ORs), 62 gustatory receptors (GRs), 33 ionotropic receptors (IRs) and 29 odorant-binding proteins (OBPs). In silico transcript abundance analysis of these chemosensory genes revealed expression enrichment in CBB adults compared with larva. Detection of differentially expressed chemosensory genes between males and females is likely associated with differences in host-finding behavior between sexes. Additionally, we discovered male-specific genome content and identified candidate male-specific expressed genes on these scaffolds, suggesting that a Y-like chromosome may be involved in the CBB's functional haplodiploid mechanism of sex determination.

摘要

咖啡果蛀果象(Hypothenemus hampei)是一种全球范围内重要的咖啡经济害虫。尽管目前有控制咖啡果蛀果象的虫害方法,但为了开发未来的控制策略,需要更好地了解其生物学特性及其与宿主植物的相互作用。为此,我们进行了咖啡果蛀果象的从头基因组和转录组测序,改进了咖啡果蛀果象的基因组组装,并预测了 18765 个蛋白质编码基因。利用基因组和转录组数据,我们注释了与化学感觉相关的基因,并发现了一个由 67 个嗅觉受体(ORs)、62 个味觉受体(GRs)、33 个离子型受体(IRs)和 29 个气味结合蛋白(OBPs)组成的基因库。这些化学感觉基因的转录丰度分析表明,与幼虫相比,成虫中的这些基因表达更为丰富。雄性和雌性之间化学感觉基因的差异表达可能与雌雄之间在寻找宿主方面的行为差异有关。此外,我们发现了雄性特有的基因组内容,并在这些基因座上鉴定了候选雄性特异性表达基因,这表明 Y 染色体可能参与了咖啡果蛀果象的功能单倍二倍体性别决定机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f88e/7921381/161b68a4dc3a/41598_2021_84068_Fig1_HTML.jpg

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