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(鞘翅目:拟步甲科)基因组:成功适应的秘诀。

The Genome of (Fab.) (Coleoptera: Bostrichidae): Adaptation for Success.

机构信息

USDA ARS Center for Grain and Animal Health Research, 1515 College Ave., Manhattan, KS 66502, USA.

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawinskiego 5A, 02-106 Warsaw, Poland.

出版信息

Genes (Basel). 2022 Feb 28;13(3):446. doi: 10.3390/genes13030446.

Abstract

The lesser grain borer, (F.) (Coleoptera: Bostrichidae), is a major global pest of cereal grains. Infestations are difficult to control as larvae feed inside grain kernels, and many populations are resistant to both contact insecticides and fumigants. We sequenced the genome of to identify genes responsible for important biological functions and develop more targeted and efficacious management strategies. The genome was assembled from long read sequencing and long-range scaffolding technologies. The genome assembly is 479.1 Mb, close to the predicted genome size of 480.4 Mb by flow cytometry. This assembly is among the most contiguous beetle assemblies published to date, with 139 scaffolds, an N of 53.6 Mb, and L of 4, indicating chromosome-scale scaffolds. Predicted genes from biologically relevant groups were manually annotated using transcriptome data from adults and different larval tissues to guide annotation. The expansion of carbohydrase and serine peptidase genes suggest that they combine to enable efficient digestion of cereal proteins. A reduction in the copy number of several detoxification gene families relative to other coleopterans may reflect the low selective pressure on these genes in an insect that spends most of its life feeding internally. Chemoreceptor genes contain elevated numbers of pseudogenes for odorant receptors that also may be related to the recent ontogenetic shift of to a diet consisting primarily of stored grains. Analysis of repetitive sequences will further define the evolution of bostrichid beetles compared to other species. The data overall contribute significantly to coleopteran genetic research.

摘要

米象,(鞘翅目:象甲科),是一种全球性的主要谷物害虫。由于幼虫在谷物颗粒内部取食,因此很难进行防治,而且许多种群对接触性杀虫剂和熏蒸剂都具有抗性。我们对进行了基因组测序,以鉴定负责重要生物学功能的基因,并制定更有针对性和更有效的管理策略。该基因组是通过长读测序和长距离支架技术组装的。基因组组装大小为 479.1 Mb,接近流式细胞术预测的 480.4 Mb 的基因组大小。该组装是迄今为止发表的最连续的甲虫组装之一,有 139 个支架,N 值为 53.6 Mb,L 值为 4,表明染色体级别的支架。使用来自成虫和不同幼虫组织的转录组数据,对生物学相关组的预测基因进行了手动注释,以指导注释。碳水化合物酶和丝氨酸肽酶基因的扩张表明,它们共同作用,使能够有效地消化谷物蛋白。与其他鞘翅目昆虫相比,几种解毒基因家族的拷贝数减少,这可能反映了这些基因在一种一生中大部分时间都在内部进食的昆虫中受到的低选择压力。化学感受器基因中含有大量嗅觉受体的假基因,这也可能与最近米象的进化有关,即从以储存谷物为主的饮食转变而来。重复序列的分析将进一步定义象甲科与其他物种的进化。总的来说,这些数据为鞘翅目遗传研究做出了重要贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b33/8956072/9bc41b4dce96/genes-13-00446-g001.jpg

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