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Expression map of a complete set of gustatory receptor genes in chemosensory organs of Bombyx mori

机译:全套味觉受体基因在家蚕化学感受器官中的表达图

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摘要

Most lepidopteran species are herbivores, and interaction with host plants affects their gene expression and behavior as well as their genome evolution. Gustatory receptors (Grs) are expected to mediate host plant selection, feeding, oviposition and courtship behavior. However, due to their high diversity, sequence divergence and extremely low level of expression it has been difficult to identify precisely a complete set of Grs in Lepidoptera. By manual annotation and BAC sequencing, we improved annotation of 43 gene sequences compared with previously reported Grs in the most studied lepidopteran model, the silkworm, Bombyx mori, and identified 7 new tandem copies of BmGr30 on chromosome 7, bringing the total number of BmGrs to 76. Among these, we mapped 68 genes to chromosomes in a newly constructed chromosome distribution map and 8 genes to scaffolds; we also found new evidence for large clusters of BmGrs, especially from the bitter receptor family. RNA-seq analysis of diverse BmGr expression patterns in chemosensory organs of larvae and adults enabled us to draw a precise organ specific map of BmGr expression. Interestingly, most of the clustered genes were expressed in the same tissues and more than half of the genes were expressed in larval maxillae, larval thoracic legs and adult legs. For example, BmGr63 showed high expression levels in all organs in both larval and adult stages. By contrast, some genes showed expression limited to specific developmental stages or organs and tissues. BmGr19 was highly expressed in larval chemosensory organs (especially antennae and thoracic legs), the single exon genes BmGr53 and BmGr67 were expressed exclusively in larval tissues, the BmGr27-BmGr31 gene cluster on chr7 displayed a high expression level limited to adult legs and the candidate CO2 receptor BmGr2 was highly expressed in adult antennae, where few other Grs were expressed. Transcriptional analysis of the Grs in B. mori provides a valuable new reference for finding genes involved in plant-insect interactions in Lepidoptera and establishing correlations between these genes and vital insect behaviors like host plant selection and courtship for mating. (C) 2017 The Author(s). Published by Elsevier Ltd.
机译:大多数鳞翅目物种是食草动物,与寄主植物的相互作用会影响其基因表达和行为以及基因组进化。味觉受体(Grs)有望介导宿主植物的选择,取食,产卵和求爱行为。然而,由于它们的高度多样性,序列差异和极低的表达水平,很难准确地鉴定鳞翅目中完整的Grs集合。通过手动注释和BAC测序,我们在研究最多的鳞翅目模型家蚕Bombyx mori中与以前报道的Grs相比,改进了43个基因序列的注释,并在7号染色体上鉴定了7个新的BmGr30串联副本,从而使BmGrs总数到76。在新构建的染色体分布图中,我们将68个基因映射到染色体上,将8个基因映射到支架上。我们还发现了BmGrs大簇的新证据,尤其是来自苦味受体家族的BmGrs。 RNA序列分析幼虫和成人的化学感觉器官中各种BmGr表达模式,使我们能够绘制BmGr表达精确的器官特异性图。有趣的是,大多数簇状基因在相同的组织中表达,而超过一半的基因在幼虫上颌骨,幼虫胸腿和成年腿中表达。例如,BmGr63在幼虫期和成年期的所有器官中均显示高表达水平。相比之下,某些基因显示的表达仅限于特定的发育阶段或器官和组织。 BmGr19在幼虫化学感觉器官(尤其是触角和胸腿)中高表达,单外显子基因BmGr53和BmGr67仅在幼虫组织中表达,在chr7上的BmGr27-BmGr31基因簇显示出高表达水平,仅限于成年腿和候选者CO2受体BmGr2在成年触角中高度表达,而其他Grs则很少表达。对家蚕中Grs的转录分析为寻找鳞翅目植物-昆虫相互作用中涉及的基因以及建立这些基因与重要昆虫行为之间的相关性提供了有价值的新参考,这些行为如寄主植物选择和交配关系。 (C)2017作者。由Elsevier Ltd.发布

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