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Comparative transcriptome analysis of venom glands from Cotesia vestalis and Diadromus collaris two endoparasitoids of the host Plutella xylostella

机译:比较转录组学分析来自Cotesiavesalis和Diadromus基因的毒液腺宿主的小菜蛾Plutella xylostella的两种内寄生物

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摘要

Venoms secreted by the venom gland (VG) of parasitoid wasp help ensure successful parasitism by host immune suppression and developmental regulation. Cotesia vestalis, a larval endoparasitoid, and Diadromus collaris, a pupal endoparasitoid, parasitize the diamondback moth (DBM), Plutella xylostella. To explore and compare the venom components of two endoparasitoids, we sequenced transcriptomes of the VGs and wasp bodies without VGs (BWVGs) of the two endoparasitoids. Statistically enriched GO terms and KEGG pathways of the two VGs compared to respective whole-body background were similar and reflected active protein biosynthesis activities in the two VGs. 1,595 VG specific genes of the D. collaris VG and 1,461 VG specific genes of the C. vestalis VG were identified by comparative transcript profiling. A total of 444 and 513 genes encoding potential secretory proteins were identified and defined as putative venom genes in D. collaris VG and C. vestalis VG, respectively. The putative venom genes of the two wasps showed no significant similarity or convergence. More venom genes were predicted in D. collaris VG than C. vestalis VG, especially hydrolase-coding genes. Differences in the types and quantities of putative venom genes shed light on different venom functions.
机译:寄生类黄蜂的毒腺(VG)分泌的毒液可通过宿主免疫抑制和发育调节来确保成功的寄生虫。 Cotesiavestalis(幼虫内寄生物)和Diadromus ribis(up内寄生物)寄生于小菜蛾(Plutella xylostella)。为了探索和比较两个内寄生物的毒液成分,我们对两个内寄生物的VG和没有VG(BWVG)的黄蜂体的转录组进行了测序。与各自的整体背景相比,两个VG的统计丰富的GO术语和KEGG途径相似,反映了两个VG的活性蛋白生物合成活性。通过比较转录谱分析鉴定了衣原体VG的1,595个VG特异性基因和C.vestalis VG的1,461个VG特异性基因。总共鉴定了444个和513个编码潜在分泌蛋白的基因,并将其分别定义为衣原体VG和C.vestalis VG中的推定毒液基因。两个黄蜂的推定毒液基因没有显示出明显的相似性或收敛性。相比于角膜衣原体VG,预计在立果衣原体VG中毒液基因更多,尤其是水解酶编码基因。假定的毒液基因的类型和数量上的差异揭示了不同的毒液功能。

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