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基于全基因组微阵列的家蚕印度品系中与对家蚕核型多角体病毒抗性和敏感性相关的表达谱。

Genome wide microarray based expression profiles associated with BmNPV resistance and susceptibility in Indian silkworm races of Bombyx mori.

作者信息

Lekha Govindaraj, Gupta Tania, Awasthi Arvind K, Murthy Geetha N, Trivedy Kanika, Ponnuvel Kangayam M

机构信息

Genomics Division, Seribiotech Research Laboratory, Carmelaram Post, Kodathi, Bangalore 560 035, India.

Genomics Division, Seribiotech Research Laboratory, Carmelaram Post, Kodathi, Bangalore 560 035, India.

出版信息

Genomics. 2015 Dec;106(6):393-403. doi: 10.1016/j.ygeno.2015.09.002. Epub 2015 Sep 12.

Abstract

The molecular mechanism involved in BmNPV resistance was investigated using a genome wide microarray in midgut tissue of Indian silkworm Bombyx mori. In resistant race (Sarupat), 735 genes up-regulated and 589 genes down-regulated at 12 h post BmNPV infection. Similarly, in case of susceptible race (CSR-2), 2183 genes up-regulated and 2115 genes down-regulated. Among these, nine up-regulated and eight down-regulated genes were validated using real-time qPCR analysis. In Sarupat, vacuolar protein sorting associated, Xfin-like protein and carboxypeptidase E-like protein genes significantly up-regulated in infected midgut; prominently down-regulated genes were glutamate receptor ionotropic kainite 2-like, BTB/POZ domain and transferrin. Considerably up-regulated genes in the CSR-2 were peptidoglycan recognition protein S6 precursor and rapamycin while the conspicuous down-regulated genes were facilitated trehalose transporter and zinc transporter ZIP1-like gene. The up-regulation of genes in resistant race after BmNPV infection indicates their possible role in antiviral immune response.

摘要

利用全基因组微阵列研究了印度家蚕Bombyx mori中肠组织对BmNPV抗性的分子机制。在抗性品系(Sarupat)中,BmNPV感染后12小时,735个基因上调,589个基因下调。同样,在敏感品系(CSR-2)中,2183个基因上调,2115个基因下调。其中,9个上调基因和8个下调基因通过实时定量PCR分析得到验证。在Sarupat中,感染中肠中与液泡蛋白分选相关的基因、Xfin样蛋白基因和羧肽酶E样蛋白基因显著上调;显著下调的基因有离子型红藻氨酸2样谷氨酸受体、BTB/POZ结构域和转铁蛋白。CSR-2中显著上调的基因是肽聚糖识别蛋白S6前体和雷帕霉素,而显著下调的基因是易化型海藻糖转运蛋白和锌转运蛋白ZIP1样基因。BmNPV感染后抗性品系中基因的上调表明它们在抗病毒免疫反应中可能发挥的作用。

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