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重金属胁迫下鹰嘴豆基因共表达网络和途径分析。

Analysis of chickpea gene co-expression networks and pathways during heavy metal stress.

机构信息

Department of Biotechnology, Motilal Nehru National Institute of Technology, Allahabad 211004, India.

出版信息

J Biosci. 2019 Sep;44(4).

Abstract

Crop productivity and yield are adversely affected by abiotic and biotic stresses. Therefore, finding out the genes responsible for stress tolerance is a significant stride towards crop improvement. A gene co-expression network is a powerful tool to detect the most connected genes during heavy metal (HM) stress in plants. The most connected genes may be responsible for HM tolerance by altering the different metabolic pathways during the biotic and abiotic stress. In the same line we have performed the GSE86807 microarray analysis of chickpea during exposure to chromium, cadmium and arsenic and analyzed the data. Common differentially expressed genes (DEGs) during exposure to chromium, cadmium and arsenic were identified and a co-expression network study was carried out. Hub and bottleneck genes were explored on the basis of degree and betweenness centrality, respectively. A gene set enrichment analysis study revealed that genes like haloacid dehydrogenase, cinnamoyl CoA reductase, F-box protein, GDSL esterase lipase, cellulose synthase, beta-glucosidase 13 and isoflavone hydroxylase are significantly enriched and regulate the different pathways like riboflavin metabolism, phenyl propanoid biosynthesis, amino acid biosynthesis, isoflavonoid biosynthesis and indole alkaloid biosynthesis.

摘要

作物的生产力和产量会受到非生物和生物胁迫的不利影响。因此,找到负责耐受胁迫的基因是作物改良的重要一步。基因共表达网络是一种强大的工具,可用于检测植物在重金属(HM)胁迫下最相关的基因。最相关的基因可能通过改变生物和非生物胁迫过程中的不同代谢途径来负责 HM 耐受。在此基础上,我们对鹰嘴豆在暴露于铬、镉和砷时进行了 GSE86807 微阵列分析,并对数据进行了分析。鉴定了在铬、镉和砷暴露期间共同差异表达的基因(DEGs),并进行了共表达网络研究。根据度和介数中心性分别探索了枢纽基因和瓶颈基因。基因集富集分析研究表明,像卤酸脱氢酶、肉桂酰辅酶 A 还原酶、F-box 蛋白、GDSL 酯酶脂肪酶、纤维素合酶、β-葡萄糖苷酶 13 和异黄酮羟化酶等基因显著富集,并调节不同的途径,如核黄素代谢、苯丙烷生物合成、氨基酸生物合成、异黄酮生物合成和吲哚生物碱生物合成。

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