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小麦对玉米叶蚜侵染响应的比较转录组分析

Comparative transcriptome analysis of wheat in response to corn leaf aphid, F. infestation.

作者信息

Jasrotia Poonam, Sharma Samriti, Nagpal Mohini, Kamboj Disha, Kashyap Prem Lal, Kumar Satish, Mishra Chandra Nath, Kumar Sudheer, Singh Gyanendra Pratap

机构信息

Division of Crop Protection, ICAR- Indian Institute of Wheat and Barley Research, Karnal, Haryana, India.

Division of Crop Improvement, ICAR- Indian Institute of Wheat and Barley Research, Karnal, Haryana, India.

出版信息

Front Plant Sci. 2022 Nov 24;13:989365. doi: 10.3389/fpls.2022.989365. eCollection 2022.

Abstract

Aphids are one of the most important insect pests of wheat crop in all wheat growing regions of the world. Amongst various aphid species, the corn leaf aphid ( F.) is considered one of the most destructive insect pests of wheat in the North Western Plains region of India. Transcriptome profiling of highly susceptible wheat genotype, A-9-30-1 and tolerant wheat genotype, HD2967 was performed to investigate aphid-host interactions. The results obtained from differential gene expression analysis of on the highly susceptible genotype, A-9-30-1 plants, when compared with the tolerant genotype, HD2967, showed that 212 genes were significantly upregulated and 1009 genes were significantly downregulated. Our findings demonstrated that the genes associated with defense were significantly higher in response to on HD2967 as compared to A-9-30-1. Additionally, various genes with physiological attributes were expressed during aphid attack. Based on gene ontology classification, three classifications, such as, cellular components (CC), molecular function (MF), and biological processes (BP) of sequences were identified. KEGG enrichment analysis revealed that twenty-five pathway genes were differentially expressed during the infestation of wheat with . Notable changes were observed in A-9-30-1 and HD2967 transcriptomic profiling after infestation. The results obtained in the present study will help to elucidate the mechanism governing host-pest interaction and may lead to the development of new methods for increasing the resistance level of wheat against , including over-expression of defense-related genes.

摘要

蚜虫是世界上所有小麦种植区小麦作物最重要的害虫之一。在各种蚜虫种类中,玉米叶蚜被认为是印度西北平原地区小麦最具破坏性的害虫之一。对高度易感小麦基因型A - 9 - 30 - 1和耐受性小麦基因型HD2967进行转录组分析,以研究蚜虫与宿主的相互作用。与耐受性基因型HD2967相比,对高度易感基因型A - 9 - 30 - 1植株上的[某种蚜虫,原文未明确写出]进行差异基因表达分析所得结果表明,有212个基因显著上调,1009个基因显著下调。我们的研究结果表明,与防御相关的基因在HD2967上对[某种蚜虫,原文未明确写出]的反应中显著高于A - 9 - 30 - 1。此外,在蚜虫攻击期间表达了具有生理特性的各种基因。基于基因本体分类,确定了序列的三个分类,即细胞成分(CC)、分子功能(MF)和生物学过程(BP)。KEGG富集分析表明,在小麦受[某种蚜虫,原文未明确写出]侵染期间,有25个途径基因差异表达。在侵染后,A - 9 - 30 - 1和HD2967转录组分析中观察到显著变化。本研究获得的结果将有助于阐明控制宿主 - 害虫相互作用的机制,并可能导致开发提高小麦对[某种蚜虫,原文未明确写出]抗性水平的新方法,包括防御相关基因的过表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe7e/9730506/06fce22d31ca/fpls-13-989365-g001.jpg

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