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参与芜菁中camalexin生物合成的MAPK信号级联的分子建模、对接及蛋白质-蛋白质相互作用分析

Molecular modeling, docking and protein-protein interaction analysis of MAPK signalling cascade involved in Camalexin biosynthesis in Brassica rapa.

作者信息

Gaur Manu, Tiwari Apoorv, Chauhan Ravendra P, Pandey Dinesh, Kumar Anil

机构信息

Department of Molecular Biology and Genetic Engineering, College of Basic Sciences and Humanities, G.B. Pant University of Agriculture and Technology, Pantnagar 263145, Uttarakhand, India.

Sam Higginbottom University of Agriculture, Technology & Sciences, Allahabad 211007, Uttar Pradesh, India.

出版信息

Bioinformation. 2018 Apr 30;14(4):145-152. doi: 10.6026/97320630014145. eCollection 2018.

Abstract

Phytoalexins are small antimicrobial molecules synthesized and accumulated by plants upon exposure to pathogens. Camalexin is an indole-derived phytoalexin, which is accumulated in plants including Arabidopsis thaliana, and other Brassicaceae, which plays a major role in disease resistance against fungal pathogens. The productivity of Brassica crops is adversely affected by Alternaria blight disease, which is caused by Alternaria brassicae. In Arabidopsis thaliana, MAP kinase signalling cascade is known to be involved in synthesis of camalexin, which contributes to disease resistance against a necrtrophic fungal pathogen, Botrytis cinerea. In the present study, MAPK signalling cascade leading to biosynthesis of camalexin that triggers defense responses in B. rapa upon exposure to the most devastating nectrophic fungus, Alternaria brassicae has been elucidated with the help of previously reported MAPK cascade in Arabidopsis thaliana, Molecular modelling, docking, and protein-protein interaction analysis of MAP kinases retrieved from Brassica rapa genome have been carried out to reveal the above cascade. The tertiary structure prediction of MAPKs obtained through molecular modelling revealed that all the protein models fulfil the criteria of being the stable structures. The molecular docking of predicted models for elucidating potential partners of MAPKs revealed strong interactions between MKK1, MKK4, MKK5, MAPK3 and MAPK6 with MKK9. The MAPK signalling cascade also shows different genes that express and play major role in camalexin biosynthesis in B. rapa during defense response to A. brassicae. The understanding of MAPK defense signaling pathway in B. rapa against devastating fungal pathogen Alternaria brassicae would help in devising strategies to develop disease resistance in Brassica crops.

摘要

植保素是植物在接触病原体时合成并积累的小分子抗菌物质。菜蓟素是一种吲哚衍生的植保素,在包括拟南芥和其他十字花科植物中积累,在抵抗真菌病原体的抗病性中起主要作用。十字花科作物的产量受到由芸苔链格孢引起的链格孢叶斑病的不利影响。在拟南芥中,已知丝裂原活化蛋白激酶(MAP激酶)信号级联参与菜蓟素的合成,这有助于抵抗坏死性真菌病原体灰葡萄孢。在本研究中,借助拟南芥中先前报道的MAP激酶级联,阐明了导致菜蓟素生物合成的MAP激酶信号级联,该级联在芜菁暴露于最具破坏性的坏死性真菌芸苔链格孢时触发防御反应。对从芜菁基因组中检索到的MAP激酶进行了分子建模、对接和蛋白质-蛋白质相互作用分析,以揭示上述级联。通过分子建模获得的MAP激酶的三级结构预测表明,所有蛋白质模型都符合稳定结构的标准。对用于阐明MAP激酶潜在伙伴的预测模型进行分子对接,揭示了MKK1、MKK4、MKK5、MAPK3和MAPK6与MKK9之间的强相互作用。MAP激酶信号级联还显示了在芜菁对芸苔链格孢的防御反应中,在菜蓟素生物合成中表达并起主要作用的不同基因。了解芜菁中针对毁灭性真菌病原体芸苔链格孢的MAP激酶防御信号通路将有助于制定策略,以培育十字花科作物的抗病性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f2c/6016760/e7c585417954/97320630014145F1.jpg

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