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从小麦赤霉病的组学洞察看转化研究前景

Omics Insight on Fusarium Head Blight of Wheat for Translational Research Perspective.

作者信息

Teli Basavaraj, Purohit Jyotika, Rashid Md Mahtab, Jailani A Abdul Kader, Chattopadhyay Anirudha

机构信息

1Department of Mycology and Plant Pathology, Institute of Agricultural Sciences, Banaras Hindu University, Varanasi, India; 2Department of Plant Pathology, C.P. College of Agriculture, S.D. Agricultural University, S.K. Nagar, India; 3Plant RNAi Biology Group, I.C.G.E.B., New Delhi, India; 4Division of Plant Pathology, Indian Agricultural Research Institute, New Delhi, India.

出版信息

Curr Genomics. 2020 Sep;21(6):411-428. doi: 10.2174/1389202921999200620222631.

Abstract

In the scenario of global warming and climate change, an outbreak of new pests and pathogens has become a serious concern owing to the rapid emergence of arms races, their epidemic infection, and the ability to break down host resistance, . Fusarium head blight (FHB) is one such evidence that depredates major cereals throughout the world. The symptomatological perplexity and aetiological complexity make this disease very severe, engendering significant losses in the yield. Apart from qualitative and quantitative losses, mycotoxin production solemnly deteriorates the grain quality in addition to life endangerment of humans and animals after consumption of toxified grains above the permissible limit. To minimize this risk, we must be very strategic in designing sustainable management practices constituting cultural, biological, chemical, and host resistance approaches. Even though genetic resistance is the most effective and environmentally safe strategy, a huge genetic variation and unstable resistance response limit the holistic deployment of resistance genes in FHB management. Thus, the focus must shift towards the editing of susceptible (S) host proteins that are soft targets of newly evolving effector molecules, which ultimately could be exploited to repress the disease development process. Hence, we must understand the pathological, biochemical, and molecular insight of disease development in a nutshell. In the present time, the availability of functional genomics, proteomics, and metabolomics information on host-pathogen interaction in FHB have constructed various networks which helped in understanding the pathogenesis and coherent host response(s). So now translation of this information for designing of host defense in the form of desirable resistant variety/genotype is the next step. The insights collected and presented in this review will be aiding in the understanding of the disease and apprise a solution to the multi-faceted problems which are related to FHB resistance in wheat and other cereals to ensure global food safety and food security.

摘要

在全球变暖和气候变化的背景下,新害虫和病原体的爆发已成为一个严重问题,这是由于军备竞赛迅速出现、它们的流行感染以及突破宿主抗性的能力所致。小麦赤霉病(FHB)就是这样一个例子,它在全世界范围内危害主要谷物。该病症状复杂、病因不明,病情非常严重,导致产量大幅损失。除了质和量的损失外,霉菌毒素的产生还严重降低了谷物质量,而且食用超过允许限量的受污染谷物后会危及人类和动物的生命。为了将这种风险降至最低,我们在设计可持续管理措施时必须非常有策略,这些措施包括栽培、生物、化学和宿主抗性方法。尽管遗传抗性是最有效且对环境安全的策略,但巨大的遗传变异和不稳定的抗性反应限制了抗性基因在小麦赤霉病管理中的全面应用。因此,重点必须转向编辑易感性(S)宿主蛋白,这些蛋白是新进化的效应分子的软靶点,最终可利用它们来抑制疾病发展过程。因此,我们必须简要了解疾病发展的病理学、生物化学和分子层面。目前,关于小麦赤霉病中宿主 - 病原体相互作用的功能基因组学、蛋白质组学和代谢组学信息的可用性构建了各种网络,有助于理解发病机制和相关的宿主反应。所以现在下一步是以理想的抗性品种/基因型的形式将这些信息转化为宿主防御设计。本综述中收集和呈现的见解将有助于理解该疾病,并为与小麦和其他谷物的小麦赤霉病抗性相关的多方面问题提供解决方案,以确保全球食品安全和粮食安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/139b/7536796/520c091ffa1a/CG-21-411_F1A.jpg

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