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谷物中脱氧雪腐镰刀菌烯醇的积累与解毒及其在小麦相互作用中的潜在作用。

Deoxynivalenol accumulation and detoxification in cereals and its potential role in wheat- interactions.

作者信息

Luo Kun, Guo Jiao, He Dejia, Li Guangwei, Ouellet Thérèse

机构信息

Shaanxi Key Laboratory of Chinese Jujube, College of Life Science, Yan'an University, Yan'an, 716000 China.

Ottawa Research and Development Centre, Agriculture and Agri-Food Canada, 960 Carling Ave, Ottawa, ON K1A 0C6 Canada.

出版信息

aBIOTECH. 2023 Feb 18;4(2):155-171. doi: 10.1007/s42994-023-00096-7. eCollection 2023 Jun.

Abstract

Deoxynivalenol (DON) is a prominent mycotoxin showing significant accumulation in cereal plants during infection by the phytopathogen . It is a virulence factor that is important in the spread of within cereal heads, and it causes serious yield losses and significant contamination of cereal grains. In recent decades, genetic and genomic studies have facilitated the characterization of the molecular pathways of DON biosynthesis in and the environmental factors that influence DON accumulation. In addition, diverse scab resistance traits related to the repression of DON accumulation in plants have been identified, and experimental studies of wheat-pathogen interactions have contributed to understanding detoxification mechanisms in host plants. The present review illustrates and summarizes the molecular networks of DON mycotoxin production in and the methods of DON detoxification in plants based on the current literature, which provides molecular targets for crop improvement programs. This review also comprehensively discusses recent advances and challenges related to genetic engineering-mediated cultivar improvements to strengthen scab resistance. Furthermore, ongoing advancements in genetic engineering will enable the application of these molecular targets to develop more scab-resistant wheat cultivars with DON detoxification traits.

摘要

脱氧雪腐镰刀菌烯醇(DON)是一种重要的霉菌毒素,在植物病原体感染谷物植物期间会在其中大量积累。它是一种毒力因子,在谷物穗内的传播中起重要作用,会导致严重的产量损失和谷物籽粒的大量污染。近几十年来,遗传和基因组研究有助于阐明禾谷镰刀菌中DON生物合成的分子途径以及影响DON积累的环境因素。此外,已经鉴定出了与植物中DON积累抑制相关的多种赤霉病抗性性状,并且对小麦 - 病原体相互作用的实验研究有助于了解宿主植物中的解毒机制。本综述根据当前文献阐述并总结了禾谷镰刀菌中DON霉菌毒素产生的分子网络以及植物中DON解毒的方法,这为作物改良计划提供了分子靶点。本综述还全面讨论了与基因工程介导的品种改良以增强赤霉病抗性相关的最新进展和挑战。此外,基因工程的不断进步将使这些分子靶点能够应用于培育具有DON解毒性状的更抗赤霉病的小麦品种。

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