Sirangelo Tiziana M
Division Biotechnologies and Agroindustry, ENEA-Italian National Agency for New Technologies, Energy and Sustainable Economic Development, 00123 Rome, Italy.
Plants (Basel). 2024 Aug 6;13(16):2179. doi: 10.3390/plants13162179.
Fusarium head blight (FHB) is mainly caused by () and is a very widespread disease throughout the world, leading to severe damage to wheat with losses in both grain yield and quality. FHB also leads to mycotoxin contamination in the infected grains, being toxic to humans and animals. In spite of the continuous advancements to elucidate more and more aspects of FHB host resistance, to date, our knowledge about the molecular mechanisms underlying wheat defense response to this pathogen is not comprehensive, most likely due to the complex wheat- interaction. Recently, due to climate changes, such as high temperature and heavy rainfall, FHB has become more frequent and severe worldwide, making it even more urgent to completely understand wheat defense mechanisms. In this review, after a brief description of the first wheat immune response to , we discuss, for each FHB resistance type, from Type I to Type V resistances, the main molecular mechanisms involved, the major quantitative trait loci (QTLs) and candidate genes found. The focus is on multi-omics research helping discover crucial molecular pathways for each resistance type. Finally, according to the emerging examined studies and results, a wheat response model to attack, showing the major interactions in the different FHB resistance types, is proposed. The aim is to establish a useful reference point for the researchers in the field interested to adopt an interdisciplinary omics approach.
赤霉病主要由()引起,是一种在全球广泛传播的病害,会对小麦造成严重损害,导致产量和品质下降。赤霉病还会使受感染的谷物受到霉菌毒素污染,对人和动物有毒。尽管在阐明赤霉病寄主抗性的越来越多方面不断取得进展,但迄今为止,我们对小麦针对这种病原体的防御反应的分子机制的了解并不全面,这很可能是由于小麦相互作用复杂所致。最近,由于气候变化,如高温和暴雨,赤霉病在全球范围内变得更加频繁和严重,这使得全面了解小麦防御机制变得更加紧迫。在本综述中,在简要描述小麦对()的首次免疫反应后,我们针对从I型到V型抗性的每种赤霉病抗性类型,讨论了所涉及的主要分子机制、发现的主要数量性状位点(QTL)和候选基因。重点是多组学研究,有助于发现每种抗性类型的关键分子途径。最后,根据新研究的研究和结果,提出了一个小麦对()攻击的反应模型,展示了不同赤霉病抗性类型中的主要相互作用。目的是为该领域有兴趣采用跨学科组学方法的研究人员建立一个有用的参考点。