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Omics approaches revealed how arbuscular mycorrhizal symbiosis enhances yield and resistance to leaf pathogen in wheat

机译:组学方法揭示了丛枝菌根共生如何提高小麦的产量和对叶病原体的抵抗力

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摘要

Besides improved mineral nutrition, plants colonised by arbuscular mycorrhizal (AM) fungi often display increased biomass and higher tolerance to biotic and abiotic stresses. Notwithstanding the global importance of wheat as an agricultural crop, its response to AM symbiosis has been poorly investigated. We focused on the role of an AM fungus on mineral nutrition of wheat, and on its potential protective effect against Xanthomonas translucens. To address these issues, phenotypical, molecular and metabolomic approaches were combined. Morphological observations highlighted that AM wheat plants displayed an increased biomass and grain yield, as well as a reduction in lesion area following pathogen infection. To elucidate the molecular mechanisms underlying the mycorrhizal phenotype, we investigated changes of transcripts and proteins in roots and leaves during the double (wheat-AM fungus) and tripartite (wheat-AM fungus-pathogen) interaction. Transcriptomic and proteomic profiling identified the main pathways involved in enhancing plant biomass, mineral nutrition and in promoting the bio-protective effect against the leaf pathogen. Mineral and amino acid contents in roots, leaves and seeds, and protein oxidation profiles in leaves, supported the omics data, providing new insight into the mechanisms exerted by AM symbiosis to confer stronger productivity and enhanced resistance to X. translucens in wheat.
机译:除了改善矿物质营养外,丛枝菌根(AM)真菌定植的植物通常还表现出更高的生物量以及对生物和非生物胁迫的更高耐受性。尽管小麦作为农业作物具有全球重要性,但其对AM共生的反应研究却很少。我们重点研究了AM真菌对小麦矿物质营养的作用,以及其对半透明黄单胞菌的潜在保护作用。为了解决这些问题,结合了表型,分子和代谢组学方法。形态学观察结果表明,AM小麦植株在病原体感染后显示出更高的生物量和籽粒产量,以及病斑面积的减少。为了阐明菌根表型的潜在分子机制,我们研究了(小麦-AM真菌)和三方(小麦-AM真菌-病原体)双重相互作用期间根和叶中转录本和蛋白质的变化。转录组学和蛋白质组学分析确定了主要途径,这些途径涉及增强植物生物量,矿物质营养以及促进对叶病原体的生物保护作用。根,叶和种子中的矿物质和氨基酸含量,以及叶中的蛋白质氧化谱,为组学数据提供了支持,为AM共生所发挥的机制提供了新的见解,以赋予小麦更高的生产力和对半透明X.的抵抗力。

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