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A wheat caffeic acid 3-O-methyltransferase TaCOMT-3D positively contributes to both resistance to sharp eyespot disease and stem mechanical strength

机译:小麦咖啡酸3-O-甲基转移酶TaCOMT-3D对抵抗尖锐的眼斑病和茎机械强度均具有积极作用

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摘要

Plant caffeic acid 3-O-methyltransferase (COMT) has been implicated in the lignin biosynthetic pathway through catalyzing the multi-step methylation reactions of hydroxylated monomeric lignin precursors. However, genetic evidence for its function in plant disease resistance is poor. Sharp eyespot, caused primarily by the necrotrophic fungus Rhizoctonia cerealis, is a destructive disease in hexaploid wheat (Triticum aestivum L.). In this study, a wheat COMT gene TaCOMT-3D, is identified to be in response to R. cerealis infection through microarray-based comparative transcriptomics. The TaCOMT-3D gene is localized in the long arm of the chromosome 3D. The transcriptional level of TaCOMT-3D is higher in sharp eyespot-resistant wheat lines than in susceptible wheat lines, and is significantly elevated after R. cerealis inoculation. After R. cerealis inoculation and disease scoring, TaCOMT-3D-silenced wheat plants exhibit greater susceptibility to sharp eyespot compared to unsilenced wheat plants, whereas overexpression of TaCOMT-3D enhances resistance of the transgenic wheat lines to sharp eyespot. Moreover, overexpression of TaCOMT-3D enhances the stem mechanical strength, and lignin (particular syringyl monolignol) accumulation in the transgenic wheat lines. These results suggest that TaCOMT-3D positively contributes to both wheat resistance against sharp eyespot and stem mechanical strength possibly through promoting lignin (especially syringyl monolignol) accumulation.
机译:植物咖啡酸3-O-甲基转移酶(COMT)已通过催化羟基化的单体木质素前体的多步甲基化反应而参与木质素的生物合成途径。但是,有关其在植物抗病性中作用的遗传证据很差。锋利的眼点主要是由坏死性真菌谷类裂殖酵母引起的,是六倍体小麦(Triticum aestivum L.)的一种破坏性疾病。在这项研究中,通过基于微阵列的比较转录组学,确定了小麦COMT基因TaCOMT-3D是对谷物麦芽孢杆菌感染的反应。 TaCOMT-3D基因位于3D染色体的长臂中。 TaCOMT-3D的转录水平在耐点眼的小麦品系中比易感小麦品系更高,并且在接种谷物谷胱甘肽后显着升高。接种谷物麦芽孢杆菌和对疾病进行评分后,沉默的TaCOMT-3D小麦植株比没有沉默的小麦植株对尖锐的眼点表现出更大的敏感性,而TaCOMT-3D的过表达增强了转基因小麦品系对锐利的眼点的抗性。此外,TaCOMT-3D的过表达增强了茎的机械强度,并提高了转基因小麦品系中木质素(特别是丁香烯基单木酚)的积累。这些结果表明,TaCOMT-3D可能通过促进木质素(尤其是丁香基单木酚醇)的积累,积极地促进了小麦抗尖锐的眼斑和茎机械强度。

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