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Genetic enhancement of lodging resistance in rice due to the key cell wall polymer lignin which affects stem characteristics

机译:关键细胞壁聚合物木质素导致水稻抗倒伏性的遗传增强影响茎的特性

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摘要

Lodging in crops seriously restricts plant growth and grain production. The genetic modification of cell walls to enhance plant mechanical strength has been suggested as a promising approach toward improving lodging resistance. However, because of the complexity of the plant cell wall, the exact effects of its polymers on plant lodging resistance remain elusive. To address this issue, we performed large-scale analyses of a total of 56 rice (Oryza sativa L.) varieties that displayed distinct cell wall component and lodging index. Lignin was identified as the key cell wall polymer that positively determines lodging resistance in rice. Correlation analysis between cell wall composition and plant morphological characteristics revealed that lignin enhanced rice lodging resistance by largely increasing the mechanical strength of the basal stem and reducing plant height. Further characterization of four representative rice varieties, ShenNong9903, YanJian218, KongYu131, and ShenNongK33, displaying varied levels of lodging resistance, revealed the multiple candidate genes (PAL, CoMT, 4CL3, CAD2, CAD7 and CCR20) responsible for increasing lignin level. Hence, our results demonstrate that the high lignin level in the cell wall predominately improves lodging resistance and suggest target genes for the genetic modification of lignin towards breeding rice with high lodging resistance.
机译:农作物寄宿严重限制了植物的生长和粮食生产。已经提出对细胞壁进行遗传修饰以增强植物的机械强度是改善抗倒伏性的有前途的方法。但是,由于植物细胞壁的复杂性,其聚合物对植物抗倒伏性的确切影响仍然难以捉摸。为了解决这个问题,我们对总共56个显示不同细胞壁成分和倒伏指数的水稻(Oryza sativa L.)品种进行了大规模分析。木质素被认为是关键细胞壁聚合物,可积极决定水稻的抗倒伏性。细胞壁组成与植物形态特征之间的相关性分析表明,木质素通过大大增加基茎的机械强度和降低株高来增强水稻的抗倒伏性。对四个代表性水稻品种神农9903,盐剑218,孔玉131和神农K33的进一步表征显示出不同水平的倒伏抗性,揭示了导致木质素水平升高的多个候选基因(PAL,CoMT,4CL3,CAD2,CAD7和CCR20)。因此,我们的结果表明,细胞壁中高水平的木质素可显着改善抗倒伏性,并为木质素的遗传修饰提供了针对高抗倒性水稻育种的目标基因。

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