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阐明影响玉米茎秆强度和抗倒伏性的细胞壁组成因素。

Elucidating compositional factors of maize cell walls contributing to stalk strength and lodging resistance.

机构信息

Área de Fisiología Vegetal, Facultad de Ciencias Biológicas y Ambientales, Universidad de León, E-24071, León, Spain.

Facultad de Biología, Departamento de Biología Vegetal y Ciencias del Suelo, Universidad de Vigo E-36310. Vigo, Spain; Agrobiología Ambiental, Calidad de Suelos y Plantas (UVIGO), Unidad Asociada a la MBG (CSIC), Spain.

出版信息

Plant Sci. 2021 Jun;307:110882. doi: 10.1016/j.plantsci.2021.110882. Epub 2021 Mar 19.

Abstract

Lodging is one of the causes of maize (Zea mays L.) production losses worldwide and, at least, the resistance to stalk lodging has been positively correlated with stalk strength. In order to elucidate the putative relationship between cell wall, stalk strength and lodging resistance, twelve maize inbreds varying in rind penetration strength and lodging resistance were characterized for cell wall composition and structure. Stepwise multiple regression indicates that H lignin subunits confer a greater rind penetration strength. Besides, the predictive model for lodging showed that a high ferulic acid content increases the resistance to lodging, whereas those of diferulates decrease it. These outcomes highlight that the strength and lodging susceptibility of maize stems may be conditioned by structural features of cell wall rather than by the net amount of cellulose, hemicelluloses and lignin. The results presented here provide biotechnological targets in breeding programs aimed at improving lodging in maize.

摘要

lodging 是导致全球玉米(Zea mays L.)减产的原因之一,至少玉米抗茎倒伏的能力与茎秆强度呈正相关。为了阐明细胞壁、茎秆强度和抗倒伏性之间的潜在关系,对 12 个不同果皮穿透强度和抗倒伏性的玉米自交系进行了细胞壁组成和结构的特征分析。逐步多元回归表明 H 木质素亚基赋予更高的果皮穿透强度。此外,倒伏预测模型表明,高阿魏酸含量增加了抗倒伏性,而二阿魏酸含量则降低了抗倒伏性。这些结果表明,玉米茎秆的强度和倒伏易感性可能受到细胞壁结构特征的影响,而不是纤维素、半纤维素和木质素的净含量。本文的研究结果为玉米抗倒伏的育种计划提供了生物技术目标。

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