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Impact of Cell Wall Composition on Maize Resistance to Pests and Diseases

机译:细胞壁组成对玉米抗病虫害的影响

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摘要

In cereals, the primary cell wall is built of a skeleton of cellulosic microfibrils embedded in a matrix of hemicelluloses and smaller amounts of pectins, glycoproteins and hydroxycinnamates. Later, during secondary wall development, p-coumaryl, coniferyl and sinapyl alcohols are copolymerized to form mixed lignins. Several of these cell wall components show a determinative role in maize resistance to pest and diseases. However, defense mechanisms are very complex and vary among the same plant species, different tissues or even the same tissue at different developmental stages. Thus, it is important to highlight that the role of the cell wall components needs to be tested in diverse genotypes and specific tissues where the feeding or attacking by the pathogen takes place. Understanding the role of cell wall constituents as defense mechanisms may allow modifications of crops to withstand pests and diseases.
机译:在谷物中,主要细胞壁是由纤维素微纤维的骨架构成的,该骨架嵌入半纤维素和少量果胶,糖蛋白和羟基肉桂酸酯的基质中。后来,在二次壁显影过程中,对香豆基芳基,松柏基和芥子醇共聚形成混合的木质素。这些细胞壁成分中的几种在玉米抗病虫害中显示出决定性作用。但是,防御机制非常复杂,并且在不同的发育阶段,相同的植物物种,不同的组织甚至相同的组织之间的防御机制都不同。因此,重要的是强调必须在发生病原体进食或侵袭的各种基因型和特定组织中测试细胞壁成分的作用。了解细胞壁成分作为防御机制的作用,可以使农作物进行改良以抵御病虫害。

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