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Roles of lignin biosynthesis and regulatory genes in plant development

机译:木质素生物合成和调控基因在植物发育中的作用

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摘要

Lignin is an important factor affecting agricultural traits, biofuel production, and the pulping industry. Most lignin biosynthesis genes and their regulatory genes are expressed mainly in the vascular bundles of stems and leaves, preferentially in tissues undergoing lignification. Other genes are poorly expressed during normal stages of development, but are strongly induced by abiotic or biotic stresses. Some are expressed in non‐lignifying tissues such as the shoot apical meristem. Alterations in lignin levels affect plant development. Suppression of lignin biosynthesis genes causes abnormal phenotypes such as collapsed xylem, bending stems, and growth retardation. The loss of expression by genes that function early in the lignin biosynthesis pathway results in more severe developmental phenotypes when compared with plants that have mutations in later genes. Defective lignin deposition is also associated with phenotypes of seed shattering or brittle culm. MYB and NAC transcriptional factors function as switches, and some homeobox proteins negatively control lignin biosynthesis genes. Ectopic deposition caused by overexpression of lignin biosynthesis genes or master switch genes induces curly leaf formation and dwarfism.
机译:木质素是影响农业特性,生物燃料生产和制浆业的重要因素。大多数木质素生物合成基因及其调节基因主要在茎和叶的维管束中表达,优先在经历木质化的组织中表达。在发育的正常阶段,其他基因的表达较差,但受到非生物或生物胁迫的强烈诱导。一些在非木质化组织中表达,例如茎尖分生组织。木质素水平的变化影响植物的发育。木质素生物合成基因的抑制导致异常的表型,例如木质部塌陷,茎弯曲和生长迟缓。与在后来的基因中具有突变的植物相比,在木质素生物合成途径中早期起作用的基因的表达丧失导致更严重的发育表型。木质素沉积缺陷还与种子破碎或脆性茎秆的表型有关。 MYB和NAC转录因子起着开关的作用,某些同源盒蛋白对木质素的生物合成基因起负调控作用。木质素生物合成基因或主开关基因的过表达引起的异位沉积诱导了卷曲的叶片形成和矮化。

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