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柑橘 ACC 合酶 CiACS4 通过抑制赤霉素生物合成来调节植物高度。

Citrus ACC synthase CiACS4 regulates plant height by inhibiting gibberellin biosynthesis.

机构信息

National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Science, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Plant Physiol. 2023 Jul 3;192(3):1947-1968. doi: 10.1093/plphys/kiad159.

Abstract

Dwarfism is an agronomic trait that has substantial effects on crop yield, lodging resistance, planting density, and a high harvest index. Ethylene plays an important role in plant growth and development, including the determination of plant height. However, the mechanism by which ethylene regulates plant height, especially in woody plants, remains unclear. In this study, a 1-aminocyclopropane-1-carboxylic acid synthase (ACC) gene (ACS), which is involved in ethylene biosynthesis, was isolated from lemon (Citrus limon L. Burm) and named CiACS4. Overexpression of CiACS4 resulted in a dwarf phenotype in Nicotiana tabacum and lemon and increased ethylene release and decreased gibberellin (GA) content in transgenic plants. Inhibition of CiACS4 expression in transgenic citrus significantly increased plant height compared with the controls. Yeast two-hybrid assays revealed that CiACS4 interacted with an ethylene response factor (ERF), CiERF3. Further experiments revealed that the CiACS4-CiERF3 complex can bind to the promoters of 2 citrus GA20-oxidase genes, CiGA20ox1 and CiGA20ox2, and suppress their expression. In addition, another ERF transcription factor, CiERF023, identified using yeast one-hybrid assays, promoted CiACS4 expression by binding to its promoter. Overexpression of CiERF023 in N. tabacum caused a dwarfing phenotype. CiACS4, CiERF3, and CiERF023 expression was inhibited and induced by GA3 and ACC treatments, respectively. These results suggest that the CiACS4-CiERF3 complex may be involved in the regulation of plant height by regulating CiGA20ox1 and CiGA20ox2 expression levels in citrus.

摘要

矮化是一种农业性状,对作物产量、抗倒伏性、种植密度和高收获指数有显著影响。乙烯在植物生长发育中起着重要作用,包括决定植物高度。然而,乙烯调节植物高度的机制,特别是在木本植物中,仍然不清楚。在这项研究中,从柠檬(Citrus limon L. Burm)中分离出一个参与乙烯生物合成的 1-氨基环丙烷-1-羧酸合酶(ACS)基因(ACS),并将其命名为 CiACS4。过量表达 CiACS4 导致烟草和柠檬矮化表型,并增加转基因植物中乙烯的释放和赤霉素(GA)含量的降低。在转基因柑橘中抑制 CiACS4 的表达与对照相比显著增加了植物的高度。酵母双杂交试验表明,CiACS4 与一个乙烯反应因子(ERF),CiERF3 相互作用。进一步的实验表明,CiACS4-CiERF3 复合物可以结合到 2 个柑橘 GA20-氧化酶基因 CiGA20ox1 和 CiGA20ox2 的启动子上,并抑制它们的表达。此外,酵母单杂交试验鉴定的另一个 ERF 转录因子 CiERF023 通过结合其启动子促进 CiACS4 的表达。在烟草中过表达 CiERF023 导致矮化表型。CiACS4、CiERF3 和 CiERF023 的表达分别受到 GA3 和 ACC 处理的抑制和诱导。这些结果表明,CiACS4-CiERF3 复合物可能通过调节柑橘中 CiGA20ox1 和 CiGA20ox2 表达水平参与植物高度的调节。

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