School of Life Sciences, Shandong University, Jinan, Shandong, China.
Plant Biotechnol J. 2018 Jan;16(1):234-244. doi: 10.1111/pbi.12763. Epub 2017 Jul 25.
Grain weight and grain number are important crop yield determinants. DA1 and DAR1 are the ubiquitin receptors that function as the negative regulators of cell proliferation during development in Arabidopsis. An arginine to lysine mutant at amino acid site 358 could lead to the da1-1 phenotype, which results in an increased organ size and larger seeds. In this study, the mutated ZmDA1 (Zmda1) and mutated ZmDAR1 (Zmdar1) driven by the maize ubiquitin promoter were separately introduced into maize elite inbred line DH4866. The grain yield of the transgenic plants was 15% greater than that of the wild-type in 3 years of field trials due to improvements in the grain number, weight and starch content. Interestingly, the over-expression of Zmda1 and Zmdar1 promoted kernel development, resulting in a more developed basal endosperm transfer cell layer (BETL) than WT and enhanced expression of starch synthase genes. This study suggests that the over-expression of the mutated ZmDA1 or ZmDAR1 genes improves the sugar imports into the sink organ and starch synthesis in maize kernels.
粒重和粒数是作物产量的重要决定因素。DA1 和 DAR1 是泛素受体,在拟南芥的发育过程中作为细胞增殖的负调节剂。位于氨基酸 358 位的精氨酸到赖氨酸的突变可能导致 da1-1 表型,导致器官大小增加和种子变大。在这项研究中,分别由玉米泛素启动子驱动的突变 ZmDA1(Zmda1)和突变 ZmDAR1(Zmdar1)被导入玉米优良自交系 DH4866。由于粒数、重量和淀粉含量的提高,转基因植株的籽粒产量在 3 年的田间试验中比野生型高出 15%。有趣的是,Zmda1 和 Zmdar1 的过表达促进了籽粒发育,导致 BETL 比 WT 更发达,并增强了淀粉合酶基因的表达。本研究表明,突变 ZmDA1 或 ZmDAR1 基因的过表达提高了糖向汇器官的输入和玉米籽粒中淀粉的合成。