Anhui Province Key Laboratory of Crop Biology, College of Life Science, Anhui Agricultural University, Hefei 230036, China.
Int J Mol Sci. 2022 Jun 13;23(12):6598. doi: 10.3390/ijms23126598.
Starch directly determines the grain yield and quality. The key enzymes participating in the process of starch synthesis have been cloned and characterized. Nevertheless, the regulatory mechanisms of starch synthesis remain unclear. In this study, we identified a novel starch regulatory gene, , which contained a carbohydrate-binding module 48 (CBM48) domain. was highly expressed in the maize endosperm and was localized in the plastids. Compared with the wild type lines, the overexpression of in rice altered the grain size and 1000-grain weight, increased the starch content, and decreased the soluble sugar content. Additionally, the transgenic rice seeds exhibited an alterant endosperm cell shape and starch structure. Meanwhile, the physicochemical characteristics (gelatinization properties) of starch were influenced in the transgenic lines of the endosperm compared with the wild type seeds. Furthermore, played a positive regulatory role in the starch synthesis pathway by up-regulating several starch synthesis-related genes. Collectively, the results presented here suggest that acts as a key regulatory factor in starch synthesis, and could be helpful for devising strategies for modulating starch production for a high yield and good quality in maize endosperm.
淀粉直接决定着谷物的产量和品质。参与淀粉合成过程的关键酶已被克隆和鉴定。然而,淀粉合成的调控机制仍不清楚。在本研究中,我们鉴定了一个新的淀粉调控基因 ,它含有一个碳水化合物结合模块 48(CBM48)结构域。 在玉米胚乳中高度表达,并定位于质体中。与野生型相比,在水稻中超表达 改变了粒型和千粒重,增加了淀粉含量,降低了可溶性糖含量。此外,转基因水稻种子的胚乳细胞形状和淀粉结构发生了改变。同时,与野生型种子相比,淀粉的理化特性(糊化特性)在胚乳的转基因株系中受到影响。此外, 通过上调几个与淀粉合成相关的基因, 对淀粉合成途径发挥正向调控作用。综上所述,本研究结果表明 作为淀粉合成的关键调控因子,可能有助于制定策略来调节玉米胚乳中的淀粉生产,以获得高产和优质。