Zhao Guochao, Xie Shuifeng, Zong Shipeng, Wang Tong, Mao Chanjuan, Shi Jianxin, Li Jianyue
Shanghai Key Laboratory of Plant Molecular Sciences, College of Life Sciences, Shanghai Normal University, Shanghai, 200234, China.
Development Center of Plant Germplasm Resources, College of Life Sciences, Shanghai Normal University, Shanghai, 200234, China.
Theor Appl Genet. 2022 Oct;135(10):3531-3543. doi: 10.1007/s00122-022-04198-6. Epub 2022 Aug 22.
The cloning and characterization of a novel CH zinc finger protein that affects rice eating and cooking quality by regulating amylose content and amylopectin chain-length distribution in rice. One of the major objectives in rice breeding aims to increase simultaneously yield and grain quality especially eating and cooking quality (ECQ). Controlling amylose content (AC) and amylopectin chain-length distribution (ACLD) in rice is a major strategy for improving rice ECQ. Previous studies show that some starch synthesis-related genes (SSRGs) are required for normal AC and ACLD, but its underlying regulating network is still unclear. Here, we report the cloning and characterization of a novel CH zinc finger protein TL1 (Translucent endosperm 1) that positively regulates amylose synthesis in rice grains. Loss of TL1 function reduced apparent amylose content (AAC), total starch, gel consistency, and gelatinisation temperature, whereas increased viscosity, total lipid, and ratio of amylopectin A chains with degree of polymerization (DP) 6-12 to B chains with DP 13-24, resulting in an enhanced grain ECQ. The improved ECQ was accompanied by altered expression patterns of several tested SSRGs in tl1 mutant grains. Furthermore, knockout of TL1 in the high-yielding rice variety JiaHua NO.1 reduced AAC without obvious side effects on major agronomic traits. These findings expand our understanding of the regulating networks of grain starch metabolism and provide new insights into how rice ECQ quality can be improved via genetic approach.
一种通过调控水稻直链淀粉含量和支链淀粉链长分布来影响水稻食味和蒸煮品质的新型CH锌指蛋白的克隆与鉴定。水稻育种的主要目标之一是同时提高产量和谷物品质,特别是食味和蒸煮品质(ECQ)。控制水稻中的直链淀粉含量(AC)和支链淀粉链长分布(ACLD)是改善水稻ECQ的主要策略。先前的研究表明,一些淀粉合成相关基因(SSRGs)是正常AC和ACLD所必需的,但其潜在的调控网络仍不清楚。在此,我们报道了一种新型CH锌指蛋白TL1(胚乳透明1)的克隆与鉴定,该蛋白正向调控水稻籽粒中的直链淀粉合成。TL1功能缺失降低了表观直链淀粉含量(AAC)、总淀粉、胶稠度和糊化温度,而增加了粘度、总脂质以及聚合度(DP)为6 - 12的支链淀粉A链与DP为13 - 24的B链的比例,从而提高了谷物的ECQ。ECQ的改善伴随着tl1突变体籽粒中几个被测SSRGs表达模式的改变。此外,在高产水稻品种嘉花1号中敲除TL1降低了AAC,而对主要农艺性状没有明显的副作用。这些发现扩展了我们对谷物淀粉代谢调控网络的理解,并为通过遗传方法改善水稻ECQ品质提供了新的见解。