Zhao Juan, Liu Xing, Wang Mei, Xie Lingjuan, Wu Zhengxin, Yu Jiuming, Wang Yuchen, Zhang Zhiqiao, Jia Yufang, Liu Qingpo
The Key Laboratory for Quality Improvement of Agricultural Products of Zhejiang Province, College of Advanced Agricultural Sciences, Zhejiang A&F University, Lin'an Hangzhou, 311300, People's Republic of China.
Rice (N Y). 2022 May 20;15(1):27. doi: 10.1186/s12284-022-00575-3.
Plant height, as one of the important agronomic traits of rice, is closely related to yield. In recent years, plant height-related genes have been characterized and identified, among which the DWARF3 (D3) gene is one of the target genes of miR528, and regulates rice plant height and tillering mainly by affecting strigolactone (SL) signal transduction. However, it remains unknown whether the miR528 and D3 interaction functions in controlling plant height, and the underlying regulatory mechanism in rice. In this study, we found that the plant height, internode length, and cell length of internodes of d3 mutants and miR528-overexpressing (OE-miR528) lines were greatly shorter than WT, D3-overexpressing (OE-D3), and miR528 target mimicry (OE-MIM528) transgenic plants. Knockout of D3 gene (d3 mutants) or miR528-overexpressing (OE-miR528) triggers a substantial reduction of gibberellin (GA) content, but a significant increase of abscisic acid (ABA) accumulation than in WT. The d3 and OE-miR528 transgenic plants were much more sensitive to GA, but less sensitive to ABA than WT. Moreover, the expression level of GA biosynthesis-related key genes, including OsCPS1, OsCPS2, OsKO2 and OsKAO was remarkably higher in OE-D3 plants, while the NECD2 expression, a key gene involved in ABA biosynthesis, was significantly higher in d3 mutants than in WT and OE-D3 plants. The results indicate that the miR528-D3 module negatively regulates plant height in rice by modulating the GA and ABA homeostasis, thereby further affecting the elongation of internodes, and resulting in lower plant height, which adds a new regulatory role to the D3-mediated plant height controlling in rice.
株高是水稻重要的农艺性状之一,与产量密切相关。近年来,已对与株高相关的基因进行了表征和鉴定,其中DWARF3(D3)基因是miR528的靶基因之一,主要通过影响独脚金内酯(SL)信号转导来调节水稻株高和分蘖。然而,miR528与D3的相互作用在控制株高方面是否发挥作用以及水稻中的潜在调控机制仍不清楚。在本研究中,我们发现d3突变体和miR528过表达(OE-miR528)株系的株高、节间长度和节间细胞长度比野生型(WT)、D3过表达(OE-D3)和miR528靶标模拟(OE-MIM528)转基因植株短得多。D3基因敲除(d3突变体)或miR528过表达(OE-miR528)会导致赤霉素(GA)含量大幅降低,但脱落酸(ABA)积累量比野生型显著增加。d3和OE-miR528转基因植株对GA的敏感性比野生型高得多,但对ABA的敏感性比野生型低。此外,GA生物合成相关关键基因,包括OsCPS1、OsCPS2、OsKO2和OsKAO的表达水平在OE-D3植株中显著更高,而参与ABA生物合成的关键基因NECD2的表达在d3突变体中比野生型和OE-D3植株显著更高。结果表明,miR528-D3模块通过调节GA和ABA稳态对水稻株高起负调控作用,从而进一步影响节间伸长,导致株高降低,这为D3介导的水稻株高控制增加了新的调控作用。