Deng Yao, Yu Yongchao, Hu Yuxiang, Ma Li, Lin Yan, Wu Yue, Wang Zhen, Wang Ziteng, Bai Jiaqi, Ding Yanfeng, Chen Lin
College of Agriculture, Nanjing Agricultural University, Nanjing, China.
Key Laboratory of Crop Physiology and Ecology in Southern China, Ministry of Agricultural University, Nanjing, China.
Front Plant Sci. 2021 Feb 25;12:630997. doi: 10.3389/fpls.2021.630997. eCollection 2021.
Large panicle rice cultivars often fail to fulfill their high-yield potential due to the poor grain filling of inferior spikelets (IS), which appears as initially stagnant development and low final seed weight. Understanding the mechanism of the initial stagnancy is important to improve IS grain filling. In this study, superior spikelets (SS) were removed from two homozygous japonica rice varieties (W1844 and CJ03) with the same sink capacity in an attempt to force photosynthate transport to the IS. The results showed that SS removal increased the grain weight, sucrose content, starch accumulation, and endogenous IAA levels of IS during the initial grain-filling stage. SS removal also improved the patterns of vascular cells in the dorsal pericarp and the expression levels of genes involved in sucrose transport ( and ) and IAA metabolism ( and ). Exogenous IAA application advanced the initiation of grain filling by increasing the sucrose content and the gene expression levels of sucrose transporters. These results indicate that auxin may act like a signal substance and play a vital role in initial grain filling by regulating dorsal vascular cell development and sucrose phloem unloading into caryopsis.
大穗型水稻品种常常无法实现其高产潜力,原因是弱势小穗(IS)的籽粒充实不良,表现为最初发育停滞且最终种子重量低。了解初始停滞的机制对于改善IS籽粒充实很重要。在本研究中,从两个具有相同库容量的纯合粳稻品种(W1844和CJ03)上去除强势小穗(SS),试图促使光合产物向IS运输。结果表明,去除SS增加了初始灌浆阶段IS的粒重、蔗糖含量、淀粉积累和内源IAA水平。去除SS还改善了颖果背部维管束细胞模式以及参与蔗糖运输(和)和IAA代谢(和)的基因表达水平。外源施加IAA通过增加蔗糖含量和蔗糖转运蛋白的基因表达水平,提前了灌浆的起始。这些结果表明,生长素可能作为一种信号物质,通过调节颖果背部维管束细胞发育和蔗糖韧皮部卸载到颖果中,在初始灌浆中发挥重要作用。