National Key Laboratory of Plant Molecular Genetics, CAS Centre for Excellence in Molecular Plant Sciences and Collaborative Innovation Center of Genetics and Development, Shanghai Institute of Plant Physiology and Ecology, Chinese Academic of Sciences, Shanghai, 200032, China.
University of the Chinese Academy of Sciences, Beijing, 100049, China.
Plant J. 2020 Aug;103(3):1174-1188. doi: 10.1111/tpj.14793. Epub 2020 May 28.
Grain size is one of the essential components determining rice yield and is a target for both domestication and artificial breeding. Gibberellins (GAs) are diterpenoid phytohormones that influence diverse aspects of plant growth and development. Several quantitative trait loci (QTLs) have been identified that control grain size through phytohormone regulation. However, little is known about the role of GAs in the control of grain size. Here we report the cloning and characterization of a QTL, GW6 (GRAIN WIDTH 6), which encodes a GA-regulated GAST family protein and positively regulates grain width and weight. GW6 is highly expressed in the young panicle and increases grain width by promoting cell expansion in the spikelet hull. Knockout of GW6 exhibits reduced grain size and weight, whereas overexpression of GW6 results in increased grain size and weight. GW6 is induced by GA and its knockout downregulates the expression of GA biosynthesis genes and decreases GA content in the young panicle. We found that a natural variation in the cis element CAAT-box in the promoter of GW6 is associated with its expression level and grain width and weight. Furthermore, introduction of GW6 to Oryza indica variety HJX74 can lead to a 10.44% increase in rice grain yield, indicating that GW6 has great potential to improve grain yield in rice.
粒宽是决定水稻产量的重要因素之一,是驯化和人工选育的目标。赤霉素(GAs)是二萜植物激素,影响植物生长和发育的多个方面。已经鉴定出几个控制粒宽的数量性状位点(QTLs),这些 QTL 通过植物激素调节来控制粒宽。然而,对于 GAs 在控制粒宽中的作用知之甚少。在这里,我们报告了一个 QTL GW6(粒宽 6)的克隆和特征,该基因编码一个受 GA 调控的 GAST 家族蛋白,正向调控粒宽和粒重。GW6 在幼穗中高度表达,通过促进小穗壳细胞扩张增加粒宽。GW6 的敲除表现出粒宽和粒重减小,而 GW6 的过表达导致粒宽和粒重增加。GW6 受 GA 诱导,其敲除下调 GA 生物合成基因的表达并降低幼穗中的 GA 含量。我们发现 GW6 启动子中顺式元件 CAAT-box 的自然变异与其表达水平以及粒宽和粒重有关。此外,将 GW6 导入籼稻品种 HJX74 可导致水稻粒产量增加 10.44%,表明 GW6 具有提高水稻粒产量的巨大潜力。