发芽
直链淀粉
淀粉合成酶
淀粉
胚胎
油菜素甾醇
苗木
生物
胚乳
细胞生物学
生物化学
淀粉酶
分解代谢
基因表达
水稻
配子体
化学
α-淀粉酶
调节器
转基因
转录因子
拟南芥
转基因作物
新陈代谢
酶
醇溶蛋白
植物
转基因水稻
突变体
食品科学
植物生长
作者
Min Xiong,Chuxin Wang,Qi Gao,Tingting Liu,Lingyi Chu,Lichun Huang,Changquan Zhang,Xiaolei Fan,Qianfeng Li,Qiaoquan Liu
摘要
Efficient seed germination and seedling establishment are critical for achieving high rice yields. This process is regulated by numerous metabolic pathways, including the mobilization of stored starch and the utilization of sugars. The Waxy (Wx) gene, which controls amylose content (AC) in rice grains, plays a key role in this process. Premature transcription termination of Wx determines whether the seed exhibits a waxy or non-waxy phenotype. While Wx is well established as a critical regulator of eating and cooking quality (ECQ) in rice, the present study identifies a novel role for Wx in mediating brassinosteroid (BR)-regulated seed germination. Analysis of Wx-related near-isogenic and transgenic lines revealed that seeds carrying the Wxa allele showed faster germination and superior post-germinative growth than those carrying the wx allele. This enhanced post-germinative growth was associated with increased Wx expression, which significantly boosted amylase activity and led to extensive starch degradation. Additionally, the higher expression and activity of α-amylase in Wxa seeds resulted in greater efficiency of starch-to-sugar conversion. In vitro embryo culture assays demonstrated that the Wxa allele and glucose acted synergistically to promote plumule growth. Moreover, differential Wx expression influenced ABA biosynthesis and catabolism in germinated seeds. Collectively, these findings suggest that appropriately modifying Wx expression to optimize starch composition could achieve the dual goal of improving both ECQ and germination-related traits in rice breeding.
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