Zeng Dong-Dong, Qin Ran, Li Mei, Alamin Md, Jin Xiao-Li, Liu Yu, Shi Chun-Hai
Department of Agronomy, Zhejiang University, Hangzhou, 310058, China.
Analysis Center of Agrobiology and Environmental Sciences, Zhejiang University, Hangzhou, 310058, China.
Mol Genet Genomics. 2017 Apr;292(2):385-395. doi: 10.1007/s00438-016-1275-z. Epub 2016 Dec 23.
Ferredoxin-dependent glutamate synthase (Fd-GOGAT, EC 1.4.7.1) plays major roles in photorespiration and primary nitrogen assimilation. However, due to no mutant or knockdown lines of OsFd-GOGAT have been reported in rice (Oryza sativa L.), the contribution of OsFd-GOGAT to rice foliar nitrogen metabolism remains little up-to-date. Here, we isolated a rice premature leaf senescence mutant named gogat1, which was reduced in 67% of the total GOGAT enzyme activity in leaves. The gogat1 mutant exhibited chlorosis under natural condition, while showed less extent premature leaf senescence under low light treatment. The gogat1 locus was mapped to a 54.1 kb region on chromosome 7, and the sequencing of OsFd-GOGAT showed one substitution (A to T) at the 3017th nucleotide of the open reading frame, leading to the amino-acid substitution of leucine changed to histidine. The gogat1 mutant showed reduced seed setting rate, while the grain protein content in gogat1 mutant was significantly higher than that in wild type. Meanwhile, during the grain-filling stage, total amino acids in the up three leaves and the upmost internode were increased dramatically. The results in this study suggested that OsFd-GOGAT might participate in nitrogen remobilization during leaf senescence, which provides a potential way to improve nitrogen use efficiency in rice.
铁氧还蛋白依赖型谷氨酸合酶(Fd-GOGAT,EC 1.4.7.1)在光呼吸和初级氮同化过程中发挥着重要作用。然而,由于水稻(Oryza sativa L.)中尚未报道OsFd-GOGAT的突变体或基因敲除株系,OsFd-GOGAT对水稻叶片氮代谢的贡献目前仍鲜为人知。在此,我们分离出一个水稻叶片早衰突变体gogat1,其叶片中GOGAT酶的总活性降低了67%。gogat1突变体在自然条件下表现出黄化现象,而在弱光处理下叶片早衰程度较轻。gogat1基因座被定位到7号染色体上一个54.1 kb的区域,对OsFd-GOGAT进行测序发现,其开放阅读框第3017个核苷酸处有一个替换(A替换为T),导致氨基酸由亮氨酸替换为组氨酸。gogat1突变体结实率降低,但其籽粒蛋白质含量显著高于野生型。同时,在灌浆期,上部三片叶和最上部节间的总氨基酸含量显著增加。本研究结果表明,OsFd-GOGAT可能参与叶片衰老过程中的氮素再分配,这为提高水稻氮素利用效率提供了一条潜在途径。