Enhancing Folate Content in Japonica Rice Through Co-expression of OsADCS and OsGTPCHI Indica Alleles
文献类型: 外文期刊
作者: Lai, Changkai 1 ; Hu, Shikai 1 ; Jiao, Guiai 1 ; Wang, Ling 1 ; Shao, Gaoneng 1 ; Zhao, Fengli 1 ; Xie, Lihong 1 ; Wei, Xiangjin 1 ; Lue, Yusong 1 ; Sheng, Zhonghua 1 ; Tang, Shaoqing 1 ; Hu, Peisong 1 ;
作者机构: 1.Shenyang Agr Univ, Rice Res Inst, Shenyang 110866, Peoples R China
2.China Natl Rice Res Inst, China Natl Rice Improvement Ctr, State Key Lab Rice Biol & Breeding, Hangzhou 310006, Peoples R China
3.Ningxia Acad Agr & Forestry Sci, Crop Res Inst, Yinchuan 750002, Peoples R China
关键词: biofortification; endosperm-specific expression; OsADCS; OsGTPCHI; folate content; grain; Oryza sativa
期刊名称:RICE SCIENCE ( 影响因子:6.1; 五年影响因子:5.6 )
ISSN: 1672-6308
年卷期: 2025 年 32 卷 3 期
页码:
收录情况: SCI
摘要: Rice is a poor source of folate, an essential micronutrient for the body. Biofortification offers an effective way to enhance the folate content of rice and alleviate folate deficiencies in humans. In this study, we confirmed that OsADCS and OsGTPCHI, encoding the initial enzymes necessary for folate synthesis, positively regulate folate accumulation in knockout mutants of both japonica and indica rice backgrounds. The folate content in the low-folate japonica variety was slightly increased by the expression of the indica alleles driven by the endosperm-specific promoter. We further obtained co-expression lines by stacking OsADCS and OsGTPCHI genes; the folate accumulation in brown rice and polished rice reached 5.65 mu g/g and 2.95 mu g/g, respectively, representing 37.9-fold and 26.5-fold increases compared with the wild type. Transcriptomic analysis of rice grains from six transgenic lines showed that folate changes affected biological pathways involved in the synthesis and metabolism of rice seed storage substances, while the expression of other folate synthesis genes was weakly regulated. In addition, we identified Aus rice as a high-folate germplasm carrying superior haplotypes of OsADCS and OsGTPCHI through natural variation. This study provides an alternative and effective complementary strategy for rice biofortification, promoting the rational combination of metabolic engineering and conventional breeding to breed high-folate varieties.
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