Gene mapping and functional analysis of the novel leaf color gene SiYGL1 in foxtail millet [Setaria italica (L.) P. Beauv]

被引:52
作者
Li, Wen [1 ,2 ]
Tang, Sha [1 ]
Zhang, Shuo [1 ]
Shan, Jianguo [1 ,2 ]
Tang, Chanjuan [1 ]
Chen, Qiannan [1 ]
Jia, Guanqing [1 ]
Han, Yuanhuai [1 ,2 ]
Zhi, Hui [1 ]
Diao, Xianmin [1 ]
机构
[1] Chinese Acad Agr Sci, Inst Crop Sci, Beijing 100081, Peoples R China
[2] Shanxi Agr Univ, Coll Agron, Taigu 030801, Shanxi, Peoples R China
基金
国家高技术研究发展计划(863计划); 中国国家自然科学基金; 北京市自然科学基金;
关键词
CHELATASE H-SUBUNIT; CHLOROPHYLL BIOSYNTHESIS; MG-CHELATASE; MAGNESIUM CHELATASE; TETRAPYRROLE BIOSYNTHESIS; CHLOROPLAST DEVELOPMENT; ARABIDOPSIS-THALIANA; SIGNAL-TRANSDUCTION; GENOME SEQUENCE; RICE;
D O I
10.1111/ppl.12405
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Setaria italica and its wild ancestor Setaria viridis are emerging as model systems for genetics and functional genomics research. However, few systematic gene mapping or functional analyses have been reported in these promising C4 models. We herein isolated the yellow-green leaf mutant (siygl1) in S. italica using forward genetics approaches. Map-based cloning revealed that SiYGL1, which is a recessive nuclear gene encoding a magnesium-chelatase D subunit (CHLD), is responsible for the mutant phenotype. A single Phe to Leu amino acid change occurring near the ATPase-conserved domain resulted in decreased chlorophyll (Chl) accumulation and modified chloroplast ultrastructure. However, the mutation enhanced the light-use efficiency of the siygl1 mutant, suggesting that the mutated CHLD protein does not completely lose its original activity, but instead, gains novel features. A transcriptional analysis of Chl a oxygenase revealed that there is a strong negative feedback control of Chl b biosynthesis in S. italica. The SiYGL1mRNA was expressed in all examined tissues, with higher expression observed in the leaves. Comparison of gene expression profiles in wild-type and siygl1 mutant plants indicated that SiYGL1 regulates a subset of genes involved in photosynthesis (rbcL and LHCB1), thylakoid development (DEG2) and chloroplast signaling (SRP54CP). These results provide information regarding the mutant phenotype at the transcriptional level. This study demonstrated that the genetic material of a Setaria species could be ideal for gene discovery investigations using forward genetics approaches and may help to explain the molecular mechanisms associated with leaf color variation.
引用
收藏
页码:24 / 37
页数:14
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