State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, College of Agriculture, Guangxi University, Nanning 530004, China.
State Key Laboratory for Conservation and Utilization of Subtropical Agricultural Bioresources, South China Agricultural University, Guangzhou 510642, China.
Int J Mol Sci. 2022 Jul 28;23(15):8354. doi: 10.3390/ijms23158354.
The development of thermosensitive genic male sterile (TGMS) lines is the key to breeding two-line hybrid rice, which has been widely applied in China to increase grain yield. CRISPR/Cas9 has been widely used in genome editing to create novel mutants in rice. In the present study, a super grain quality line, GXU 47, was used to generate a new TGMS line with specific mutations in a major TGMS gene generated with CRISPR/Cas9-mediated genome editing in order to improve the rice quality of two-line hybrids. A mutagenesis efficiency level of 75% was achieved, and three homozygous T-DNA-free mutant lines were screened out. The mutants exhibited excellent thermosensitive male fertility transformation characteristics with complete male sterility at ≥24 °C and desirable male fertility at around 21 °C. Proteomic analysis based on isobaric tags for relative and absolute quantification (iTRAQ) was performed to unveil the subsequent proteomic changes. A total of 192 differentially expressed proteins (DEPs), including 35 upregulated and 157 downregulated, were found. Gene ontology (GO) analysis revealed that the DEPs were involved in a single-organism biosynthetic process, a single-organism metabolic process, oxidoreductase activity, and catalytic activity. Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis showed that the DEPs were involved in ubiquinone and other terpenoid quinone biosynthesis, the biosynthesis of secondary metabolites, metabolic pathways, and phenylpropanoid biosynthesis. Our study shows that high mutation efficiency was achieved in both target sites, and T-DNA-free mutant lines were obtained in the T generation. The present study results prove that it is feasible and efficient to generate an excellent mutant line with CRISPR/Cas9, which provides a novel molecular mechanism of male sterility caused by the mutation of .
温敏雄性核不育(TGMS)系的育成是两系杂交稻选育的关键,在中国已广泛应用于提高粮食产量。CRISPR/Cas9 已广泛应用于基因组编辑,以在水稻中创造新的突变体。本研究以超高产优质水稻品种 GXU47 为材料,利用 CRISPR/Cas9 介导的基因组编辑技术,在主要的 TGMS 基因上产生特定突变,创制新的 TGMS 系,以期改善两系杂交稻的稻米品质。获得了 75%的突变效率,并筛选出 3 个纯合 T-DNA 缺失的突变体。突变体表现出优异的温敏雄性育性转换特性,在≥24℃时完全雄性不育,在 21℃左右时具有良好的雄性可育性。基于相对和绝对定量同位素标记(iTRAQ)的蛋白质组学分析揭示了随后的蛋白质组变化。共鉴定到 192 个差异表达蛋白(DEPs),包括 35 个上调和 157 个下调。GO 分析表明,这些 DEPs 参与了单一生物体的生物合成过程、单一生物体的代谢过程、氧化还原酶活性和催化活性。KEGG 分析表明,这些 DEPs 参与了泛醌和其他萜类醌类生物合成、次生代谢物生物合成、代谢途径和苯丙烷生物合成。本研究表明,在两个靶位都实现了较高的突变效率,并在 T 代获得了 T-DNA 缺失的突变体。本研究结果证明,利用 CRISPR/Cas9 高效创制优良突变体是可行的,为突变引起的雄性不育提供了新的分子机制。