Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.
Center of Seed Science and Technology, Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing, China.
Plant Cell Physiol. 2019 Aug 1;60(8):1734-1746. doi: 10.1093/pcp/pcz083.
Pentatricopeptide repeat (PPR) proteins play crucial roles in intron splicing, which is important for RNA maturation. Identification of novel PPR protein with the function of intron splicing would help to understand the RNA splicing mechanism. In this study, we identified the maize empty pericarp602 (emp602) mutants, the mature kernels of which showed empty pericarp phenotype. We cloned the Emp602 gene from emp602 mutants and revealed that Emp602 encodes a mitochondrial-localized P-type PPR protein. We further revealed that Emp602 is specific for the cis-splicing of mitochondrial Nad4 intron 1 and intron 3, and mutation of Emp602 led to the loss of mature Nad4 transcripts. The loss of function of Emp602 nearly damaged the assembly and accumulation of complex I and arrested mitochondria formation, which arrested the seed development. The failed assembly of complex I triggers significant upregulation of Aox expression in emp602 mutants. Transcriptome analysis showed that the expression of mitochondrial-related genes, e.g. the genes associated with mitochondrial inner membrane presequence translocase complex and electron carrier activity, were extensively upregulated in emp602 mutant. These results demonstrate that EMP602 functions in the splicing of Nad4 intron 1 and intron 3, and the loss of function of Emp602 arrested maize seed development by disrupting the mitochondria complex I assembly.
五肽重复(PPR)蛋白在剪接体中发挥着重要作用,剪接体对于 RNA 成熟至关重要。鉴定具有剪接体功能的新型 PPR 蛋白有助于理解 RNA 剪接机制。在本研究中,我们鉴定了玉米空稃 602(emp602)突变体,其成熟的籽粒表现为空稃表型。我们从 emp602 突变体中克隆了 Emp602 基因,并揭示 Emp602 编码一个定位于线粒体的 P 型 PPR 蛋白。我们进一步揭示 Emp602 特异性地参与线粒体 Nad4 内含子 1 和内含子 3 的顺式剪接,并且 Emp602 的突变导致成熟 Nad4 转录本的丢失。Emp602 功能的丧失几乎破坏了复合体 I 的组装和积累,并阻止了线粒体的形成,从而导致种子发育停滞。复合体 I 的组装失败会引发 emp602 突变体中 Aox 表达的显著上调。转录组分析表明,线粒体相关基因的表达,如与线粒体内膜前导序列转位酶复合物和电子载体活性相关的基因,在 emp602 突变体中广泛上调。这些结果表明 EMP602 在内含子 1 和内含子 3 的剪接中发挥作用,并且 Emp602 的功能丧失通过破坏线粒体复合体 I 的组装而阻止玉米种子的发育。