首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Mutations in CsPID encoding a Ser/Thr protein kinase are responsible for round leaf shape in cucumber (Cucumis sativus L.)
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Mutations in CsPID encoding a Ser/Thr protein kinase are responsible for round leaf shape in cucumber (Cucumis sativus L.)

机译:编码Ser / Thr蛋白激酶的CSPID中的突变是黄瓜中的圆形叶片形状(Cucumis Sativus L.)

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Leaf shape is an important plant architecture trait that is affected by plant hormones, especially auxin. In Arabidopsis, PINOID (PID), a regulator for the auxin polar transporter PIN (PIN-FORMED) affects leaf shape formation, but this function of PID in crop plants has not been well studied. From an EMS mutagenesis population, we identified two round-leaf (rl) mutants, C356 and C949. Segregation analysis suggested that both mutations were controlled by single recessive genes, rl-1 and rl-2, respectively. With map-based cloning, we show that CsPID as the candidate gene of rl-1; a non-synonymous SNP in the second exon of CsPID resulted in an amino acid substitution and the round leaf phenotype. As compared in the wild type plant, CsPID had significantly lower expression in the root, leaf and female flowers in C356, which may result in the less developed roots, round leaves and abnormal female flowers, respectively in the rl-1 mutant. Among the three copies of PID genes, CsPID, CsPID2 and CSPID2L (CsPID2-like) in the cucumber genome, CsPID was the only one with significantly differential expression in adult leaves between WT and C356 suggesting CsPID plays a main role in leaf shape formation. The rl-2 mutation in C949 was also cloned, which was due to another SNP in a nearby location of rl-1 in the same CsPID gene. The two round leaf mutants and the work presented herein provide a good foundation for understanding the molecular mechanisms of CsPID in cucumber leaf development.
机译:叶形是一个重要的植物建筑特征,受植物激素,尤其是植物素的影响。在拟南芥中,针蛋白(PID),用于悬垂的助素极性转运销(引脚形成)的调节器会影响叶形形成,但PID在作物植物中的这种功能尚未得到很好的研究。从EMS诱变群体中,我们鉴定了两个圆形叶(RL)突变体C356和C949。偏析分析表明,两种突变分别由单个隐性基因,RL-1和R1-2控制。通过地图克隆,我们将CSPID视为RL-1的候选基因; CSPID第二外显子中的非同义SNP导致氨基酸取代和圆形叶片表型。与野生型植物相比,CSPID在C356中的根,叶和雌性花中的表达显着降低,这可能导致较少发达的根,圆形叶子和异常的雌花,分别在R1-1突变体中。在黄瓜基因组中的PID基因,CSPID,CSPID2和CSPID2L(CSPID2样)的三个拷贝中,CSPID是WT和C356之间的成人叶中唯一具有显着差异表达的副本,表明CSPID在叶形形成中起主要作用。 C949中的RL-2突变也被克隆,这是由于在同一CSPID基因的RL-1附近位置的另一个SNP。本文提供的两个圆形叶片突变体和作品为了解CSPID在黄瓜叶发育中的分子机制提供了良好的基础。

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