State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.
J Integr Plant Biol. 2019 Sep;61(9):1000-1014. doi: 10.1111/jipb.12739. Epub 2019 Jan 30.
Optimizing leaf shape is a major challenge in efforts to develop an ideal plant type. Cucumber leaf shapes are diverse; however, the molecular regulatory mechanisms underlying leaf shape formation are unknown. In this study, we obtained a round leaf mutant (rl) from an ethyl methanesulfonate-induced mutagenesis population. Genetic analysis revealed that a single recessive gene, rl, is responsible for this mutation. A modified MutMap analysis combined linkage mapping identified a single nucleotide polymorphism within a candidate gene, Csa1M537400, as the mutation underlying the trait. Csa1M537400 encodes a PINOID kinase protein involved in auxin transport. Expression of Csa1M537400 was significantly lower in the rl mutant than in wild type, and it displayed higher levels of IAA (indole-3-acetic acid) in several tissues. Treatment of wild-type plants with an auxin transport inhibitor induced the formation of round leaves, similar to those in the rl mutant. Altered expression patterns of several auxin-related genes in the rl mutant suggest that rl plays a key role in auxin biosynthesis, transport, and response in cucumber. These findings provide insight into the molecular mechanism underlying the regulation of auxin signaling pathways in cucumber, and will be valuable in the development of an ideal plant type.
优化叶片形状是培育理想植物类型的主要挑战之一。黄瓜叶片形状多样,但叶片形状形成的分子调控机制尚不清楚。本研究从乙基磺酸甲酯诱导的诱变群体中获得了一个圆形叶片突变体(rl)。遗传分析表明,一个单隐性基因 rl 是导致该突变的原因。改良的 MutMap 分析结合连锁作图,在候选基因 Csa1M537400 内鉴定到一个单核苷酸多态性,该基因是该性状的突变基础。Csa1M537400 编码参与生长素运输的 PINOID 激酶蛋白。rl 突变体中 Csa1M537400 的表达明显低于野生型,并且在几种组织中 IAA(吲哚-3-乙酸)水平更高。用生长素运输抑制剂处理野生型植物会诱导形成类似于 rl 突变体的圆形叶片。rl 突变体中几个与生长素相关基因的表达模式改变表明 rl 在黄瓜中生长素的生物合成、运输和响应中发挥关键作用。这些发现为黄瓜中生长素信号通路调控的分子机制提供了深入了解,对理想植物类型的培育具有重要价值。