Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou 450009, China.
Int J Mol Sci. 2019 Dec 31;21(1):290. doi: 10.3390/ijms21010290.
Plants with shorter internodes are suitable for high-density planting, lodging resistance and the preservation of land resources by improving yield per unit area. In this study, we identified a locus controlling the short internode trait in watermelon using Zhengzhouzigua (long internode) and Duan125 (short internode) as mapping parents. Genetic analysis indicated that F plants were consistent with long internode plants, which indicates that the long internode was dominant over the short internode. The observed F and BC individuals fitted the expected phenotypic segregation ratios of 3:1 and 1:1, respectively. The locus was mapped on chromosome 9 using a bulked segregant analysis approach. The region was narrowed down to 8.525 kb having only one putative gene, , flanking by CAPS90 and CAPS91 markers, which encodes gibberellin 3β-hydroxylase (GA 3β-hydroxylase). The sequence alignment of the candidate gene between both parents revealed a 13 bp deletion in the short internode parent, which resulted in a truncated protein. Before GA application, significantly lower GA content and shorter cell length were obtained in the short internode plants. However, the highest GA content and significant increase in cell length were observed in the short internode plants after exogenous GA application. In the short internode plants, the expression level of the was threefold lower than the long internode plants in the stem tissue. In general, our results suggested that might be the candidate gene responsible for the short internode phenotype in watermelon and the phenotype is responsive to exogenous GA application.
具有较短节间的植物适合高密度种植,通过提高单位面积产量来抵抗倒伏和保护土地资源。在这项研究中,我们使用 Zhengzhouzigua(长节间)和 Duan125(短节间)作为作图亲本,鉴定出控制西瓜短节间性状的一个位点。遗传分析表明,F1 代与长节间植物一致,这表明长节间是短节间的显性。观察到的 F1 和 BC 个体分别符合预期的 3:1 和 1:1 的表型分离比例。该位点使用 bulked segregant analysis 方法定位在第 9 号染色体上。该区域缩小到 8.525 kb 大小,仅包含一个假定的基因 ,其侧翼为 CAPS90 和 CAPS91 标记,该基因编码赤霉素 3β-羟化酶(GA 3β-羟化酶)。候选基因在两个亲本之间的序列比对显示,短节间亲本中存在 13 bp 的缺失,导致截短的蛋白质。在施用 GA 之前,短节间植物中的 GA 含量显著降低,细胞长度较短。然而,在外源 GA 施用后,短节间植物中的 GA 含量最高,细胞长度显著增加。在短节间植物中, 基因在茎组织中的表达水平比长节间植物低三倍。总的来说,我们的结果表明 可能是西瓜短节间表型的候选基因,该表型对外源 GA 应用有反应。