Fang Huarong, Huang Shishi, Li Ruirui, Wang Peng, Jiang Qingwei, Zhong Chuan, Yang Yanjuan, Yu Wenjin
College of Agriculture, Guangxi University, Nanning 530004, China.
Plants (Basel). 2024 Aug 3;13(15):2154. doi: 10.3390/plants13152154.
Fruit size is a crucial agronomic trait in bottle gourd, impacting both yield and utility. Despite its significance, the regulatory mechanism governing fruit size in bottle gourd remains largely unknown. In this study, we used bottle gourd (small-fruited H28 and large-fruited H17) parent plants to measure the width and length of fruits at various developmental stages, revealing a single 'S' growth curve for fruit expansion. Paraffin section observations indicated that both cell number and size significantly influence bottle gourd fruit size. Through bulked segregant analysis and combined genotype-phenotype analysis, the candidate interval regulating fruit size was pinpointed to 17,747,353 bp-18,185,825 bp on chromosome 9, encompassing 0.44 Mb and including 44 genes. Parental fruits in the rapid expansion stage were subjected to RNA-seq, highlighting that differentially expressed genes were mainly enriched in pathways related to cell wall biosynthesis, sugar metabolism, and hormone signaling. Transcriptome and resequencing analysis, combined with gene function annotation, identified six genes within the localized region as potential regulators of fruit size. This study not only maps the candidate interval of genes influencing fruit size in bottle gourd through forward genetics, but also offers new insights into the potential molecular mechanisms underlying this trait through transcriptome analysis.
果实大小是瓠瓜的一个关键农艺性状,对产量和实用性都有影响。尽管其具有重要意义,但瓠瓜果实大小的调控机制在很大程度上仍不清楚。在本研究中,我们使用瓠瓜(小果型H28和大果型H17)亲本植株来测量果实不同发育阶段的宽度和长度,结果显示果实膨大呈单一的“S”形生长曲线。石蜡切片观察表明,细胞数量和大小均对瓠瓜果实大小有显著影响。通过混合分组分析法和基因型-表型联合分析,将调控果实大小的候选区间定位到9号染色体上的17,747,353 bp至-18,185,825 bp处,涵盖0.44 Mb,包含44个基因。对处于快速膨大阶段的亲本果实进行RNA测序,结果表明差异表达基因主要富集在与细胞壁生物合成、糖代谢和激素信号传导相关的途径中。转录组和重测序分析,结合基因功能注释,确定了定位区域内的6个基因是果实大小的潜在调控因子。本研究不仅通过正向遗传学方法定位了影响瓠瓜果实大小的基因候选区间,还通过转录组分析为该性状潜在的分子机制提供了新的见解。