Xue Shudan, Wan Xiaotong, Lu Sen, Zhong Yujuan, Xie Dasen
Guangdong Key Laboratory for New Technology Research of Vegetables, Vegetable Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou, China.
Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou, China.
Front Plant Sci. 2022 Sep 8;13:971274. doi: 10.3389/fpls.2022.971274. eCollection 2022.
Wax gourd, which belongs to Cucurbitaceae, is an excellent plant resource with the concomitant function of both medicine and foodstuff. Its unique taste and rich nutrition are deeply accepted by consumers. However, the main flavor and nutrients are still unclear, which restricts the quality breeding process of wax gourd. Here, we discovered that monosaccharides, malic acid and citrulline affect the flavor and nutrition of wax gourd and clarified the dynamic accumulation process of these metabolites. To gain insights into the underlying predominant genes regulating accumulation of these metabolites, we performed a time-course transcriptome analysis using RNA-sequencing analysis and compared the expression of screened genes among twenty-four germplasms with different metabolites levels. In addition, the expression abundance among the homologous genes were also analyzed. Finally, a total of 8 genes related to sugar [ (), ()], malic acid [ (), (), ()] and citrulline [ ()], respectively were determined. In summary, understanding the core genes influencing taste or nutrition will provide a theoretical basis for fruit quality improvement in wax gourd.
冬瓜属于葫芦科,是一种具有药食兼用功能的优良植物资源。其独特的口感和丰富的营养深受消费者喜爱。然而,其主要风味和营养成分仍不明确,这限制了冬瓜的品质育种进程。在此,我们发现单糖、苹果酸和瓜氨酸影响冬瓜的风味和营养,并阐明了这些代谢物的动态积累过程。为深入了解调控这些代谢物积累的潜在主导基因,我们利用RNA测序分析进行了时间进程转录组分析,并比较了24份具有不同代谢物水平的种质中筛选基因的表达情况。此外,还分析了同源基因之间的表达丰度。最后,分别确定了8个与糖[(),()]、苹果酸[(),(),()]和瓜氨酸[()]相关的基因。总之,了解影响口感或营养的核心基因将为冬瓜果实品质改良提供理论依据。