Huang Hailei, Abid Muhammad, Lin Miaomiao, Wang Ran, Gu Hong, Li Yukuo, Qi Xiujuan
Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou 450009, China.
Biology (Basel). 2021 Jul 11;10(7):648. doi: 10.3390/biology10070648.
Kiwifruit coloration is an important agronomic trait used to determine fruit quality, and light plays a vital role in the coloration process. The effect of light on fruit coloration has been studied in many species, but differences in the photoresponse of different fruit parts during fruit coloration is unclear in kiwifruit (). In this study, peel and core with bagging and non-bagging treatment at two stages were selected to perform high throughput RNA sequencing. A total of 100,417 unigenes (25,186 unigenes with length beyond 1000 bp) were obtained, of which 37,519 unigenes were annotated in functional databases. GO and KEGG enrichment results showed that 'plant hormone signal transduction' and 'carbon metabolism' were the key pathways in peel and core coloration, respectively. A total of 27 MYB-related TFs (transcription factors) were differentially expressed in peel and core. An R2R3-MYB typed TF, AaMYB308like, possibly served as a candidate objective, which played a vital role in light-inducible fruit coloration based on bioinformatics analysis. Transient overexpression of suggested overexpression of elevated transcription level of in leaves. Integration of all these results imply that AaMYB308like might be served as a light-responsive transcription factor to regulate anthocyanin biosynthesis in . Moreover, our study provided important insights into photoreponse mechanisms in coloration.
猕猴桃的色泽是用于确定果实品质的重要农艺性状,而光照在色泽形成过程中起着至关重要的作用。光照对果实色泽的影响已在许多物种中进行了研究,但在猕猴桃果实色泽形成过程中不同果实部位光响应的差异尚不清楚。在本研究中,选择两个阶段进行套袋和不套袋处理的果皮和果心进行高通量RNA测序。共获得100417个单基因(25186个长度超过1000bp的单基因),其中37519个单基因在功能数据库中得到注释。GO和KEGG富集结果表明,“植物激素信号转导”和“碳代谢”分别是果皮和果心色泽形成的关键途径。共有27个MYB相关转录因子(TFs)在果皮和果心中差异表达。基于生物信息学分析,一个R2R3-MYB类型的TF,AaMYB308like,可能作为候选目标,在光诱导果实色泽形成中起重要作用。 的瞬时过表达表明 的过表达提高了 叶片中 的转录水平。所有这些结果的整合表明,AaMYB308like可能作为一个光响应转录因子来调节 中花青素的生物合成。此外,我们的研究为 色泽形成的光响应机制提供了重要见解。