Xia Yan, Lai Zhongxiong, Do Yi-Yin, Huang Pung-Ling
Institute of Horticultural Biotechnology, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Department of Horticulture and Landscape Architecture, National Taiwan University, Taipei 10617, Taiwan.
Plants (Basel). 2023 Sep 28;12(19):3414. doi: 10.3390/plants12193414.
Banana (, AAA group) is a typically respiratory climacteric fruit. Previously, genes encoding ACC oxidase, one of the key enzymes in ethylene biosynthesis, and in bananas were silenced individually using RNAi interference technology, and fruit ripening of transgenic bananas was postponed. Here, the differential expression of miRNAs and their targeted mRNAs were analyzed in the transcriptomes of fruits at the third ripening stage, peel color more green than yellow, from the untransformed and RNAi transgenic bananas. Five significantly differentially expressed miRNAs (mac-miR169a, mac-miR319c-3p, mac-miR171a, mac-miR156e-5p, and mac-miR164a-5p) were identified. The predicted miRNA target genes were mainly enriched in six KEGG pathways, including 'sulfur relay system', 'protein digestion and absorption', 'histidine metabolism', 'pathogenic infection', 'sulfur metabolism', and 'starch and sucrose metabolism'. After ethylene treatment, the expression of ACC oxidase silencing-associated miRNAs was down-regulated, and that of their target genes was up-regulated along with fruit ripening. The evolutionary clustering relationships of miRNA precursors among 12 gene families related to fruit ripening were analyzed. The corresponding expression patterns of mature bodies were mainly concentrated in flowers, fruits, and leaves. Our results indicated that ethylene biosynthesis is associated with miRNAs regulating the expression of sulfur metabolism-related genes in bananas.
香蕉(AAA组)是典型的呼吸跃变型果实。此前,利用RNA干扰技术分别沉默了香蕉中乙烯生物合成关键酶之一的ACC氧化酶编码基因,转基因香蕉的果实成熟被推迟。在此,对未转化和RNA干扰转基因香蕉处于成熟第三阶段(果皮颜色绿多于黄)的果实转录组中miRNA及其靶向mRNA的差异表达进行了分析。鉴定出5个显著差异表达的miRNA(mac-miR169a、mac-miR319c-3p、mac-miR171a、mac-miR156e-5p和mac-miR164a-5p)。预测的miRNA靶基因主要富集在6条KEGG通路中,包括“硫传递系统”“蛋白质消化与吸收”“组氨酸代谢”“病原体感染”“硫代谢”以及“淀粉与蔗糖代谢”。乙烯处理后,与ACC氧化酶沉默相关的miRNA表达下调,其靶基因的表达随着果实成熟而上调。分析了12个与果实成熟相关基因家族中miRNA前体的进化聚类关系。成熟体的相应表达模式主要集中在花、果实和叶片中。我们的结果表明,乙烯生物合成与miRNA调控香蕉中硫代谢相关基因的表达有关。