Institute of Horticultural Biotechnology, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Chongqing Normal University, Daxuecheng Middle Rd, Chongqing, Shapingba Qu, China.
BMC Plant Biol. 2018 Nov 29;18(1):308. doi: 10.1186/s12870-018-1483-2.
Cold stress is one of the most severe abiotic stresses affecting the banana production. Although some miRNAs have been identified, little is known about the role of miRNAs in response to cold stress in banana, and up to date, there is no report about the role of miRNAs in the response to cold stress in the plants of the cultivated or wild bananas.
Here, a cold-resistant line wild banana (Musa itinerans) from China was used to profile the cold-responsive miRNAs by RNA-seq during cold stress. Totally, 265 known mature miRNAs and 41 novel miRNAs were obtained. Cluster analysis of differentially expressed (DE) miRNAs indicated that some miRNAs were specific for chilling or 0 °C treated responses, and most of them were reported to be cold-responsive; however, some were seldom reported to be cold-responsive in response to cold stress, e.g., miR395, miR408, miR172, suggesting that they maybe play key roles in response to cold stress. The GO and KEGG pathway enrichment analysis of DE miRNAs targets indicated that there existed diversified cold-responsive pathways, and miR172 was found likely to play a central coordinating role in response to cold stress, especially in the regulation of CK2 and the circadian rhythm. Finally, qPCR assays indicated the related targets were negatively regulated by the tested DE miRNAs during cold stress in the wild banana.
In this study, the profiling of miRNAs by RNA-seq in response to cold stress in the plants of the wild banana (Musa itinerans) was reported for the first time. The results showed that there existed diversified cold-responsive pathways, which provided insight into the roles of miRNAs during cold stress, and would be helpful for alleviating cold stress and cold-resistant breeding in bananas.
冷胁迫是影响香蕉生产的最严重非生物胁迫之一。虽然已经鉴定出一些 miRNAs,但对于 miRNA 在香蕉响应冷胁迫中的作用知之甚少,迄今为止,尚无关于 miRNA 在栽培或野生香蕉植物响应冷胁迫中的作用的报道。
本研究采用中国耐冷野生香蕉(Musa itinerans),通过 RNA-seq 在冷胁迫过程中对冷响应 miRNA 进行了分析。共获得 265 个已知成熟 miRNA 和 41 个新 miRNA。差异表达(DE)miRNA 的聚类分析表明,一些 miRNA 对冷胁迫或 0°C 处理有特异性反应,其中大多数被报道对冷胁迫有响应;然而,有些 miRNA 很少有报道对冷胁迫有响应,例如 miR395、miR408、miR172,表明它们可能在响应冷胁迫中发挥关键作用。DE miRNAs 靶标 GO 和 KEGG 通路富集分析表明,存在多样化的冷响应途径,miR172 可能在响应冷胁迫中发挥中心协调作用,特别是在 CK2 和昼夜节律的调节中。最后,qPCR 检测表明,在野生香蕉中冷胁迫时,相关靶标受测试的 DE miRNAs 负调控。
本研究首次报道了野生香蕉(Musa itinerans)响应冷胁迫的 miRNA 进行 RNA-seq 分析。结果表明,存在多样化的冷响应途径,这为 miRNA 在冷胁迫过程中的作用提供了新的见解,并有助于减轻香蕉的冷胁迫和耐寒性育种。