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Physiological studies and genome-wide microRNA profiling of cold-stressed Brassica napus

机译:冷应激芸薹属植物的生理学研究和基因组微瘤谱分析

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摘要

Temperature extremes, including cold, adversely impact plant growth and development. Plant responses to cold stress (CS) are regulated at both transcriptional and post-transcriptional levels. MicroRNAs (miRNAs), small non-coding RNAs, are known to be involved in post-transcriptional regulation of various developmental processes and metal stress in Brassica napus L. (canola), however, their role in response to CS is largely unknown. In this study, changes in various physiological parameters and endogenous abundance of miRNAs were characterized in spring canola seedlings (DH12075) exposed to 4 degrees C for 0-48 h. Cold stress induced electrolyte leakage, increased the levels of malondialdheyde and antioxidant enzymes and reduced photosynthetic efficiency. Using small RNA sequencing, 70 known and 126 novel miRNAs were identified in CS leaf tissues and among these, 25 known and 104 novel miRNAs were differentially expressed. Quantitative real-time (qRT) PCR analysis of eight selected miRNAs confirmed their CS responsiveness. Furthermore, the expression of six out of eight miRNAs exhibited an opposite trend in a winter variety of canola, 'Mendel', when compared to 'DH12075'. This first study on the B. napus miRNAome provides a framework for further functional analysis of these miRNAs and their targets in response to CS which may contribute towards the future development of cold resilient crops.
机译:极端温度,包括寒冷,对植物生长和发育不利影响。对转录和转录后水平的调节对冷应激(CS)的植物反应。 Micrornas(miRNA),小非编码RNA,众所周知,芸苔属植物中的各种发育方法和金属应激的转录后调节和金属胁迫,然而,它们响应Cs的作用主要是未知的。在该研究中,各种生理参数的变化和内源性的miRNA在春季芥菜幼苗(DH12075)中的特征在4℃下进行0-48小时。冷应激诱导电解质渗漏,增加了麦芽肽干事和抗氧化酶的水平,并降低了光合效率。使用小RNA测序,在CS叶组织中鉴定出70个已知的和126个新的miRNA,其中25个已知的和104个新的miRNA差异表达。定量实时(QRT)PCR分析八个选定的miRNA证实了它们的CS响应性。此外,与'dh12075'相比,八个miRNA中六个八个miRNA中的六种表达呈现出相反的趋势,“孟德尔”。这对B. Napus miranome的第一次研究提供了对这些miRNA的进一步功能分析的框架,以及它们的目标是响应于CS的CS,这可能导致冷弹性作物的未来发展。

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