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高温下紫花苜蓿响应微小RNA156的无标记定量蛋白质组学分析

Label-free quantitative proteomic analysis of alfalfa in response to microRNA156 under high temperature.

作者信息

Arshad Muhammad, Puri Alpa, Simkovich Aaron J, Renaud Justin, Gruber Margaret Y, Marsolais Frédéric, Hannoufa Abdelali

机构信息

Agriculture and Agri-Food Canada, 1391 Sandford Street, London, Ontario, N5V 4T3, Canada.

Centre for Genomics and Systems Biology, New York University, Abu Dhabi, United Arab Emirates.

出版信息

BMC Genomics. 2020 Nov 2;21(1):758. doi: 10.1186/s12864-020-07161-1.

Abstract

BACKGROUND

Abiotic stress, including heat, is one of the major factors that affect alfalfa growth and forage yield. The small RNA, microRNA156 (miR156), regulates multiple traits in alfalfa during abiotic stress. The aim of this study was to explore the role of miR156 in regulating heat response in alfalfa at the protein level.

RESULTS

In this study, we compared an empty vector control and miR156 overexpressing (miR156OE) alfalfa plants after exposing them to heat stress (40 °C) for 24 h. We measured physiological parameters of control and miR156OE plants under heat stress, and collected leaf samples for protein analysis. A higher proline and antioxidant contents were detected in miR156OE plants than in controls under heat stress. Protein samples were analyzed by label-free quantification proteomics. Across all samples, a total of 1878 protein groups were detected. Under heat stress, 45 protein groups in the empty vector plants were significantly altered (P < 0.05; |logFC| > 2). Conversely, 105 protein groups were significantly altered when miR156OE alfalfa was subjected to heat stress, of which 91 were unique to miR156OE plants. The identified protein groups unique to miR156OE plants were related to diverse functions including metabolism, photosynthesis, stress-response and plant defenses. Furthermore, we identified transcription factors in miR156OE plants, which belonged to squamosa promoter binding-like protein, MYB, ethylene responsive factors, AP2 domain, ABA response element binding factor and bZIP families of transcription factors.

CONCLUSIONS

These results suggest a positive role for miR156 in heat stress response in alfalfa. They reveal a miR156-regulated network of mechanisms at the protein level to modulate heat responses in alfalfa.

摘要

背景

包括高温在内的非生物胁迫是影响苜蓿生长和牧草产量的主要因素之一。小RNA,即微小RNA156(miR156),在非生物胁迫期间调控苜蓿的多个性状。本研究的目的是在蛋白质水平上探索miR156在调控苜蓿热响应中的作用。

结果

在本研究中,我们将空载对照和过表达miR156(miR156OE)的苜蓿植株在40°C热胁迫下处理24小时后进行比较。我们测量了热胁迫下对照和miR156OE植株的生理参数,并采集叶片样本进行蛋白质分析。在热胁迫下,miR156OE植株中脯氨酸和抗氧化剂含量高于对照。通过无标记定量蛋白质组学分析蛋白质样本。在所有样本中,共检测到1878个蛋白质组。在热胁迫下,空载植株中有45个蛋白质组发生显著变化(P<0.05;|logFC|>2)。相反,miR156OE苜蓿在热胁迫下有105个蛋白质组发生显著变化,其中91个是miR156OE植株特有的。miR156OE植株特有的已鉴定蛋白质组与包括代谢、光合作用、胁迫响应和植物防御在内的多种功能相关。此外,我们在miR156OE植株中鉴定出转录因子,它们属于鳞状启动子结合样蛋白、MYB、乙烯响应因子、AP2结构域、ABA响应元件结合因子和bZIP转录因子家族。

结论

这些结果表明miR156在苜蓿热胁迫响应中发挥积极作用。它们揭示了一个在蛋白质水平上由miR156调控的机制网络,以调节苜蓿的热响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fa7/7607685/b5de970e4c95/12864_2020_7161_Fig1_HTML.jpg

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