Comparative transcriptomic and metabolomic analyses provide insights into the responses to high temperature stress in Alfalfa (Medicago sativa L.).

IF 4.3 2区 生物学 Q1 PLANT SCIENCES
Juan Zhou, Xueshen Tang, Jiahao Li, Shizhuo Dang, Haimei Ma, Yahong Zhang
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Abstract

High temperature stress is one of the most severe forms of abiotic stress in alfalfa. With the intensification of climate change, the frequency of high temperature stress will further increase in the future, which will bring challenges to the growth and development of alfalfa. Therefore, untargeted metabolomic and RNA-Seq profiling were implemented to unravel the possible alteration in alfalfa seedlings subjected to different temperature stress (25 ℃, 30 ℃, 35 ℃, 40 ℃) in this study. Results revealed that High temperature stress significantly altered some pivotal transcripts and metabolites. The number of differentially expressed genes (DEGs) markedly up and down-regulated was 1876 and 1524 in T30_vs_CK, 2, 815 and 2667 in T35_vs_CK, and 2115 and 2, 226 in T40_vs_CK, respectively. The number for significantly up-regulated and down-regulated differential metabolites was 173 and 73 in T30_vs_CK, 188 and 57 in T35_vs_CK, and 220 and 66 in T40_vs_CK, respectively. It is worth noting that metabolomics and transcriptomics co-analysis characterized enriched in plant hormone signal transduction (ko04705), glyoxylate and dicarboxylate metabolism (ko00630), from which some differentially expressed genes and differential metabolites participated. In particular, the content of hormone changed significantly under T40 stress, suggesting that maintaining normal hormone synthesis and metabolism may be an important way to improve the HTS tolerance of alfalfa. The qRT-PCR further showed that the expression pattern was similar to the expression abundance in the transcriptome. This study provides a practical and in-depth perspective from transcriptomics and metabolomics in investigating the effects conferred by temperature on plant growth and development, which provided the theoretical basis for breeding heat-resistant alfalfa.

转录组和代谢组的比较分析有助于深入了解紫花苜蓿(Medicago sativa L.)对高温胁迫的反应。
高温胁迫是紫花苜蓿最严重的非生物胁迫之一。随着气候变化的加剧,未来高温胁迫的频率将进一步增加,这将给苜蓿的生长发育带来挑战。因此,本研究采用非靶向代谢组学和RNA-Seq图谱分析方法来揭示不同温度胁迫(25 ℃、30 ℃、35 ℃、40 ℃)下紫花苜蓿幼苗可能发生的变化。结果表明,高温胁迫显著改变了一些关键转录本和代谢产物。显著上调和下调的差异表达基因(DEGs)数量在 T30_vs_CK 中分别为 1876 个和 1524 个,在 T35_vs_CK 中分别为 2,815 个和 2667 个,在 T40_vs_CK 中分别为 2115 个和 2,226 个。T30_vs_CK中明显上调和下调的差异代谢物数量分别为173和73,T35_vs_CK中分别为188和57,T40_vs_CK中分别为220和66。值得注意的是,代谢组学和转录组学共同分析在植物激素信号转导(ko04705)、乙醛酸盐和二羧酸盐代谢(ko00630)方面发现了丰富的特征,其中一些差异表达基因和差异代谢物参与了分析。其中,激素的含量在T40胁迫下发生了显著变化,这表明保持激素的正常合成和代谢可能是提高紫花苜蓿HTS耐受性的重要途径。qRT-PCR 进一步表明,其表达模式与转录组的表达丰度相似。该研究从转录组学和代谢组学的角度深入研究了温度对植物生长发育的影响,为培育耐高温紫花苜蓿提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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