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陆地棉转录组分析揭示了 NaCl、NaOH 和 NaCO 胁迫耐性中的不同机制。

Transcriptome Analysis of Gossypium hirsutum L. Reveals Different Mechanisms among NaCl, NaOH and NaCO Stress Tolerance.

机构信息

State Key Laboratory of Cotton Biology, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Key Laboratory for Cotton Genetic Improvement, Anyang, 455000, Henan, China.

出版信息

Sci Rep. 2018 Sep 10;8(1):13527. doi: 10.1038/s41598-018-31668-z.

Abstract

As an important source of fiber and edible oil, cotton has great economic value. In comparison to their individual studies, association and differentiation between salt and alkaline tolerance has not been focused yet by scientists. We have used next-generation RNA-Seq technique to analyze transcriptional changes under salt and alkaline stresses in cotton. Overall, 25,929 and 6,564 differentially expressed genes (DEGs) were identified in roots and leaves, respectively. Gene functional annotation showed that genes involving ionic homeostasis were significantly up-regulated under NaCl stress and NaCO stress, and genes enriched in starch and sucrose metabolism were up-regulated under NaOH stress and NaCO stress. Furthermore, a synergistic enhancing effect between NaCl and NaOH stress was also observed in this study. Likewise, our studies indicate further that genes related with starch and sucrose metabolism were regulated to respond to the high pH under NaCO stress, inducing plant hormone signal transduction and key enzyme reactive oxygen species (ROS) activity to respond to ionic toxicity and intracellular ionic homeostasis. By analyzing the expression profiles of diverse tissues under different salt and alkaline stresses, this study provides valuable ideas for genetic improvements of cotton tolerance to salt-alkaline stress.

摘要

棉花作为纤维和食用油的重要来源,具有巨大的经济价值。与单独研究相比,科学家们尚未关注盐和碱性耐性之间的关联和分化。我们使用下一代 RNA-Seq 技术分析了棉花在盐和碱性胁迫下的转录变化。总的来说,在根和叶中分别鉴定出了 25929 个和 6564 个差异表达基因(DEGs)。基因功能注释表明,在 NaCl 胁迫和 NaCO 胁迫下,涉及离子稳态的基因显著上调,而在 NaOH 胁迫和 NaCO 胁迫下,富集淀粉和蔗糖代谢的基因上调。此外,本研究还观察到 NaCl 和 NaOH 胁迫之间存在协同增强效应。同样,我们的研究还表明,与淀粉和蔗糖代谢相关的基因受到调节以响应高 pH 值下的 NaCO 胁迫,诱导植物激素信号转导和关键酶活性氧(ROS)以响应离子毒性和细胞内离子稳态。通过分析不同盐和碱性胁迫下不同组织的表达谱,本研究为提高棉花耐盐碱性提供了有价值的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24b7/6131252/41b66bfd7149/41598_2018_31668_Fig1_HTML.jpg

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