复合材料通过调控转录组缓解棉花叶片的盐碱性胁迫

Application of compound material alleviates saline and alkaline stress in cotton leaves through regulation of the transcriptome.

机构信息

Agricultural College, Shihezi University, Shihezi, Xinjiang, 832000, People's Republic of China.

出版信息

BMC Plant Biol. 2020 Oct 8;20(1):462. doi: 10.1186/s12870-020-02649-0.

Abstract

BACKGROUND

Soil salinization and alkalinization are the main factors that affect the agricultural productivity. Evaluating the persistence of the compound material applied in field soils is an important part of the regulation of the responses of cotton to saline and alkaline stresses.

RESULT

To determine the molecular effects of compound material on the cotton's responses to saline stress and alkaline stress, cotton was planted in the salinized soil (NaCl 8 g kg) and alkalized soil (NaCO 8 g kg) after application of the compound material, and ion content, physiological characteristics, and transcription of new cotton leaves at flowering and boll-forming stage were analyzed. The results showed that compared with saline stress, alkaline stress increased the contents of Na, K, SOD, and MDA in leaves. The application of the compound material reduced the content of Na but increased the K/Na ratio, the activities of SOD, POD, and CAT, and REC. Transcriptome analysis revealed that after the application of the compound material, the Na/H exchanger gene in cotton leaves was down-regulated, while the K transporter, K channel, and POD genes were up-regulated. Besides, the down-regulation of genes related to lignin synthesis in phenylalanine biosynthesis pathway had a close relationship with the ion content and physiological characteristics in leaves. The quantitative analysis with PCR proved the reliability of the results of RNA sequencing.

CONCLUSION

These findings suggest that the compound material alleviated saline stress and alkaline stress on cotton leaves by regulating candidate genes in key biological pathways, which improves our understanding of the molecular mechanism of the compound material regulating the responses of cotton to saline stress and alkaline stress.

摘要

背景

土壤盐渍化和碱化是影响农业生产力的主要因素。评估田间土壤中施用的复合物料的持久性是调节棉花对盐胁迫和碱胁迫响应的重要组成部分。

结果

为了确定复合物料对棉花应对盐胁迫和碱胁迫的分子影响,在施用复合物料后,将棉花种植在盐化土壤(NaCl 8g/kg)和碱化土壤(NaCO 8g/kg)中,分析了新棉花叶片在开花和结铃期的离子含量、生理特性和转录。结果表明,与盐胁迫相比,碱胁迫增加了叶片中 Na、K、SOD 和 MDA 的含量。施用复合物料降低了 Na 的含量,但增加了 K/Na 比、SOD、POD 和 CAT 的活性和 REC。转录组分析表明,施用复合物料后,棉花叶片中的 Na/H 交换基因下调,而 K 转运体、K 通道和 POD 基因上调。此外,苯丙氨酸生物合成途径中与木质素合成相关的基因下调与叶片中的离子含量和生理特性密切相关。PCR 的定量分析证明了 RNA 测序结果的可靠性。

结论

这些发现表明,复合物料通过调节关键生物途径中的候选基因来缓解棉花叶片的盐胁迫和碱胁迫,从而提高我们对复合物料调节棉花对盐胁迫和碱胁迫响应的分子机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6176/7542905/018ebee84ac7/12870_2020_2649_Fig1_HTML.jpg

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