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盐胁迫下,根尖质外体酸化影响小麦细胞壁的伸展性。

Apical-root apoplastic acidification affects cell wall extensibility in wheat under salinity stress.

机构信息

Arid Land Research Center, Tottori University, Tottori City, Japan.

Key Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang, Hebei, China.

出版信息

Physiol Plant. 2021 Dec;173(4):1850-1861. doi: 10.1111/ppl.13527. Epub 2021 Sep 7.

Abstract

Plant salt tolerance is associated with a high rate of root growth. Although root growth is governed by cell wall and apoplastic pH, the relationship between these factors in the root elongation zone under salinity stress remains unclear. Herein, we assess apoplastic pH, pH- and expansin-dependent cell wall extensibility, and expansin expression in the root elongation zone of salt-sensitive (Yongliang-15) and -tolerant (JS-7) cultivars under salinity stress. A six-day 80 mM NaCl treatment significantly reduced apical root apoplastic pH in both cultivars. Using a pH-dependent cell wall extensibility experiment, we found that, under 0 mM NaCl treatment, the optimal pH for cell wall loosening was 6.0 in the salinity-tolerant cultivar and 4.6 in the salinity-sensitive cultivar. Under 80 mM treatment, a pH of 5.0 mitigated the cell wall stiffness caused by salinity stress in the salinity-tolerant cultivar but promoted cell wall stiffening in the salinity-sensitive cultivar. Salinity stress altered expansin expression and differentially affecting cell wall extensibility under pH 5.0 and 6.0. TaEXPA8 might be relative to cell wall loosening at pH 5.0, whereas TaEXPA5 relative to cell wall loosening at pH 6.0. These results elucidate the relationship between expansins and cell wall extensibility in the root elongation zone, with important implications for enhancing plant growth under salinity stress.

摘要

植物的耐盐性与根系生长速度呈正相关。尽管根系生长受细胞壁和质外体 pH 控制,但在盐胁迫下,这些因素在根伸长区之间的关系尚不清楚。在此,我们评估了盐敏感型(永良 15)和耐盐型(JS-7)品种在盐胁迫下根伸长区的质外体 pH、pH 和扩展蛋白依赖的细胞壁延展性以及扩展蛋白表达。80mM NaCl 处理 6 天显著降低了两个品种的根尖根质外体 pH。通过 pH 依赖性细胞壁延展性实验,我们发现,在 0mM NaCl 处理下,耐盐品种细胞壁松弛的最佳 pH 值为 6.0,而盐敏感品种为 4.6。在 80mM 处理下,pH 值为 5.0 缓解了耐盐品种盐胁迫引起的细胞壁僵硬,但促进了盐敏感品种细胞壁的僵硬。盐胁迫改变了扩展蛋白的表达,在 pH 5.0 和 6.0 下对细胞壁延展性产生不同的影响。TaEXPA8 可能与 pH 5.0 时的细胞壁松弛有关,而 TaEXPA5 则与 pH 6.0 时的细胞壁松弛有关。这些结果阐明了根伸长区扩展蛋白与细胞壁延展性之间的关系,对提高植物在盐胁迫下的生长具有重要意义。

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