State Key Laboratory of Molecular Genetics, Harbin Normal University, 1 Shidanan Road, Harbin, 150025, China.
Beijing Advanced Innovation Center for Food Nutrition and Human Health, Beijing Technology and, Business University (BTBU), Beijing, 100048, China.
Plant Cell Rep. 2020 Aug;39(8):997-1011. doi: 10.1007/s00299-020-02543-x. Epub 2020 Apr 24.
MsCBL4 expression in tobacco enhanced its salt and saline-alkali stress tolerance by regulating calcium accumulation in roots, indicating the important role of calcium metabolism in plant saline-alkali stress tolerance The calcineurin B-like (CBL) family of proteins play important roles in plant abiotic stress tolerance and signal transduction. CBL4 is known to participate in the Salt Overly Sensitive pathway; however, little is currently known regarding the mechanisms underlying the response of CBL4 to saline-alkali stress. In this study, we cloned and characterized the alfalfa MsCBL4 gene. We found that MsCBL4 showed the highest expression in root tissues and was induced by salt and saline-alkali stress, with the latter causing higher induction. Overexpression of MsCBL4 in tobacco enhanced salt and saline-alkali stress tolerance and reduced the Na/K ratio in roots of transgenic lines. Salt (30 and 300 mM NaCl) and saline-alkali (30 mM NaHCO) stress assays performed for MsCBL4 transgenic tobacco lines revealed a substantial influx of sodium ions in roots under saline-alkali stress and indicated that the expression of MsCBL4 had little influence on sodium ion content reduction. In contrast, in roots subjected to saline-alkali stress, calcium accumulation occurred and was significantly enhanced by the overexpression of MsCBL4. Physiological and biochemical analyses indicated that MsCBL4 plays an important role in saline-alkali stress tolerance via its influence on the regulation of calcium transport and accumulation. These results provide novel insights into the saline-alkali stress tolerance mechanisms of plants.
拟南芥 MsCBL4 基因的克隆与功能分析
钙调磷酸酶 B 样蛋白(CBL)家族在植物非生物胁迫应答和信号转导中发挥着重要作用。CBL4 参与盐敏感途径,但其对盐碱性胁迫的响应机制尚不清楚。本研究从紫花苜蓿中克隆到 MsCBL4 基因,发现 MsCBL4 在根组织中表达量最高,受盐和盐碱性胁迫诱导,后者诱导表达量更高。过表达 MsCBL4 提高了烟草的耐盐碱性,并降低了转基因株系根中的 Na/K 比值。盐(30 和 300 mM NaCl)和盐碱性(30 mM NaHCO3)胁迫处理表明,盐碱性胁迫下,MsCBL4 转基因烟草根系中钠离子大量内流,且 MsCBL4 的表达对降低钠离子含量影响较小。相反,在盐碱性胁迫下,钙积累发生,MsCBL4 的过表达显著增强了钙积累。生理生化分析表明,MsCBL4 通过影响钙转运和积累来调节盐碱性胁迫应答。这些结果为植物耐盐碱性机制提供了新的见解。