Popova Olga V, Golldack Dortje
Department of Physiology and Biochemistry of Plants, Faculty of Biology, University of Bielefeld, 33615 Bielefeld, Germany.
J Plant Physiol. 2007 Oct;164(10):1278-88. doi: 10.1016/j.jplph.2006.08.011. Epub 2006 Dec 12.
Lobularia maritima (Brassicaceae) is a facultative halophyte related to Arabidopsis thaliana and may be a suitable model to identify molecular mechanisms that regulate tolerance to salt stress in plants. Under the same salt stress conditions, the accumulation of sodium was similar in shoots and roots of Lobularia maritima and Arabidopsis thaliana, whereas the sodium to potassium ratio was less in Lobularia maritima. Aquaporins, the NHX-type Na(+)/H(+) antiporter, and the vacuolar ATPase are well established targets of regulation under salt stress that have a central role in the control of water status and cytoplasmic sodium homeostasis. Therefore, salt-dependent expression of transcripts encoding a PIP2;1 aquaporin, the Na(+)/H(+) antiporter NHX, and V-ATPase subunit E (VHA-E) was characterized in Lobularia maritima. Transcription of LmPIP2;1 was repressed in leaves and roots by treatment with 500mM NaCl. In contrast, salt stress stimulated the expression of LmNHX1 and LmVHA-E. Cell-specificity of the transcription of LmNHX1 was analyzed by fluorescence in situ PCR in leaf cross sections of Lobularia maritima. Expression of the gene was localized to the phloem and to mesophyll cells. In plants treated with 500 mM NaCl, transcription of LmNHX1 was stimulated in the mesophyll. The findings indicate divergent transcriptional responses of key mechanisms of salt adaptation in Lobularia maritima and suggest distinct regulation of sodium homeostasis and water flux under salt stress.
海滨香豌豆(十字花科)是一种与拟南芥相关的兼性盐生植物,可能是鉴定调控植物耐盐胁迫分子机制的合适模型。在相同的盐胁迫条件下,海滨香豌豆和拟南芥地上部和根部的钠积累相似,而海滨香豌豆的钠钾比更低。水通道蛋白、NHX型Na⁺/H⁺逆向转运蛋白和液泡ATP酶是盐胁迫下已确定的调控靶点,在控制水分状况和细胞质钠稳态中起核心作用。因此,对海滨香豌豆中编码PIP2;1水通道蛋白、Na⁺/H⁺逆向转运蛋白NHX和V-ATP酶亚基E(VHA-E)的转录本的盐依赖性表达进行了表征。用500mM NaCl处理后,LmPIP2;1在叶和根中的转录受到抑制。相反,盐胁迫刺激了LmNHX1和LmVHA-E的表达。通过荧光原位PCR在海滨香豌豆叶横切片中分析了LmNHX1转录的细胞特异性。该基因的表达定位于韧皮部和叶肉细胞。在用500 mM NaCl处理的植物中,叶肉中LmNHX1的转录受到刺激。这些发现表明海滨香豌豆中盐适应关键机制的转录反应不同,并表明在盐胁迫下钠稳态和水分通量受到不同的调节。