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首页> 外文期刊>Plant physiology >EARLY SALT STRESS EFFECTS ON THE DIFFERENTIAL EXPRESSION OF VACUOLAR H+-ATPASE GENES IN ROOTS AND LEAVES OF MESEMBRYANTHEMUM CRYSTALLINUM
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EARLY SALT STRESS EFFECTS ON THE DIFFERENTIAL EXPRESSION OF VACUOLAR H+-ATPASE GENES IN ROOTS AND LEAVES OF MESEMBRYANTHEMUM CRYSTALLINUM

机译:盐胁迫对大叶菊花根和叶中空泡H + -ATPase基因表达的影响

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In Mesembryanthemum crystallinum, the salt stress-induced metabolic switch from C-3 photosynthesis to Crassulacean acid metabolism is accompanied by major changes in gene expression. However, early effects of salt exposure (i.e. prior to Crassulacean acid metabolism induction) on genes coding for vacuolar transport functions have not yet been studied. Therefore, the expression of vacuolar Hf-ATPase genes was analyzed in different organs of 4-week-old plants stressed with 400 mM NaCl for 3, 8, or 24 h. Partial cDNAs for the subunits A, B, and c were cloned and used as homologous probes for northern blot analysis. In control plants, the mRNA levels for the different subunits showed organ-specific differences. In fully expanded leaves, subunit c mRNA was very low but increased transiently during the light period. Plant organs also differed in their salt-stress response. In roots and young leaves, mRNA levels for all three subunits increased about 2-fold compared to control plants, whereas in fully expanded leaves only subunit c mRNA responded to salt. The results indicate that the expression of vacuolar H+-ATPase genes does not always involve a fixed stoichiometry of mRNAs for the different subunits and that the mRNA level for subunit c is particularly sensitive to developmental and environmental changes. [References: 26]
机译:在结晶膜中,盐胁迫诱导的代谢从C-3光合作用转变为Crassulacean酸代谢伴随着基因表达的重大变化。然而,尚未研究盐暴露(即在Crassulacean酸代谢诱导之前)对编码液泡运输功能的基因的早期影响。因此,分析了在受400 mM NaCl胁迫3、8或24 h的4周龄植物的不同器官中液泡Hf-ATPase基因的表达。克隆了亚基A,B和c的部分cDNA,并用作用于Northern blot分析的同源探针。在对照植物中,不同亚基的mRNA水平显示出器官特异性差异。在完全展开的叶片中,亚单位c mRNA非常低,但在光照期短暂增加。植物器官的盐胁迫反应也不同。与对照植物相比,在根部和幼叶中,所有三个亚基的mRNA水平均增加了约2倍,而在完全扩展的叶片中,仅亚基c mRNA响应盐。结果表明液泡H + -ATPase基因的表达并不总是涉及不同亚基的mRNA的固定化学计量,并且亚基c的mRNA水平对发育和环境变化特别敏感。 [参考:26]

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