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The plasma membrane proton ATPase is an important determinant of salt tolerance in plants.

机译:质膜质子ATP酶是植物耐盐性的重要决定因素。

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摘要

Maintaining ion homeostasis is critical for adaptation in a NaCl stress environment. Induced activities of secondary active ion transporters for extracellular evacuation and vacuolar compartmentation of Na{dollar}sp{lcub}+{rcub}{dollar} are crucial for lowering cytosolic Na{dollar}sp{lcub}+{rcub}{dollar} levels. The plasma membrane (PM) proton (H{dollar}sp{lcub}+{rcub}{dollar})-ATPase generates the H{dollar}sp{lcub}+{rcub}{dollar} electrochemical potential required by proton-coupled secondary active transporters. Thus, modulation of this pump can exert tight control over Na{dollar}sp{lcub}+{rcub}{dollar} homeostasis regulation in cells. The transcript level of PM H{dollar}sp{lcub}+{rcub}{dollar}-ATPase is up-regulated in response to NaCl in suspension cultures of glycophyte tobacco and halophyte Atriplex nummularia. Message accumulation was induced by NaCl in roots of both plants and in expanded leaves of A. nummularia. The gene expression was more responsive to NaCl in the halophyte than in the glycophyte. The high level root-specific induction of message is localized predominantly in the elongation zone. In response to NaCl, the mRNA accumulates more in the protoderm (pre-epidermis) of root apical meristem where vascular tissues are not fully differentiated. Serving as one important barrier of roots for ion uptake, the epidermal cells may function actively in regulation of Na{dollar}sp{lcub}+{rcub}{dollar} uptake, as demonstrated by the increased PM H{dollar}sp{lcub}+{rcub}{dollar}-ATPase message. When roots have developed vascular tissues, the induction of the mRNA accumulation is localized predominantly in the endodermis. The endodermis has the important role of restricting apoplastic ion movements in mature roots, and this restriction may be accomplished by secondary active transporters supported by the PM H{dollar}sp{lcub}+{rcub}{dollar}-ATPase. In expanded A. nummularia leaves, NaCl induction of the mRNA level is localized primarily in the bundle sheath cells, where regulation of Na{dollar}sp{lcub}+{rcub}{dollar} flux must occur as the xylem unloads Na{dollar}sp{lcub}+{rcub}{dollar}. The fact that induction of the mRNA accumulation correlates with the enhanced pump activity (Braun et al., 1986) indicates an important role of its gene regulation in plant adaptation to salt stress. The PM H{dollar}sp{lcub}+{rcub}{dollar}-ATPase is actively involved in cells where regulation of Na{dollar}sp{lcub}+{rcub}{dollar} homeostais occurs, and the capacity to regulate this gene in response to NaCl may be a determinant of salt tolerance.
机译:维持离子稳态对于在NaCl胁迫环境下适应环境至关重要。次级活性离子转运蛋白的诱导活性对于Na {dollar} sp {lcub} + {rcub} {dollar}的细胞外排空和液泡分隔对于降低胞质Na {dollar} sp {lcub} + {rcub} {dollar}的水平至关重要。质膜(PM)质子(H {dollar} sp {lcub} + {rcub} {dollar})-ATPase产生质子耦合所需的H {dollar} sp {lcub} + {rcub} {dollar}电化学势次要主动转运蛋白。因此,对该泵的调节可以对细胞中的Nasp(稳态)调节施加严格控制。 PM H {dollar} sp {lcub} + {rcub} {dollar} -ATPase的转录水平响应于NaCl在糖水生烟草和盐生植物滨藜植物悬浮培养物中的表达而上调。 NaCl在两种植物的根以及农杆菌的膨胀叶片中诱导消息积累。基因表达在盐生植物中比在糖生植物中对NaCl更敏感。消息的高水平根特异诱导主要定位在延伸区中。响应NaCl,mRNA在未完全分化血管组织的根尖分生组织的表皮(表皮前)中积累更多。作为离子吸收的重要根源之一,表皮细胞可能在调节Na {dol} sp {lcub} + {rcub} {dollar}吸收中发挥积极作用,这由PM H {dollar} sp {lcub的增加所证明} + {rcub} {dollar} -ATPase消息。当根部发育成血管组织时,mRNA积累的诱导主要位于内胚层。内胚层具有限制成熟根中质外体离子运动的重要作用,并且这种限制可以通过PM H {dol} sp {lcub} + {rcub} {dol} -ATPase支持的次级活性转运蛋白来完成。在膨胀的农杆菌叶中,NaCl诱导的mRNA水平主要集中在束鞘细胞中,在该束鞘细胞中,随着木质部卸载Na {dollar},必须发生Na {dol} sp {lcub} + {rcub} {dollar}通量的调节。 } sp {lcub} + {rcub} {dollar}。 mRNA积累的诱导与泵送活性的增强相关的事实(Braun等,1986)表明其基因调节在植物对盐胁迫的适应中的重要作用。 PM H {dollar} sp {lcub} + {rcub} {dollar} -ATPase活跃地参与调节Na {dollar} sp {lcub} + {rcub} {dollar} homeostais的细胞,并具有调节能力响应NaCl的该基因可能是耐盐性的决定因素。

著录项

  • 作者

    Niu, Xiaomu.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Biology Plant Physiology.; Biology Molecular.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;分子遗传学;
  • 关键词

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