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Limits to growth of Salicornia bigelovii Torr. at suboptimal salinity.

机译:限制了Salicornia bigelovii Torr的生长。盐度欠佳。

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摘要

In spite of the fact that it is one of the most widely researched subjects in plant biology, the physiology of salt tolerance is still not well understood. This research was undertaken to investigate salt tolerance in the extreme halophyte, Salicornia bigelovii Torr. Halophytes, plants that are naturally salt tolerant, are well suited to research on salt tolerance because millions of years of evolution have fine tuned their adaptation to high salinity to the extent that their growth is inhibited when they are grown in reduced salinity. S. bigelovii was grown in different concentrations of NaCl and growth responses were compared. My emphasis was on salinity effects on cell wall extensibility, wall yielding threshold (minimum turgor required for growth), and water relations.; When S. bigelovii was grown in low salinity, relative growth rate was slower, fresh and dry weight, relative water content and succulence were reduced, and both epidermal and cortex parenchyma cells were smaller. The plants also accumulated less Na+ and more K+, Ca2+ and Mg2+. These results prompted two specific questions. Was the excess Ca2+ accumulated by the plants grown in low salinity bound to cell walls and did it cause reduced cell wall extensibility and increased yield threshold? Was growth inhibition a consequence of low turgor due disturbances in water relations?; Even though there was three times more Ca2+ in the walls of the plants grown in I salinity, cell wall extensibility was not significantly different between salinity treatments. However, the wall yielding threshold of the plants grown in low salinity was significantly lower. Turgor was also significantly lower in these plants. But, since the minimum turgor required for growth was even lower, reduced turgor was not responsible for growth inhibition.; Based upon the results of this research, I have concluded that growth inhibition in S. bigelovii in reduced salinity was not due to disturbances in water relations nor was it the result of detrimental changes in cell wall properties. It is becoming increasingly clear that specific ion effects play an important role in limiting the growth of S. bigelovii in low salinity. This research has led to the identification of several new directions for future investigation into the salt tolerance mechanisms of this unique plant.
机译:尽管它是植物生物学中研究最广泛的主题之一,但对盐耐受性的生理学仍知之甚少。这项研究的目的是研究极端盐生植物(斜纹Salcornia bigelovii Torr)的耐盐性。盐生植物是天然耐盐的植物,非常适合研究耐盐性,因为数百万年的进化已经微调了它们对高盐度的适应性,以至于当盐度降低时它们的生长受到抑制。 <斜体> S。双歧杆菌在不同浓度的NaCl中生长,并比较了其生长反应。我的重点是盐度对细胞壁可扩展性,壁屈服阈值(生长所需的最小膨胀)和水关系的影响。当 S时。 bigelovii 在低盐度下生长,相对生长速度较慢,鲜重和干重,相对含水量和肉质减少,表皮和皮质实质细胞均较小。这些植物还积累了较少的Na + 和更多的K + ,Ca 2 + 和Mg 2 + 。这些结果提示了两个具体问题。低盐度下生长的植物积累的过量Ca 2 + 是否与细胞壁结合,是否导致细胞壁延伸性降低和产量阈值提高?生长抑制是水关系受到干扰而导致的低膨胀性的结果吗?即使在盐度下生长的植物壁中,Ca 2 + 的含量增加了三倍,但在盐度处理之间,细胞壁的延伸率并没有显着差异。然而,在低盐度下生长的植物的壁产量阈值明显更低。这些植物中的Turgor也显着降低。但是,由于生长所需的最低膨大度甚至更低,降低膨大度不能抑制生长。根据这项研究的结果,我得出的结论是 S中的生长受到抑制。 bigelovii 盐度降低的原因既不是水关系的干扰,也不是细胞壁特性发生不利变化的结果。越来越明显的是,特定的离子效应在限制 S的生长中起着重要的作用。盐度低的bigelovii 。这项研究已经为未来研究这种独特植物的耐盐机理确定了几个新方向。

著录项

  • 作者

    Pfister, Rachel Walker.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

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