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Environmental factors influencing growth, freezing tolerance and photosynthesis in Thellungiella and Arabidopsis.

机译:影响Thellungiella和拟南芥生长,抗冻性和光合作用的环境因素。

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摘要

Thellungiella salsuginea is an Arabidopsis related, promising model plant for stress tolerance studies. This study aimed to characterize environmental responses of Yukon and Shandong ecotypes of T. salsuginea in comparison with Arabidopsis thaliana -- Columbia ecotype. The study comprised an analysis of plant growth, freezing tolerance, photosynthesis and respiration under various growth regimes. The experimental tools and techniques included visual observation, physical measurements, electrical conductivity, spectrophotometry, chlorophyll a fluorometry, P700 spectroscopy and oxygen-electrode polarography. The taxa showed several commonality and divergence in physiological responses. From the similarity of constitutive freezing tolerance (lethal temperature for 50% plants, LT50 = -7.5 ºC) between the taxa, cold acclimation induced highest level of cold tolerance in Yukon (LT 50 =-21ºC) followed by Shandong (LT50 = -17ºC) and Arabidopsis (LT50 = -14ºC). A drought for four days followed by cold acclimation for one week furthered LT 50 to -25ºC in Yukon and Shandong, but not in the Arabidopsis. Yukon and Shandong required either vernalization or ecotype-specific irradiances for the reproductive transition, while Arabidopsis underwent flowering across varied growth regimes. The Thellungiella ecotypes also contrasted from Arabidopsis in photosynthetic properties with their higher chlorophyll and carotenoid contents, higher constitutive resistance to photoinhibition and higher amount of oxidizable photosystem I reaction-center chlorophyll (P700 +) than that of Arabidopsis. Yukon distinguished itself from other taxa with its higher growth sensitivity to daily photon irradiance, greater acclimative gain in freezing tolerance, higher rates of dark respiration and lower net assimilation, while Shandong exhibited higher electron transport through photosystem II, greater fraction of excitation energy partitioning towards photosystem II photochemistry and contrasting trend of P700+ due to cold acclimation. In Shandong, the P700+ seemed to decrease due to cold acclimation at higher irradiances, while it appeared to increase in Yukon and Arabidopsis. The findings revealed that Yukon and Shandong possessed wider phenotypic plasticity than that of Arabidopsis. Contrasting manifestation of environmental responses including the inducible freezing tolerance, reproductive transitioning and carbon economy promise Thellungiella to be the subject of great scientific curiosity to unravel the extremophilic adaptation of plants. On the other hand, the physiological versatility of Arabidopsis in the moderate environment substantiated its preferential use as a model system representing mesophytic adaptation.
机译:Salsuginea Salllugiella是拟南芥相关的有前途的植物模型,可用于胁迫耐受性研究。这项研究旨在表征与拟南芥-哥伦比亚生态型相比,育空和山东生态型萨尔茨冈草对环境的响应。该研究包括在各种生长方式下对植物生长,耐冻性,光合作用和呼吸作用的分析。实验工具和技术包括目测,物理测量,电导率,分光光度法,叶绿素a荧光法,P700光谱法和氧电极极谱法。该分类单元在生理反应中表现出几种共性和差异。从类群之间的本构耐寒性(50%植物​​的致死温度,LT50 = -7.5ºC)的相似性出发,冷适应导致育空地区的最高耐寒性水平(LT 50 =-21ºC),其次是山东(LT50 =-17ºC) )和拟南芥(LT50 =-14ºC)。在育空地区和山东,干旱持续了四天,随后冷适应了一周,使LT 50升高到-25ºC,但在拟南芥中却没有。育空地区和山东地区需要生殖器进行春化或特定于生态型的辐照,而拟南芥则在不同的生长方式下进行开花。与拟南芥相比,Thellungiella生态型的光合作用特性也更高,其叶绿素和类胡萝卜素含量更高,对光抑制的本构抗性更高,并且可氧化的光系统I反应中心叶绿素(P700 +)的数量高于拟南芥。育空地区有别于其他类群,其对日光子辐照度的增长敏感性更高,抗冻性的适应性增益更高,暗呼吸的速率更高,净同化率更低,而山东通过光系统II表现出更高的电子传输,激发能向光系统II光化学和冷适应引起的P700 +的对比趋势。在山东,P700 +似乎由于在较高辐照下的冷适应而降低,而在育空地区和拟南芥中似乎有所增加。研究结果表明育空地区和山东地区具有比拟南芥更广泛的表型可塑性。环境反应的不同表现形式包括可诱导的耐寒性,生殖转变和碳经济,这使塞伦吉氏菌成为解开植物极端微生物适应性的极大科学好奇心的对象。另一方面,拟南芥在适度环境中的生理多样性证实了其作为代表中生适应性的模型系统的优先使用。

著录项

  • 作者

    Khanal, Nityananda.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Agriculture Plant Culture.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 252 p.
  • 总页数 252
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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