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Occurrence, patterns, and implications of nighttime stomatal conductance and transpiration in C3 and C4-plants.

机译:C3和C4植物夜间气孔导度和蒸腾作用的发生,模式及其影响。

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摘要

C3 and C4 plants are generally expected to close stomata at times when photosynthetic carbon gain does not occur, such as during the night. However, many C3 and C4 plants maintain stomatal opening throughout the night and, depending on nighttime conditions (i.e., VPD), substantial transpirational water loss can occur. In a comparison of three methods spanning leaf to canopy scales of nighttime water loss in field-grown tomato, stomata were open and 6-10% of daytime water loss rates were observed at night. Gas exchange measurements of various Solanaceous species and accessions of Arabidopsis showed that substantial genetic variation in nighttime leaf conductance (gnight) exists among and within species. Furthermore, variation in gnight in Arabidopsis was highly correlated with daytime gas exchange traits, including daytime leaf conductance (gday) and photosynthesis. Although g night was also highly correlated with VPD of the accessions' native environments, whether there is a direct or indirect (via the correlation with gday) basis for the relationship is unknown. The implications of gnight and Enight include various costs (e.g., reduced predawn plant water status) as well as benefits (e.g., enhanced nutrient supply), so that the occurrence and magnitude of gnight and transpiration (Enight) may depend on the relative tradeoff of these implications in a particular environment. Experimentally suppressing nighttime water loss with high relative humidity treatments had no effect on leaf nutrient content (Na, K, Ca, N) or final plant biomass of Arabidopsis. Reduced nitrogen supply resulted in smaller plants and lower gnight, despite maintenance of relatively high leaf N. Thus, there was no evidence of a benefit in terms of enhanced nutrition by transpiring at night in Arabidopsis . Future investigations will need to focus on how plants regulate stomata during the night and provide more direct quantification of the implications of these phenomena to obtain an understanding of the ecological and evolutionary consequences of gnight and Enight for C3 and C4 plants.
机译:通常预期C3和C4植物在不发生光合碳吸收的时间(例如在夜间)关闭气孔。然而,许多C3和C4植物在整个晚上都保持气孔开放,并且取决于夜间条件(即VPD),可能会发生大量蒸腾失水。在田间种植的番茄中,从夜间到夜间的叶到冠层尺度的三种方法的比较中,气孔是开放的,夜间观察到白天失水率的6-10%。各种茄科物种和拟南芥种的气体交换测量结果表明,物种之间和内部存在夜间叶片电导(骑士)的大量遗传变异。此外,拟南芥中骑士的变化与白天的气体交换性状高度相关,包括白天的叶片电导(gday)和光合作用。尽管g night也与种质的原生环境的VPD高度相关,但是这种关系是否存在直接或间接(通过与gday的相关性)基础尚不清楚。骑士和夜间的含义包括各种成本(例如,减少黎明前植物的水分状况)以及收益(例如,增加的养分供应),因此,骑士和蒸腾(夜间)的发生和程度可能取决于植物的相对权衡。在特定环境中的这些含义。通过实验来抑制夜间相对高湿度的水分流失对拟南芥叶片养分含量(Na,K,Ca,N)或最终植物生物量没有影响。尽管维持了较高的叶氮,但氮供应的减少导致了植物的变小和骑士的减少。因此,没有证据表明在拟南芥中通过夜间蒸腾来增强营养是有好处的。未来的研究将需要集中于植物在夜间如何调节气孔,并对这些现象的含义进行更直接的量化,以了解骑士和夜骑士对C3和C4植物的生态和进化后果。

著录项

  • 作者

    Caird, Mairgareth Anne.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Biology Botany.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;植物学;
  • 关键词

  • 入库时间 2022-08-17 11:39:43

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