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首页> 外文期刊>Atmospheric environment >Influence of growth temperature and measuring temperature on isoprene emission, diffusive limitations of photosynthesis and respiration in hybrid poplars
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Influence of growth temperature and measuring temperature on isoprene emission, diffusive limitations of photosynthesis and respiration in hybrid poplars

机译:生长温度和测量温度对杂种杨的异戊二烯排放,光合作用扩散限制和呼吸作用的影响

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摘要

Acdimatory and direct responses of photosynthesis (A), stomatal (g_s) and mesophyll (g_m) conductance, light (Rl) and dark (Rd) respiration, and isoprene emission, measured at different temperatures, were compared in one-year-old Populus × euramericana saplings grown at 25 ℃, 35 ℃, and in the saplings grown initially at 35 ℃ and then exposed for two weeks at 25 ℃. Results show that A, g_s and g_m were significantly lower at 35 ℃, than at the other growth temperatures. This resulted in a downward acclimation of these parameters over the range of measuring temperatures. Both R_L and R_D also showed a considerable downward acclimation. However, the respiration to photosynthesis ratio increased with high temperatures, for R_L and R_D were more responsive to increasing growth temperatures than A at all measuring temperatures. This type of acclimation would lead to a shift in the carbon balance between photosynthesis and respiration under changing climatic conditions. Isoprene emission was greatly affected by temperature treatments and showed a downward acclimation to higher temperatures. Respiration and isoprene emission rates were directly related, independently of growth and measuring temperatures. These findings may be likely relevant to predict the emissions of isoprenoid in globally changing environmental conditions.
机译:在一年岁的胡杨中比较了在不同温度下测量的光合作用(A),气孔(g_s)和叶肉(g_m)电导,亮(Rl)和暗(Rd)呼吸以及异戊二烯排放的刺激性和直接响应×euramericana幼树在25℃,35℃时生长,并在35℃时最初生长,然后在25℃暴露2周。结果表明,在35℃时,A,g_s和g_m明显低于其他生长温度。这导致这些参数在测量温度范围内向下适应。 R_L和R_D都显示出相当大的向下适应。但是,在所有测量温度下,R_L和R_D对生长温度的响应要比A对A的响应更高,因此呼吸与光合作用的比率随高温而增加。在不断变化的气候条件下,这种适应会导致光合作用和呼吸之间的碳平衡发生变化。异戊二烯的排放受温度处理的影响很大,并且显示出对较高温度的适应性下降。呼吸和异戊二烯排放速率直接相关,与生长和测量温度无关。这些发现可能与预测全球环境条件变化中类异戊二烯的排放有关。

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  • 来源
    《Atmospheric environment》 |2011年第1期|p.155-161|共7页
  • 作者单位

    Institute of Agro-Environmental & Forest Biology, National Research Council, CNR-IBAF, via Solaria km 29.300, 00016 Monterotondo Scalo, Roma, Italy;

    Department of Environmental Sciences, Pir Mehr Ali Shah Arid Agriculture University, Murree Road, Rawalpindi, Pakistan;

    Chinese Academy of Forestry, No.1 Dongxiaofu, XiangYi Road, Haidian, Beijing 100091, PR China;

    Istituto per la Protezione delle Piantem, Consiglio Nazionale delle Ricerche, Via Madonna del Piano 10, 50019 Sesto Fiorentino, Firenze, Italy;

    Institute of Agro-Environmental & Forest Biology, National Research Council, CNR-IBAF, via Solaria km 29.300, 00016 Monterotondo Scalo, Roma, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carbon assimilation; isoprene emission; mesophyll conductance; rising temperature; stomatal conductance;

    机译:碳同化异戊二烯排放叶肉电导温度上升;气孔导度;

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