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首页> 外文期刊>Oecologia >Effects of low atmospheric CO2 and elevated temperature during growth on the gas exchange responses of C-3, C-3-C-4 intermediate, and C-4 species from three evolutionary lineages of C-4 photosynthesis
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Effects of low atmospheric CO2 and elevated temperature during growth on the gas exchange responses of C-3, C-3-C-4 intermediate, and C-4 species from three evolutionary lineages of C-4 photosynthesis

机译:生长过程中低大气二氧化碳和高温对来自C-4光合作用的三个进化世系的C-3,C-3-C-4中间体和C-4物种气体交换响应的影响

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摘要

This study evaluates acclimation of photosynthesis and stomatal conductance in three evolutionary lineages of C-3, C-3-C-4 intermediate, and C-4 species grown in the low CO2 and hot conditions proposed to favo r the evolution of C-4 photosynthesis. Closely related C-3, C-3-C-4, and C-4 species in the genera , , and were grown near 380 and 180 mu mol CO2 mol(-1) air and dayight temperatures of 37/29A degrees C. Growth CO2 had no effect on photosynthetic capacity or nitrogen allocation to Rubisco and electron transport in any of the species. There was also no effect of growth CO2 on photosynthetic and stomatal responses to intercellular CO2 concentration. These results demonstrate little ability to acclimate to low CO2 growth conditions in closely related C-3 and C-3-C-4 species, indicating that, during past episodes of low CO2, individual C-3 plants had little ability to adjust their photosynthetic physiology to compensate for carbon starvation. This deficiency could have favored selection for more efficient modes of carbon assimilation, such as C-3-C-4 intermediacy. The C-3-C-4 species had approximately 50% greater rates of net CO2 assimilation than the C-3 species when measured at the growth conditions of 180 mu mol mol(-1) and 37A degrees C, demonstrating the superiority of the C-3-C-4 pathway in low atmospheric CO2 and hot climates of recent geological time.
机译:这项研究评估了在低CO2和高温条件下生长的C-3,C-3-C-4中间体和C-4物种的三个进化谱系中的光合作用和气孔导度的适应性,旨在促进C-4的进化光合作用。与C-3,C-3-C-4和C-4物种密切相关,并且在接近380和180μmol CO2 mol(-1)的空气中生长,白天/夜晚的温度为37 / 29A度C.生长CO2对任何物种的光合作用能力或氮对Rubisco的分配和电子传输均没有影响。生长的CO2对光合作用和气孔对细胞间CO2浓度的反应也没有影响。这些结果表明,在紧密相关的C-3和C-3-C-4物种中,几乎没有能力适应低CO2的生长条件,这表明在过去的低CO2事件中,单个C-3植物几乎没有能力调节其光合作用生理以弥补碳饥饿。这种缺陷可能有利于选择更有效的碳同化模式,例如C-3-C-4中介。在180μmol mol(-1)和37A摄氏度的生长条件下进行测量时,C-3-C-4物种的净CO2同化率比C-3物种高约50%,这证明了C-3-C-4物种的优越性。 C-3-C-4途径在低二氧化碳和近期地质时期的高温气候中的作用。

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