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利用光合作用对氧气的响应来估算水分胁迫大豆叶片中二氧化碳的叶肉导度。

Use of the response of photosynthesis to oxygen to estimate mesophyll conductance to carbon dioxide in water-stressed soybean leaves.

作者信息

Bunce James A

机构信息

Crop Systems and Global Change Laboratory, USDA-ARS, Beltsville Agricultural Research Center, Beltsville, MD 20705-2350, USA.

出版信息

Plant Cell Environ. 2009 Jul;32(7):875-81. doi: 10.1111/j.1365-3040.2009.01966.x. Epub 2009 Feb 19.

Abstract

Methods of estimating the mesophyll conductance (g(m)) to the movement of CO(2) from the substomatal airspace to the site of fixation are expensive or rely upon numerous assumptions. It is proposed that, for C(3) species, measurement of the response of photosynthesis to [O(2)] at limiting [CO(2)], combined with a standard biochemical model of photosynthesis, can provide an estimate of g(m). This method was used to determine whether g(m) changed with [CO(2)] and with water stress in soybean leaves. The value of g(m) estimated using the O(2) response method agreed with values obtained using other methods. The g(m) was unchanged over the tested range of substomatal [CO(2)]. Water stress, which decreased stomatal conductance (g(s)) by about 80%, did not affect g(m), while the model parameter V(Cmax) was reduced by about 25%. Leaves with g(s) reduced by about 90% had g(m) values reduced by about 50%, while V(Cmax) was reduced by about 64%. It is concluded that g(m) in C(3) species can be conveniently estimated using the response of photosynthesis to [O(2)] at limiting [CO(2)], and that g(m) in soybean was much less sensitive to water stress than g(s), and was somewhat less sensitive to water stress than V(Cmax).

摘要

估算叶肉对二氧化碳从气孔下腔转移至固定位点的传导率(g(m))的方法要么成本高昂,要么依赖众多假设。有人提出,对于C(3)植物,在低[CO(2)]浓度下测量光合作用对[O(2)]的响应,并结合光合作用的标准生化模型,可估算g(m)。该方法用于确定大豆叶片中的g(m)是否随[CO(2)]和水分胁迫而变化。用O(2)响应法估算的g(m)值与用其他方法得到的值相符。在测试的气孔下[CO(2)]范围内,g(m)保持不变。水分胁迫使气孔导度(g(s))降低约80%,但不影响g(m),而模型参数V(Cmax)降低约25%。g(s)降低约90%的叶片,其g(m)值降低约50%,而V(Cmax)降低约64%。得出的结论是,对于C(3)植物,利用低[CO(2)]浓度下光合作用对[O(2)]的响应可方便地估算g(m),并且大豆中的g(m)对水分胁迫的敏感性远低于g(s),对水分胁迫的敏感性略低于V(Cmax)。

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