Bunce James
Adaptive Cropping Systems Laboratory, USDA-ARS, Beltsville, MD 20705-2350, USA.
Plants (Basel). 2021 Nov 27;10(12):2603. doi: 10.3390/plants10122603.
The response of carbon fixation in C plants to elevated CO is relatively larger when photosynthesis is limited by carboxylation capacity (V) than when limited by electron transport (J). Recent experiments under controlled, steady-state conditions have shown that photosynthesis at elevated CO may be limited by V even at limiting PPFD. These experiments were designed to test whether this also occurs in dynamic field environments. Leaf gas exchange was recorded every 5 min using two identical instruments both attached to the same leaf. The CO concentration in one instrument was controlled at 400 μmol mol and one at 600 μmol mol. Leaves were exposed to ambient sunlight outdoors, and cuvette air temperatures tracked ambient outside air temperature. The water content of air in the leaf cuvettes was kept close to that of the ambient air. These measurements were conducted on multiple, mostly clear days for each of three species, , , and . The results indicated that in all species, photosynthesis was limited by V rather than J at both ambient and elevated CO both at high midday PPFDs and also at limiting PPFDs in the early morning and late afternoon. During brief reductions in PPFD due to midday clouds, photosynthesis became limited by J. The net result of the apparent deactivation of Rubisco at low PPFD was that the relative stimulation of diurnal carbon fixation at elevated CO was larger than would be predicted when assuming limitation of photosynthesis by J at low PPFD.
当光合作用受羧化能力(V)限制时,C植物中碳固定对CO浓度升高的响应比对电子传递(J)限制时的响应相对更大。近期在可控稳态条件下开展的实验表明,即使在低光量子通量密度(PPFD)受限的情况下,CO浓度升高时的光合作用也可能受V限制。这些实验旨在测试在动态田间环境中是否也会出现这种情况。使用两台相同仪器,每隔5分钟记录一次附着在同一片叶子上的叶片气体交换情况。一台仪器中的CO浓度控制在400 μmol/mol,另一台控制在600 μmol/mol。叶片在户外暴露于自然阳光下,叶室空气温度跟踪外界环境空气温度。叶室中空气的含水量保持与环境空气的含水量相近。针对三种植物、和,在多个大多为晴天的日子里进行了这些测量。结果表明,在所有植物中,无论是在环境CO浓度还是升高的CO浓度下,在中午高光量子通量密度时以及清晨和傍晚低光量子通量密度时,光合作用均受V而非J限制。在因中午云层导致光量子通量密度短暂下降期间,光合作用受J限制。在低光量子通量密度下,核酮糖-1,5-二磷酸羧化酶(Rubisco)明显失活的最终结果是,与假设在低光量子通量密度下光合作用受J限制时的预测值相比,CO浓度升高时昼夜碳固定的相对刺激作用更大。