首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on the Biology of Transpiration: Environment or Development? Lifetime Net CO2 Exchange and Control of the Expression of Crassulacean Acid Metabolism in Mesembryanthemum crystallinum
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Focus Issue on the Biology of Transpiration: Environment or Development? Lifetime Net CO2 Exchange and Control of the Expression of Crassulacean Acid Metabolism in Mesembryanthemum crystallinum

机译:关注蒸腾生物学:环境还是发展?终生净CO 2交换和结晶膜中十字绣果酸代谢表达的控制

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摘要

The relative influence of plant age and environmental stress signals in triggering a shift from C3 photosynthesis to Crassulacean acid metabolism (CAM) in the annual halophytic C3-CAM species Mesembryanthemum crystallinum was explored by continuously monitoring net CO2 exchange of whole shoots from the seedling stage until seed set. Plants exposed to high salinity (400 mm NaCl) in hydroponic culture solution or grown in saline-droughted soil acquired between 11% and 24% of their carbon via net dark CO2 uptake involving CAM. In contrast, plants grown under nonsaline, well-watered conditions were capable of completing their life cycle by operating in the C3 mode without ever exhibiting net CO2 uptake at night. These observations are not consistent with the widely expressed view that the induction of CAM by high salinity in M. crystallinum represents an acceleration of preprogrammed developmental processes. Rather, our study demonstrates that the induction of the CAM pathway for carbon acquisition in M. crystallinum is under environmental control.
机译:通过持续监测从苗期到苗期的整个芽的净CO 2交换,探索了植物年龄和环境胁迫信号在触发一年生盐生C3-CAM物种Memmbryanthemum crystallinum中从C3光合作用向Crassulacean酸代谢(CAM)转变的相对影响。种子集。在水培培养液中暴露于高盐度(400毫米氯化钠)或在盐渍干旱的土壤中生长的植物,通过含CAM的净暗二氧化碳吸收量获得了11%至24%的碳。相比之下,在非盐,充足水的条件下生长的植物能够通过以C3模式运行而完成其生命周期,而从未在夜间表现出净CO2吸收。这些观察结果与广泛表达的观点不一致,即在结晶分支杆菌中高盐度诱导CAM代表了预先编程的发育过程的加速。相反,我们的研究表明,在结晶支原体中获取碳的CAM途径的诱导受环境控制。

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