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1
Relationships between Stomatal Behavior and Internal Carbon Dioxide Concentration in Crassulacean Acid Metabolism Plants.景天酸代谢植物气孔行为与内部二氧化碳浓度的关系。
Plant Physiol. 1979 Jun;63(6):1029-32. doi: 10.1104/pp.63.6.1029.
2
Sulfur dioxide effects on plants exhibiting Crassulacean Acid Metabolism.二氧化硫对表现出景天酸代谢的植物的影响。
Environ Pollut. 1987;43(1):47-62. doi: 10.1016/0269-7491(87)90167-9.
3
Seasonal Patterns of Acid Metabolism and Gas Exchange in Opuntia basilaris.短柱仙人掌的酸代谢和气体交换的季节性模式。
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4
Drought Adaptation in Opuntia basilaris: Significance of Recycling Carbon through Crassulacean Acid Metabolism.龙舌兰basilaris 的干旱适应:通过景天酸代谢回收碳的意义。
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Irrigation magnifies CAM-photosynthesis in Opuntia basilaris (Cactaceae).灌溉可增强基氏仙人掌(仙人掌科)中的景天酸代谢光合作用。
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Ecophysiological Significance of CO(2)-Recycling via Crassulacean Acid Metabolism in Talinum calycinum Engelm. (Portulacaceae).通过景天酸代谢进行二氧化碳再循环的生理生态意义在 Talinum calycinum Engelm.(马齿苋科)中。
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Stomatal responses to carbon dioxide of isolated epidermis from a C3 plant, the Argenteum mutant of Pisum sativum L., and a crassulacean-acid-metabolism plant Kalanchoë daigremontiana Hamet et Perr.C3 植物豌豆 Argenteum 突变体和景天酸代谢植物大戟科的离体表皮对二氧化碳的气孔反应
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Modelling nonlinear dynamics of Crassulacean acid metabolism productivity and water use for global predictions.为全球预测建立景天酸代谢生产力和水分利用的非线性动态模型。
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Synthetic crassulacean acid metabolism (SynCAM) for improving water-use efficiency in plants.用于提高植物水分利用效率的合成景天酸代谢(SynCAM)
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Altered Gene Regulatory Networks Are Associated With the Transition From C to Crassulacean Acid Metabolism in (Oncidiinae: Orchidaceae).基因调控网络的改变与(文心兰亚族:兰科)从景天酸代谢途径C到景天酸代谢的转变相关。
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本文引用的文献

1
Changes in Metabolite Levels in Kalanchoë daigremontiana and the Regulation of Malic Acid Accumulation in Crassulacean Acid Metabolism.大戟阁锦代谢物水平的变化及其在景天酸代谢中苹果酸积累的调控。
Plant Physiol. 1977 Mar;59(3):455-8. doi: 10.1104/pp.59.3.455.
2
Seasonal Patterns of Acid Metabolism and Gas Exchange in Opuntia basilaris.短柱仙人掌的酸代谢和气体交换的季节性模式。
Plant Physiol. 1974 Jul;54(1):76-81. doi: 10.1104/pp.54.1.76.
3
Effects of carbon dioxide on the oxidation of succinate and reduced diphosphopyridine nucleotide by Ricinus mitochondria.二氧化碳对蓖麻线粒体中琥珀酸和还原型二磷酸吡啶核苷酸氧化作用的影响。
Biochem J. 1960 Aug;76(2):221-5. doi: 10.1042/bj0760221.
4
Zymasis and acid metabolism in higher plants.高等植物中的发酵作用与酸代谢
Nature. 1953 Aug 8;172(4371):252-3. doi: 10.1038/172252a0.

景天酸代谢植物气孔行为与内部二氧化碳浓度的关系。

Relationships between Stomatal Behavior and Internal Carbon Dioxide Concentration in Crassulacean Acid Metabolism Plants.

机构信息

Department of Botany, University of Leicester, LE1 7RH, United Kingdom.

出版信息

Plant Physiol. 1979 Jun;63(6):1029-32. doi: 10.1104/pp.63.6.1029.

DOI:10.1104/pp.63.6.1029
PMID:16660851
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC542964/
Abstract

Measurements of internal gas phase CO(2) concentration, stomatal resistance, and acid content were made in Crassulacean acid metabolism plants growing under natural conditions. High CO(2) concentrations, sometimes in excess of 2%, were observed during the day in a range of taxonomically widely separated plants (Opuntia ficus-indica L., Opuntia basilaris Engelm. and Bigel., Agave desertii Engelm., Yucca schidigera Roezl. ex Ortiges, Ananas comosus [L.] Merr., Aloe vera L., Cattleya sp. and Phalanopsis sp.) and below ambient air concentrations were observed at night.Stomatal resistance was always high when CO(2) concentration was high and experiments in which attempts were made to manipulate internal CO(2) concentrations gave data consistent with stomatal behavior in Crassulacean acid metabolism being controlled by internal CO(2) concentration. Exogenous CO(2) applied in darkness at a concentration similar to those observed in the light caused stomatal resistance to increase.In pads of Opuntia basilaris Engelm. and Bigel. subjected to severe water stress internal gas phase CO(2) concentrations exhibited fluctuations opposite in phase to fluctuations in acid content. Stomatal resistance remained high and the opening response to low CO(2) concentration was almost entirely eliminated.

摘要

在自然条件下生长的景天酸代谢植物中,测量了内部气相 CO(2)浓度、气孔阻力和酸含量。在一系列分类学上广泛分离的植物(仙人掌、仙人柱、龙舌兰沙漠、丝兰、菠萝、芦荟、卡特兰和蝴蝶兰)中,白天观察到高浓度的 CO(2),有时超过 2%,而夜间观察到的 CO(2)浓度低于环境空气浓度。当 CO(2)浓度高时,气孔阻力总是很高,并且进行了尝试操纵内部 CO(2)浓度的实验,这些实验提供的数据与景天酸代谢中气孔行为受内部 CO(2)浓度控制的结果一致。在黑暗中施加类似于在光下观察到的浓度的外源 CO(2)会导致气孔阻力增加。在经历严重水分胁迫的仙人柱和仙人柱的叶垫中,内部气相 CO(2)浓度的波动与酸含量的波动相位相反。气孔阻力仍然很高,对低 CO(2)浓度的开放响应几乎完全消除。