Results 31 to 40 of about 3,436,895 (186)
Mechanisms Underlying the C3–CAM Photosynthetic Shift in Facultative CAM Plants
Crassulacean acid metabolism (CAM), one of three kinds of photosynthesis, is a water-use efficient adaptation to an arid environment. CAM is characterized by CO2 uptake via open stomata during the nighttime and refixation CO2 via the Calvin cycle during ...
Shuo Qiu +4 more
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Evolutionary slowdowns in diversification have been inferred in various plant and animal lineages. Investigation based on diversification models integrated with environmental factors and key characters could provide critical insights into this ...
Ai-Qun Hu +6 more
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Engineering of Crassulacean Acid Metabolism.
Schiller K, Bräutigam A. Engineering of Crassulacean Acid Metabolism. Annual review of plant biology. 2021;72.Crassulacean acid metabolism (CAM) has evolved from a C3 ground state to increase water use efficiency of photosynthesis.
Schiller, Katharina +1 more
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Crassulacean acid metabolism (CAM) is an important photosynthetic pathway for plant adaptation to dry environments. CAM plants feature a coordinated interaction between mesophyll and epidermis functions that involves refined regulations of gene ...
Zhikang Hu +9 more
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Ecophysiology of Crassulacean Acid Metabolism (CAM) [PDF]
Crassulacean Acid Metabolism (CAM) as an ecophysiological modification of photosynthetic carbon acquisition has been reviewed extensively before. Cell biology, enzymology and the flow of carbon along various pathways and through various cellular compartments have been well documented and discussed.
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It has been challenging to simultaneously improve photosynthesis and stress tolerance in plants. Crassulacean acid metabolism (CAM) is a CO2-concentrating mechanism that facilitates plant adaptation to water-limited environments. We hypothesized that the
Degao Liu +11 more
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Direct and Indirect Facilitation of Plants with Crassulacean Acid Metabolism (CAM) [PDF]
Plants with crassulacean acid metabolism (CAM) are increasing their cover in many dryland regions around the world. Their increased dominance has been related to climate warming and atmospheric CO2 fertilization, while the effects of interspecies interactions and the role of CAM plant facilitation by trees and grasses remain poorly understood.
Yu, Kailiang, D’Odorico, Paolo
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Salt stress impedes plant growth and development, and leads to yield loss. Recently, a halophyte species Mesembryanthemum crystallinum has become a model to study plant photosynthetic responses to salt stress.
Qijie Guan +8 more
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Occurrence of crassulacean acid metabolism in leaves of Aristolochia bracteata Ritz
Aristolochia bracteata Ritz. is a common weed of fallowlands of hot, semi-arid region of Baramati area. High succulence index was noticed in leaf tissues along with marked diurnal fluctuations in titratable acidity status, and pH of leaf sap.
R. B. Deshumukh, C. V. Murumkar
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Crassulacean acid metabolism (CAM) is a metabolic adaptation of photosynthesis that enhances water use efficiency. Here, via genomic analysis of Kalanchoë, the authors provide evidence for convergent evolution of protein sequence and temporal gene ...
Xiaohan Yang +48 more
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