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- W35547066 abstract "The fate of respiratory CO2 released simultaneously with the absorption of atmospheric CO2 at night during crassulacean acid metabolism (CAM) is inevitable; both sources of CO2 will contribute to the nocturnal accumulation of malate. As a result, determinations of stoichiometric relationships between the amount of malate accumulated overnight and the net amount of CO2 absorbed from the external atmosphere should yield values greater than unity. Surprisingly, this is seldom the case. Studies of numerous CAM species under optimal conditions report ratios of the amount of malate accumulated overnight to the net amount of atmospheric CO2 absorbed (hereafter referred to as “malate/CO2”) consistently near one (Medina and Delgado 1976; Nobel and Hartsock 1978, 1983; Eickmeier 1979; Nobel et al. 1984; Winter et al. 1986; Virzo De Santo et al. 1987). Apparently, either the rate of respiration is too low to contribute substantially to the nocturnal pool of malate, or experimental variability in measurements of CO2 assimilation and malate accumulation during the night might obscure small differences between these measures of CAM." @default.
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- W35547066 date "1996-01-01" @default.
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- W35547066 title "Putative Causes and Consequences of Recycling CO2 via Crassulacean Acid Metabolism" @default.
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- W35547066 doi "https://doi.org/10.1007/978-3-642-79060-7_13" @default.
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