Department of Biological Sciences, University of Lancaster, UK.
Planta. 1975 Jan;123(1):91-6. doi: 10.1007/BF00388063.
Leaves of different ages from the CAM (Crassulacean acid metabolism) plant Bryophyllum fedtschenkoi Hamet et Per. differ in their ability to accumulate titratable actidity during the night. Measurements of leaf resistance to water vapour diffusion and net CO2 exchange during the day and night show differing patterns of behaviour dependent upon leaf age. Young leaves do not exhibit CAM; they behave like typical mesophytes with low resistances and a net uptake of CO2 during the day and a net output of CO2 at night. Mature leaves exhibit CAM and have high leaf resistances during the day and lower resistances at night but their pattern of CO2 exchange is complex, with a net output early in their day followed by a net uptake which continues at a reduced rate through the night. Intermediate, leaves are intermediate in their behaviour The presence of CAM in older leaves may simply be the result of increased cell vacuole size.Leaf resistance measurements are discussed in relation to the possible control of stomatal opening by substomatal CO2 concentrations.
景天酸代谢(CAM)植物落地生根的不同年龄的叶片在夜间积累可滴定酸度的能力不同。对叶片在白天和夜间对水蒸气扩散和净 CO2 交换的阻力的测量显示,叶片的行为模式随叶片年龄的不同而不同。年轻的叶片不表现出 CAM;它们的行为类似于典型的中生植物,白天阻力低,净 CO2 吸收,晚上净 CO2 释放。成熟的叶片表现出 CAM,白天叶片阻力高,晚上阻力低,但它们的 CO2 交换模式很复杂,白天初期净释放 CO2,随后净吸收 CO2 持续以较低的速率进行一整夜。中间叶片的行为则处于中间状态。较老叶片中存在的 CAM 可能仅仅是细胞液泡大小增加的结果。叶阻力测量与亚气孔 CO2 浓度对气孔开度的可能控制有关进行了讨论。