Institut für Botanik, Technische Hochschule, D-6100, Darmstadt, Federal Republic of Germany.
Planta. 1984 Mar;160(3):264-71. doi: 10.1007/BF00402864.
Gas exchange in K. blossfeldiana shows a circadian rhythm in net CO2 uptake and transpiration when measured under low and medium irradiances. The period length varies between 21.4 h at 60 W m(-2) and 24.0 h at 10 W m(-2). In bright light (≧80 W m(-2)) or darkness there are no rhythms. High leaf temperatures result in a fast dampening of the CO2-uptake rhythm at moderate irradiances, but low leaf temperatures can not overcome the dampening in bright light. The rhythm in CO2 uptake is accompanied by a less pronounced and more rapidly damped rhythm in transpiration and by oscillations in malate levels with the amplitude being highly reduced. The oscillations in starch content, usually observed to oscillate inversely to the acidification in light-dark cycles, disappear after the first cycle in continuous light. The balance between starch and malate levels depends in continuous light on the irradiance applied. Leaves show high malate and low starch content at low irradiance and high starch and low malate in bright light. During the first 12 h in continuous light replacing the usual dark period, malate synthesis decreases with the increasing irradiance. Up to 50 W m(-2) starch content decreases; at higher irradiances it increases above the values usually measured at the end of the light period of the 12:12 h light-dark cycle.
在低光和中光辐照度下测量时,K. blossfeldiana 的气体交换表现出净 CO2 吸收和蒸腾的昼夜节律。周期长度在 60 W m(-2) 时为 21.4 h,在 10 W m(-2) 时为 24.0 h。在强光(≧80 W m(-2))或黑暗中没有节律。高叶温会导致中等辐照度下 CO2 吸收节律迅速减弱,但低叶温不能克服强光下的减弱。CO2 吸收节律伴随着蒸腾的不那么明显和更快减弱的节律,以及苹果酸水平的波动,其幅度大大降低。淀粉含量的波动通常与光暗循环中的酸化相反,在连续光照下第一个循环后消失。淀粉和苹果酸水平之间的平衡取决于连续光照下施加的辐照度。在低光下,叶片表现出高苹果酸和低淀粉含量,在强光下表现出高淀粉和低苹果酸含量。在连续光照下的前 12 h 取代通常的黑暗期时,随着辐照度的增加,苹果酸合成减少。在 50 W m(-2) 以下的辐照度下,淀粉含量下降;在更高的辐照度下,它会高于通常在 12:12 h 光暗循环的光期结束时测量的值。