Clark J B, Lister G R
Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada.
Plant Physiol. 1975 Feb;55(2):401-6. doi: 10.1104/pp.55.2.401.
Comparative isoenergetic action spectra of net photosynthesis for intact, current year foliage of five tree species were determined from 400 to 710 nm by CO(2) exchange analysis. The blue (400 to 500 nm) peak of net photosynthetic activity for the green broadleaves of red alder (Alnus rubra Bong.) was reduced to a plateau for the green needle-leaves of Douglas-fir (Pseudotsuga menziesii [Mirb.] Franco) and Sitka spruce (Picea sitchensis [Bong.] Carr.), a shoulder for the blue-green needles of Colorado spruce (Picea pungens Engelm.), and a reduced shoulder for the blue-white needles of Blue spruce (Picea pungens var. hoospii). These differences were attributable neither to a differential blue light stimulation of photorespiration nor to a differential presence of a nonplastid screening pigment. The conifers all had similar carotenoid-chlorophyll ratios, with approximately 50% more carotenoid relative to chlorophyll as compared to red alder. Blue light absorption and low efficiency of energy transfer by the carotenoids probably accounts for the low net photosynthetic activity of the green conifers in blue light as compared to red alder. Leaf form per se (broad versus needle) had no distinguishable influence on these results.
通过二氧化碳交换分析,测定了五种树种当年生完整叶片净光合作用的等能作用光谱,范围为400至710纳米。红桤木(Alnus rubra Bong.)绿色阔叶净光合活性的蓝光(400至500纳米)峰值,对于花旗松(Pseudotsuga menziesii [Mirb.] Franco)和西加云杉(Picea sitchensis [Bong.] Carr.)的绿色针叶而言降低至平稳状态,对于科罗拉多蓝杉(Picea pungens Engelm.)的蓝绿色针叶而言为一个波峰,对于蓝云杉(Picea pungens var. hoospii)的蓝白色针叶而言为一个降低的波峰。这些差异既不归因于光呼吸的蓝光差异刺激,也不归因于非质体筛选色素的差异存在。针叶树的类胡萝卜素与叶绿素比率均相似,与红桤木相比,类胡萝卜素相对于叶绿素多约50%。与红桤木相比,类胡萝卜素对蓝光的吸收以及能量传递效率较低,可能是导致绿色针叶树在蓝光下净光合活性较低的原因。叶片形态本身(阔叶与针叶)对这些结果没有显著影响。