Department of Biology and Molecular Biology Institute, University of California, Los Angeles, California 90024.
Plant Physiol. 1976 Sep;58(3):341-4. doi: 10.1104/pp.58.3.341.
Chloroplasts have been isolated in high yield from several gymnosperms and from two deciduous trees. The organization of chlorophyll in the chloroplasts of these woody species is basically similar to that in angiosperm crop plants and green algae. The tree chloroplasts contain two chlorophyll proteins, the P700-chlorophyll a-protein and the major light-harvesting chlorophyll a/b-protein, the size, spectral characteristics, and function of which are the same as the equivalent complexes previously isolated from other classes of green plants. All the gymnosperms have chlorophyll/P700 ratios (photosynthetic unit sizes) 1.6 to 3.8 times larger than that typically found in crop plants; the deciduous trees have units of intermediary size. The presence of fewer but larger photosynthetic units in the woody species can partially account for their lower photosynthetic rate and explains why their photosynthetic processes saturate at lower light intensities. Chloroplasts of shade needles have large units containing a greater proportion of the light-harvesting chlorophyll a/b-protein than those of sun needles.
已从几种裸子植物和两种落叶树木中高产量地分离出叶绿体。这些木本物种叶绿体中叶绿素的组织基本上与被子作物植物和绿藻中的相似。树叶绿体包含两种叶绿素蛋白,即 P700-叶绿素 a 蛋白和主要的光捕获叶绿素 a/b 蛋白,其大小、光谱特征和功能与先前从其他类绿色植物中分离出的等效复合物相同。所有裸子植物的叶绿素/P700 比值(光合单位大小)比作物植物中典型的比值大 1.6 到 3.8 倍;落叶树木的单位则处于中等大小。木本植物中较少但较大的光合单位的存在部分解释了它们较低的光合速率,也说明了为什么它们的光合作用过程在较低的光强度下饱和。阴生针叶的叶绿体具有较大的单位,其中包含更多比例的光捕获叶绿素 a/b 蛋白,而阳生针叶的叶绿体则较小。