Department of Agricultural Botany, The Hebrew University of Jerusalem, Rehovot, Israel.
Plant Physiol. 1979 Aug;64(2):285-8. doi: 10.1104/pp.64.2.285.
Endogenous factors which determine the photosynthetic capacity of the leaf were studied in the fully expanded, primary leaves of young seedings of bean (cv. Bulgarian). Following removal of the shoot above the primary leaf node and excision of all axillary buds, the primary leaves increased in area and thickness, in chlorophyll content, in levels of soluble protein, and in the specific activity of ribulose-1,5-bisphosphate carboxylase. Plants in which phloem continuity was disrupted by heat-girdling of the stem, between the shoot above the primary leaf node and the organs below, did not exhibit similar increases, whereas the shoot above the girdle continued to grow for several days. Plants in which all developing trifoliate leaves were excised as soon as they became macroscopic exhibited an increase in their photosynthetic activity, area, and thickness, while their main stem and (leafless) branches made considerable growth. Transpiration from the primary leaves was the same in decapitated plants as in the heat-girdled ones, although in the latter it accounted for only about 30% of total transpiration.The photosynthetic capacity of the primary leaves is not controlled by source/sink relationship of photosynthates, but rather by the pattern of distribution of factors carried from the roots to the leaves in the transpiration stream.
内源因素决定了叶片的光合能力,本研究以幼龄保加利亚菜豆(cv. Bulgarian)完全展开的初生叶为材料进行了研究。在去除主茎上的顶芽和所有腋芽后,初生叶的面积和厚度增加,叶绿素含量、可溶性蛋白含量和核酮糖-1,5-二磷酸羧化酶比活性增加。茎热环割(在顶芽和以下器官之间)破坏韧皮部连续性的植株没有表现出类似的增加,而环割上方的嫩枝仍能继续生长数天。一旦三叶初生叶宏观可见,就将其全部切除的植株表现出光合活性、面积和厚度增加,而其主茎和(无叶)枝条生长显著。尽管在后者中,蒸腾仅占总蒸腾的约 30%,但去顶植株和热环割植株的初生叶蒸腾速率相同。初生叶的光合能力不受源/库关系的影响,而是由根到叶在蒸腾流中携带的因子的分布模式决定的。