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在 Lycospersicum esculentum,var Jubilee 中,净 CO(2)同化与叶片扩展对营养生长的关系。

On the Relationships of Net CO(2) Assimilation and Leaf Expansion to Vegetative Growth in Lycospersicum esculentum, var Jubilee.

机构信息

United States Department of Agriculture, Agricultural Research Service, Western Regional Research Center, Albany, California 94710.

出版信息

Plant Physiol. 1986 Mar;80(3):711-5. doi: 10.1104/pp.80.3.711.

Abstract

Relationships between net plant CO(2) exchange rate (CER) and canopy development were examined in ;jubilee' tomato over the initial 4 weeks of vegetative growth. A comparison was made between two plant groups that were alternatively exposed to 200 or 800 microeinsteins per square meter per second midday irradiation to establish a differential in net CER. Plants exposed to higher irradiation demonstrated a 2- to 4-fold greater net photosynthetic rate per leaf area and 100% average higher net CO(2) assimilation rate/plant. day. However, leaf-stem growth differed by <50% suggesting a poor relationship to CER. Leaf area growth rate (LAGR) of individual leaves appeared closely related to CER during initial leaf expansion but a greater function of order of emergence in successive leaf growth. LAGR on a per plant basis increased linearly with leaf dry weight but appeared more limited by factors determining maximum leaf enlargement and rate of new leaf development. Net CO(2) assimilation/leaf area and leaf starch consistently declined with time while net CO(2) assimilation plant/day approached a constant rate following 2 to 3 weeks growth. Composite results suggested a simple relationship for sucessive growth where accumulated leaf carbohydrate in excess of 200 milligrams/plant.day could be expected to be partitioned to other plant segments.

摘要

在营养生长的最初 4 周,研究了 Jubilee 番茄的净光合 CO2 交换率(CER)与冠层发育之间的关系。通过将两组植物交替暴露于每天中午 200 或 800 微爱因斯坦/平方米的辐射,建立净 CER 的差异,对两者进行了比较。暴露于较高辐射的植物每叶面积的净光合速率高 2-4 倍,平均净 CO2 同化率/植物。天。然而,叶片-茎生长差异<50%,表明与 CER 的关系较差。在初始叶片扩展过程中,单个叶片的叶面积生长率(LAGR)似乎与 CER 密切相关,但在随后的叶片生长中,出现的顺序对 LAGR 的影响更大。基于单株的 LAGR 与叶片干重呈线性增加,但似乎受到决定叶片最大扩展和新叶发育速度的因素的限制。净 CO2 同化/叶面积和叶片淀粉含量随着时间的推移而持续下降,而净 CO2 同化/植物。天在 2 到 3 周的生长后接近恒定速率。综合结果表明,在连续生长中有一个简单的关系,预计超过 200 毫克/植物。天的积累叶片碳水化合物将被分配到其他植物部位。

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