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Effect of Growth Regulators on CO2 Assimilation in Leaves and its Correlation with the Bud Break Response in Photosynthesis

机译:生长调节剂对叶片CO 2同化的影响及其与光合作用芽断裂响应的关系

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摘要

Experiments have been done to confirm the previously reported effect of indoleacetic acid (IAA) on the rate of CO2 assimilation in bean leaves. It was shown that spraying the leaves of a variety of plants caused an increase in the rate of CO2 assimilation from 30% to 100% during the half-hour to 1 hour period following spraying. The only plant tested which did not show such an effect was corn.The breaking of dormancy of axial buds in the bean plant was correlated with an increase in the rate of CO2 assimilation in adjacent leaves for a brief period of time. It has been shown that IAA solution sprayed on 1 leaflet of a leaf can cause an increase in the rate of CO2 assimilation in the other leaflets, and that IAA applied to the cut stem of a leaflet or a developing bud can be transported to adjacent leaves and cause an increase in the CO2 assimilation rate. The reaction caused by IAA is very similar to that caused by the breaking of dormancy of a bud. This indicates that the bud break response in CO2 assimilation in leaves is caused by auxin synthesized in a bud as it begins to grow, and exported into adjacent leaves.
机译:已经进行实验以证实先前报道的吲哚乙酸(IAA)对豆叶中CO2同化率的影响。结果表明,在喷洒后的半小时到1小时内,喷洒多种植物的叶子会使CO2同化率从30%增加到100%。测试的唯一没有显示出这种作用的植物是玉米。豆类植物中轴芽休眠的中断与短时间内相邻叶片中CO2同化率的增加相关。已经显示,喷洒在一片叶子上的IAA溶液会导致其他小叶中的CO2同化率增加,并且施用于小叶切花茎或发育中的芽的IAA可以转运到相邻的叶子上并导致二氧化碳同化率增加。 IAA引起的反应与芽的休眠中断引起的反应非常相似。这表明叶片中CO2同化中的芽断裂响应是由芽中开始生长时合成的生长素引起的,并生长到邻近的叶片中。

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