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玉米叶片光合作用的日变化:III. 伸长叶组织中叶片伸长速率与碳水化合物及蔗糖代谢酶活性的关系

Diurnal Changes in Maize Leaf Photosynthesis : III. Leaf Elongation Rate in Relation to Carbohydrates and Activities of Sucrose Metabolizing Enzymes in Elongating Leaf Tissue.

作者信息

Kalt-Torres W, Huber S C

机构信息

United States Department of Agriculture, Agricultural Research Service, North Carolina State University Raleigh, North Carolina 27695-7631.

出版信息

Plant Physiol. 1987 Feb;83(2):294-8. doi: 10.1104/pp.83.2.294.

Abstract

Maize (Zea mays L. cv. Pioneer 3184) leaf elongation rate was measured diurnally and was related to diurnal changes in the activities of sucrose metabolizing enzymes and carbohydrate content in the elongating portion of the leaf. The rate of leaf elongation was greatest at midday (1300 hours) and was coincident with the maximum assimilate export rate from the distal portion of the leaf. Leaf elongation during the light period accounted for 70% of the total observed increase in leaf length per 24 hour period. Pronounced diurnal fluctuations were observed in the activities of acid and neutral invertase and sucrose phosphate synthase. Maximum activities of sucrose phosphate synthase and acid invertase were observed at 0900 hours, after which activity declined rapidly. The activity of sucrose phosphate synthase was substantially lower than that observed in maize leaf source tissue. Neutral invertase activity was greatest at midday (1200 hours) and was correlated positively with diurnal changes in leaf elongation rate. There was no significant change in the activity of sucrose synthase over the light/dark cycle. Sucrose accumulation rate increased during a period when leaf elongation rate was maximal and beginning to decline. Maximum sucrose concentration was observed at 1500 hours, when the activities of sucrose metabolizing enzymes were low. At no time was there a significant accumulation of hexose sugars. The rate of starch accumulation increased after the maximum sucrose concentration was observed, continuing until the end of the light period. There was no delay in the onset of starch mobilization at the beginning of the dark period, and essentially all of the starch was depleted by the end of the night. Mobilization of starch in the elongating tissue at night could account for a significant proportion of the calculated increase in the tissue dry weight due to growth. Collectively, the results suggested that leaf growth may be controlled by the activities of certain sucrose metabolizing enzymes and may be coordinated with assimilate export from the distal, source portion of the leaf. Results are discussed with reference to diurnal photoassimilation and export in the distal, source portion of the leaf.

摘要

测定了玉米(Zea mays L. cv. Pioneer 3184)叶片的日伸长速率,并将其与叶片伸长部位蔗糖代谢酶活性和碳水化合物含量的日变化相关联。叶片伸长速率在中午(13:00)最大,与叶片远端部分的最大同化物输出速率一致。光照期间叶片伸长占每24小时观察到的叶片总长度增加量的70%。酸性和中性转化酶以及蔗糖磷酸合酶的活性呈现出明显的日波动。蔗糖磷酸合酶和酸性转化酶的最大活性在09:00观察到,之后活性迅速下降。蔗糖磷酸合酶的活性显著低于在玉米叶片源组织中观察到的活性。中性转化酶活性在中午(12:00)最大,并且与叶片伸长速率的日变化呈正相关。在光/暗周期中,蔗糖合酶的活性没有显著变化。在叶片伸长速率最大且开始下降的时期,蔗糖积累速率增加。在15:00观察到最大蔗糖浓度,此时蔗糖代谢酶的活性较低。在任何时候都没有己糖的显著积累。在观察到最大蔗糖浓度后,淀粉积累速率增加,一直持续到光照期结束。在黑暗期开始时,淀粉动员没有延迟,并且基本上所有淀粉在夜间结束时耗尽。夜间伸长组织中淀粉的动员可能占因生长导致的组织干重计算增加量的很大一部分。总体而言,结果表明叶片生长可能受某些蔗糖代谢酶活性的控制,并且可能与叶片远端源部分的同化物输出相协调。结合叶片远端源部分的日光合同化和输出对结果进行了讨论。

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