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Photosynthesis Carbohydrate Metabolism and Export in Beta vulgaris L. and Phaseolus vulgaris L. during Square and Sinusoidal Light Regimes

机译:在正方形和正弦形光照条件下β寻常型和菜豆的光合作用碳水化合物代谢和输出

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摘要

Rates of photosynthesis, sucrose synthesis, starch accumulation and degradation were measured in sugar beet (Beta vulgaris L.) and bean (Phaseolus vulgaris L.) plants under a square-wave light regime and under a sinusoidal regime that simulated the natural daylight period. Photosynthesis rate increased in a measured manner in direct proportion to the increasing light level. In contrast to this close correspondence between photosynthesis and light, a lag in photosynthesis rate was seen during the initial hour under square-wave illumination. The leaf appeared to be responding to limits set by carbon metabolism rather than by gas exchange or light reactions. Under the sinusoidal regime starch degradation occurred during the first and last 2 hours of the photoperiod, likely in response to photosynthesis rate rather than directly to light level. Starch broke down when photosynthesis was below a threshold rate and accumulated above this rate. Under square-wave illumination, accumulation of starch did not begin until irradiance was at full level for an hour or more and photosynthesis was at or near its maximum. Under a sinusoidal light regime, sucrose synthesis rate comprised carbon that was newly fixed throughout the day plus that from starch degradation at the beginning and end of the day. Synthesis of sucrose from recently fixed carbon increased with increasing net carbon fixation rate while its formation from degradation of starch decreased correspondingly. The complementary sources of carbon maintained a relatively steady rate of sucrose synthesis under the changing daytime irradiance.
机译:在方波光照条件下和模拟自然日光周期的正弦条件下,测量了甜菜(Beta vulgaris L.)和豆类(Phaseolus vulgaris L.)植物的光合作用,蔗糖合成,淀粉积累和降解的速率。光合作用速率与增加的光照水平成正比地增加。与光合作用和光之间的这种紧密对应相反,在方波照射下的最初一小时内,光合作用速率出现了滞后。叶片似乎对碳代谢设定的极限作出反应,而不是通过气体交换或光反应。在正弦状态下,淀粉降解发生在光周期的前两个小时,这可能是对光合作用速率的响应,而不是对光水平的响应。当光合作用低于阈值速率时淀粉分解,并高于该速率积累。在方波照射下,直到辐照度在一个小时或更长的时间内完全充满并且光合作用达到或接近其最大值时,淀粉才开始积累。在正弦光下,蔗糖的合成速率包括一天中新固定的碳以及一天中开始和结束时淀粉降解产生的碳。最近固定碳合成的蔗糖随着净碳固定率的增加而增加,而淀粉降解形成的蔗糖则相应减少。在日照不断变化的情况下,碳的互补来源可维持相对稳定的蔗糖合成速率。

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