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Source–sink imbalance increases with growth temperature in the spring geophyte Erythronium americanum

机译:春季水生植物赤藓(Erythronium americanum)的源库不平衡随着生长温度的增加而增加

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摘要

Spring geophytes produce larger storage organs and present delayed leaf senescence under lower growth temperature. Bulb and leaf carbon metabolism were investigated in Erythronium americanum to identify some of the mechanisms that permit this improved growth at low temperature. Plants were grown under three dayight temperature regimes: 18/14 °C, 12/8 °C, and 8/6 °C. Starch accumulated more slowly in the bulb at lower temperatures probably due to the combination of lower net photosynthetic rate and activation of a ‘futile cycle’ of sucrose synthesis and degradation. Furthermore, bulb cell maturation was delayed at lower temperatures, potentially due to the delayed activation of sucrose synthase leading to a greater sink capacity. Faster starch accumulation and the smaller sink capacity that developed at higher temperatures led to early starch saturation of the bulb. Thereafter, soluble sugars started to accumulate in both leaf and bulb, most probably inducing decreases in fructose-1,6-bisphosphatase activity, triose-phosphate utilization in the leaf, and the induction of leaf senescence. Longer leaf life span and larger bulbs at lower temperature appear to be due to an improved equilibrium between carbon fixation capacity and sink strength, thereby allowing the plant to sustain growth for a longer period of time before feedback inhibition induces leaf senescence.
机译:春季水生植物产生较大的贮藏器官,并在较低的生长温度下出现延迟的叶片衰老。在美洲红球藻中调查了鳞茎和叶片的碳代谢,以鉴定一些在低温下可改善生长的机制。使植物在三种日夜温度下生长:18/14°C,12/8°C和8/6°C。较低温度下,灯泡中的淀粉积累速度较慢,这可能是由于较低的净光合速率和蔗糖合成和降解“无效循环”的激活共同作用的结果。此外,鳞茎细胞的成熟在较低温度下被延迟,这可能是由于蔗糖合酶的延迟活化导致更大的吸收能力。较高温度下淀粉积累更快,吸收能力更小,导致球茎淀粉早期饱和。此后,可溶性糖开始在叶片和球茎中积累,最有可能导致果糖-1,6-双磷酸酶活性,叶片中的磷酸三糖利用率降低和叶片衰老。较长的叶片寿命和较低温度下的较大鳞茎似乎是由于碳固定能力和吸收强度之间的平衡改善,从而使植物在反馈抑制诱导叶片衰老之前能够维持较长的生长时间。

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