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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >N-deficiency damps out circadian rhythmic changes of stem diameter dynamics in tomato plant.
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N-deficiency damps out circadian rhythmic changes of stem diameter dynamics in tomato plant.

机译:氮缺乏抑制了番茄植株茎直径动态的昼夜节律变化。

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摘要

Tomato (Lycopersicon esculentum) plants were grown in hydroponics. At the fruiting stage, N was withdrawn from the growing medium for a period of 19 days and its effects were studied on plant biomass production, photosynthesis, partitioning of 13C and 15N, and changes in the stem and fruit diameters, etc., in order to monitor the mechanism of resource management on the plant parts at low N and prevent excess use of the fertilizer. N-deficiency treatment decreased leaf photosynthesis immediately and affected biomass accumulation of tomato. Conversely, N-deficiency increased stem diameter for a period of two weeks before reducing it below the control. During this period, these results suggest that N deficiency suppresses the source activity more than the sink activity. N-deficiency reduced the amplitude of the circadian pattern of daytime shrinkage and nocturnal expansion of the stem diameter by decreasing the magnitude of the former. Circadian pattern of contraction and expansion of diameter was less evident in the fruit. Under N-deficiency, distribution of 13C and 15N decreased and increased, respectively in fruits. Restricted partitioning of carbon to fruits could be responsible for accumulation of unused assimilates and consequential osmotic adjustment for maintenance of stem water potential. This effect might have precluded contraction of stem diameter of N-deficient plants until the production of assimilates became limiting on account of depression of leaf photosynthesis.
机译:番茄(Lycopersicon esculentum)植物在水培法中生长。在结实阶段,从生长介质中抽出氮达19天,并依次研究了其对植物生物量生产,光合作用,13C和15N分配,茎和果实直径变化等的影响。监测低氮植物部位的资源管理机制,防止肥料过量使用。缺氮处理立即降低了叶片的光合作用,并影响了番茄的生物量积累。相反,缺氮会增加茎直径两个星期,然后再将其降低到控制之下。在此期间,这些结果表明,氮缺乏对源活性的抑制作用比对沉活性的抑制作用更大。 N缺乏症通过降低前者的幅度降低了昼夜节律的昼夜节律模式的幅度和茎直径的夜间扩张。在果实中,昼夜节律的收缩和直径扩张模式不太明显。在缺氮条件下,果实中13C和15N的分布分别减少和增加。碳在水果中的分配有限可能是未使用的同化物积累和相应的渗透调节以维持茎水势的原因。这种作用可能已经阻止了缺氮植物的茎径收缩,直到由于叶片光合作用的降低而导致同化物的产量受到限制。

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