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首页> 外文期刊>Trees. Structure and Function >Starch accumulation does not lead to feedback photosynthetic downregulation in girdled coffee branches under varying source-to-sink ratios
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Starch accumulation does not lead to feedback photosynthetic downregulation in girdled coffee branches under varying source-to-sink ratios

机译:淀粉堆积不会导致反馈在不同源区到汇比下的环形咖啡分支中的反馈光合下调

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摘要

Key message Leaves were forced to accumulate starch as much as possible but maintained relatively low soluble sugar levels with no evidence of photosynthetic feedback downregulation. Here, we examined whether the regulation of photosynthesis in coffee depends on sink activity or carbohydrate build-up in source leaves and how the coffee tree adjusts its photosynthetic performance and primary metabolism to varying source-to-sink ratios. We designed a field experiment by girdling coffee branches that were further manipulated by controlled defoliation and/or defruiting such that three highly varying source-to-sink ratios were created. Under markedly high source-to-sink ratios, photosynthesis rates were primarily limited by diffusional factors, and feedback downregulation contributed a maximum of 7% of the photosynthetic reduction. Such responses were accompanied by a relatively enormous capacity for starch accumulation coupled with the maintenance of low levels of soluble sugars. Chronic photoinhibition and photodamage could be avoided by increases in nonphotochemical energy dissipation, photorespiration and respiration rates, thus diminishing the excitation pressure on photosystems. Overall, the activities of key enzymes (and their transcript abundance) associated with carbon metabolism varied only marginally across treatments. Leaf metabolic adjustments were more evident under high sink demand conditions, and nitrogen metabolism was more affected than carbon metabolism. In conclusion, our results offer novel insights into the high coordination between the source supply and sink demand in coffee, with a minor role of photosynthetic downregulation even under dramatically low sink conditions.
机译:关键消息叶子被迫尽可能地累积淀粉,但保持相对低的可溶性糖水平,没有光合反馈的证据下调。在这里,我们检查了咖啡中光合作用的调节是否取决于水槽活动或碳水化合物在源叶中的积聚以及咖啡树如何调节其光合性能和初级代谢以改变源区的源极化比率。我们设计了通过受控侧渗透和/或排放的围绕咖啡支架设计了一种磁场实验,使得创造了三个高度变化的源极到汇比。在显着的源极到汇比率下,光合速率主要受扩散因素限制,反馈下调最多占光合减少的7%。这种反应伴随着淀粉积累的相对巨大的能力,加上低水平的可溶性糖。可以通过增加非光学能量耗散,光素和呼吸速率来避免慢性光抑制和光透过,从而降低照相系统的激发压力。总体而言,与碳代谢相关的关键酶(及其转录性丰度)的活动仅在治疗中略微不同。在高沉的需求条件下,叶片代谢调整更明显,并且氮代谢比碳代谢更受影响。总之,我们的结果提供了对咖啡源供应和下沉需求之间的高协调的新颖见解,即使在大幅低沉的下沉条件下也具有较小的光合下调的作用。

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