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首页> 外文期刊>Trees. Structure and Function >Aspen shoots are carbon autonomous during bud break
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Aspen shoots are carbon autonomous during bud break

机译:白杨芽在断芽期间具有碳自主性

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Current thinking holds that carbon autonomy of branches in trees is unlikely, particularly during bud break, when the new developing shoots require significant influx of carbon resources from more distant sources. Results from recent studies indicate that the impact of bud break on overall tree reserves might be small. In two studies the independence of flushing shoots from stored carbon reserves and the photosynthesis in developing new leaves and shoots of Populus tremuloides were explored. New developing shoots quickly became a positive carbon source and only a few days into flush, the photosynthetic system of the newly developing shoots was efficient enough to achieve positive carbon gain even at low light levels. Only 14% of the stored shoot reserves, without any mobilization from more distant reserves, were used during bud break and early shoot expansion. Without any underlying stress, shoots of deciduous trees appear to be carbon autonomous during bud break when demand on stored carbon should be the highest. The development of an efficient photosynthetic system in new shoots is critical in the recovery of carbon reserves in aspen. It minimizes the cost of bud break to the overall stored carbon reserves by optimizing the assimilation of carbon in the newly developed leaves, while eliminating the cost for mobilizing carbon reserves from more distant sources. This carbon autonomy of shoots has important implications for the whole tree carbon balance particularly to the non-photosynthetic tissues which functions solely depending on carbon export from the newly developing leaves and shoots.
机译:当前的想法认为,树木分支的碳自主性是不可能的,特别是在芽断裂期间,当新芽正在生长时,需要从更远的来源大量吸收碳资源。最近的研究结果表明,芽破裂对总体树木储备的影响可能很小。在两项研究中,研究了潮红苗与储存的碳储量的独立性以及光生胡杨的新叶和新梢的光合作用。新近生长的新芽很快就变成了正碳源,冲洗后仅几天,新近生长的新芽的光合作用系统就足够有效,即使在弱光条件下也能获得正的碳增加。在芽断裂和早期芽扩张过程中,仅使用了14%的芽苗储备,而没有从更远的储备中动员任何人。没有任何潜在的压力,落叶树的枝条在芽断裂期间似乎是碳自主的,此时对储存的碳的需求应该最高。在新梢中开发有效的光合作用系统对于回收白杨木中的碳储量至关重要。通过优化新开发叶片中碳的同化作用,它使芽破裂的成本最小化了整体储存的碳储量,同时消除了从更远的来源调集碳储量的成本。枝条的这种碳自主性对整个树的碳平衡具有重要意义,特别是对非光合组织而言,其仅依赖于新发育的叶片和枝条的碳输出而起作用。

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