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Combining stable isotope and carbohydrate analyses in phloem sap and fine roots to study seasonal changes of source-sink relationships in a Mediterranean beech forest

机译:结合韧皮部汁液和细根中的稳定同位素和碳水化合物分析,研究地中海山毛榉林中源汇关系的季节性变化

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摘要

Carbon isotope composition (delta C-13) and carbohydrate content of phloem sap and fine roots were measured in a Mediterranean beech (Fagus sylvatica L.) forest throughout the growing season to study seasonal changes of source-sink relationships. Seasonal variations of delta C-13 and content of phloem sap sugars, collected during the daylight period, reflected the changes in soil and plant water status. The correlation between delta C-13 and content of phloem sap sugars, collected from plants belonging to different social classes, was significantly positive only during the driest month of July. In this month, delta C-13 of phloem sap sugars was inversely related to the increment of trunk radial growth and positively related to delta C-13 of fine roots. We conclude that the relationship between delta C-13 and the amount of phloem sap sugars is affected by a combination of causes, such as sink strength, tree social class, changes in phloem anatomy and transport capacity, and phloem loading of sugars to restore sieve tube turgor following the reduced plant water potential under drought conditions. However, delta C-13 and sugar composition of fine roots suggested that phloem transport of leaf sucrose to this belowground component was not impaired by mild drought and that sucrose was in a large part allocated towards fine roots in July, depending on tree social class. Hence, fine roots could represent a functional carbon sink during the dry seasonal periods, when transport and use of assimilates in other sink tissues are reduced. These results indicate a strict link between above- and belowground processes and highlight a rapid response of this Mediterranean forest to changes in environmental drivers to regulate source-sink relationships and carbon sink capacity.
机译:在整个生长季节中,在地中海山毛榉(Fagus sylvatica L.)森林中测量韧皮部汁液和细根的碳同位素组成(δC-13)和碳水化合物含量,以研究源库关系的季节性变化。在白天收集的δC-13和韧皮树汁糖含量的季节性变化反映了土壤和植物水分状况的变化。从属于不同社会阶层的植物中收集的韧皮部树汁糖含量的C-13含量之间的相关性仅在7月的最干旱月份才显着正相关。在这个月,韧皮部汁液糖的C-13增量与主干径向生长的增加呈负相关,与细根C-13呈正相关。我们得出结论,δC-13与韧皮部树汁糖的量之间的关系受以下因素的组合影响,例如沉陷强度,树木社会阶层,韧皮部解剖结构和运输能力的变化以及韧皮部糖的含量以恢复筛子干旱条件下植物水势降低后,管膨大。然而,δC-13和细根的糖组成表明,轻度干旱不会损害叶蔗糖的韧皮部向地下部分的韧皮部转运,并且在七月,蔗糖大部分分配给细根,具体取决于树木的社会阶层。因此,当减少其他同化组织中同化物的运输和使用时,细根可能代表了干燥季节中的功能性碳吸收。这些结果表明了地上和地下过程之间的严格联系,并突显了这种地中海森林对环境驱动因素变化的快速反应,以调节源-汇关系和碳汇能力。

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