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首页> 外文期刊>Trees. Structure and Function >Basal reiteration improves the hydraulic functional status of mature Cinnamomum camphora trees
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Basal reiteration improves the hydraulic functional status of mature Cinnamomum camphora trees

机译:基础重复可改善成熟樟树的水力功能状态

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We compared soil-to-leaf hydraulic conductance (G (T)), hydraulic conductivity and water-relations characteristics of leaves between reiterated axes (produced by sprouting of suppressed buds) and sequential axes (produced by elongation of terminal buds) on the same branch to investigate how basal reiteration affected the hydraulic architecture of mature Cinnamomum camphora (L.) Sieb. trees. Given similar light conditions, G (T) was higher for leaves on reiterated shoots than for those on sequential shoots. However, where leaves on sequential shoots received more light, G (T) was similar to that of leaves on reiterated shoots, suggesting that some compensatory mechanism worked to increase hydraulic conductance to the more distal sequential shoots, which have higher potential for carbon gain. Both xylem- and leaf-specific conductivities were higher for reiterated than sequential shoots. Pressure-volume measurements indicated that leaves on reiterated shoots were more vulnerable to water stress, suggesting that they developed under favorable water status. Because basal reiteration occurs on lower-order branch axes, reiterated shoots have better connectivity to higher conducting xylem and this may contribute to favorable water status. As trees grow larger, hydraulic pathlength and hydraulic resistance both increase as numbers of branch junctions and nodes increase. Our results suggest that basal reiteration improves the hydraulic functional status of mature C. camphora trees by shortening the hydraulic pathway and increasing hydraulic conductance to transpiring leaves.
机译:我们比较了相同的重复轴(由受压芽的发芽产生)和序贯轴(由末端芽的伸长产生)之间的土壤到叶的水力传导率(G(T)),叶片的水力传导率和水分关系特性。分支以研究基础重复如何影响成熟的樟树(L.)Sieb的水力结构。树木。在相似的光照条件下,重复芽上的叶子的G(T)高于连续芽上的叶子。但是,当连续芽上的叶子接受更多的光照时,G(T)与重复芽上的叶子相似,这表明某些补偿机制可以增加对较远的连续芽的水力传导,从而具有更高的碳吸收潜力。重复进行的木质部和叶片特异性电导率均高于连续芽。压力-体积测量表明,再生枝上的叶子更容易受到水分胁迫,表明它们在有利的水分状况下发育。由于基础重复发生在较低阶的分支轴上,因此重复的枝条与较高传导木质部具有更好的连通性,这可能有助于改善水分状况。随着树木的生长,水力路径长度和水力阻力都随着分支结和节点数的增加而增加。我们的结果表明,基础重复可通过缩短水力通道和增加对透叶的水力传导来改善成熟樟树的水力功能状态。

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