首页> 外文期刊>The New Phytologist >Height-related trends in leaf xylem anatomy and shoot hydraulic characteristics in a tall conifer: safety versus efficiency in water transport.
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Height-related trends in leaf xylem anatomy and shoot hydraulic characteristics in a tall conifer: safety versus efficiency in water transport.

机译:高针叶树中叶片木质部解剖结构和枝条水力特性的高度相关趋势:水运输的安全性与效率。

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摘要

Hydraulic vulnerability of Douglas-fir (Pseudotsuga menziesii) branchlets decreases with height, allowing shoots at greater height to maintain hydraulic conductance (K shoot) at more negative leaf water potentials (Psi l). To determine the basis for this trend shoot hydraulic and tracheid anatomical properties of foliage from the tops of Douglas-fir trees were analysed along a height gradient from 5 to 55 m. Values of Psi l at which K shoot was substantially reduced, declined with height by 0.012 Mpa m(-1). Maximum K shoot was reduced by 0.082 mmol m(-2) MPa(-1) s(-1) for every 1 m increase in height. Total tracheid lumen area per needle cross-section, hydraulic mean diameter of leaf tracheid lumens, total number of tracheids per needle cross-section and leaf tracheid length decreased with height by 18.4 microm(2) m(-1), 0.029 microm m(-1), 0.42 m(-1) and 5.3 microm m(-1), respectively. Tracheid thickness-to-span ratio (tw/b)2 increased with height by 1.04 x 10(-3) m(-1) and pit number per tracheid decreased with height by 0.07 m(-1). Leaf anatomical adjustments that enhanced the ability to cope with vertical gradients of increasing xylem tension were attained at the expense of reduced water transport capacity and efficiency, possibly contributing to height-related decline in growth of Douglas fir.
机译:花旗松(Pseudotsuga menziesii)小枝的水力脆弱性随高度降低而降低,允许更高高度的枝条在更高的负叶水势(Ps11)下保持水力传导(K枝)。为了确定这种趋势的依据,沿着5至55 m的高度梯度分析了道格拉斯杉树顶部的叶子的水力和气管解剖特征。 K芽显着降低的Psi l值随高度降低0.012 Mpa m(-1)。每增加1 m的高度,最大的K芽减少0.082 mmol m(-2)MPa(-1)s(-1)。每针横截面的总气管腔面积,叶片气管腔的水力平均直径,每针横截面的气管总数和叶片气管长度随高度降低了18.4 microm(2)m(-1),0.029 microm m( -1),0.42 m(-1)和5.3 microm m(-1)。气管厚度与跨度之比(tw / b)2随高度增加1.04 x 10(-3)m(-1),每个气管的坑数随高度减少0.07 m(-1)。进行了叶片解剖调整,提高了应付木质部张力增加的垂直梯度的能力,但其代价是降低了水的运输能力和效率,这可能导致花旗松生长的高度相关性下降。

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