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首页> 外文期刊>Journal of Plant Research >Effect of soil moisture on leaf ecophysiology of Parasenecio yatabei, a summer-green herb in a cool–temperate forest understory in Japan
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Effect of soil moisture on leaf ecophysiology of Parasenecio yatabei, a summer-green herb in a cool–temperate forest understory in Japan

机译:土壤水分对日本凉温带林下夏绿色药草亚生草的叶片生态生理的影响

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摘要

Leaf physiological and gas-exchange traits of a summer-green herbaceous perennial, Parasenecio yatabei, growing along a stream were examined in relation to leaf age. In its vegetative phase, the aerial part of this plant consists of only one leaf and provides an ideal system for the study of leaf longevity. Volumetric soil water content (SWC) decreased with increasing distance from the stream, whereas relative light intensity was nearly constant. The light-saturated net CO2 assimilation rate (A sat) and leaf stomatal conductance (gs) were approximately 1.5-fold and 1.4-fold higher, respectively, in the lower slope near the mountain stream than in the upper slope far from the mountain stream. The lifespan of aerial parts of vegetative plants significantly increased with decreasing SWC. The leaf mass-based nitrogen content of the leaves (N mass) was almost constant (ca. 2.2%); however, the maximum carboxylation rate by ribulose-1,5-biphosphate carboxylase/oxygenase (rubisco) (V cmax) and photosynthetic nitrogen use efficiency (PNUE, A sat/N area) decreased more slowly in the upper slope than in the lower slope. The higher leaf photosynthetic activity of P. yatabei plants growing lower on the slope leads to a decrease in V cmax and PNUE in the early growing season, and to a shorter leaf lifespan.
机译:研究了沿流生长的夏绿多年生草本多年生植物Parasenecio yatabei的叶片生理和气体交换特征。在植物生长阶段,其空中部分仅由一片叶子组成,为研究叶片寿命提供了理想的系统。土壤体积水含量(SWC)随着与溪流距离的增加而降低,而相对光强度几乎恒定。在山间溪流附近的下坡,光饱和的净CO2同化率(A sat )和叶片气孔导度(gs)分别高出约1.5倍和1.4倍。远离山区河流的上坡。营养植物地上部分的寿命随着SWC的降低而显着增加。基于叶质量的叶片氮含量(N质量)几乎恒定(约2.2%)。然而,核糖-1,5-二磷酸羧化酶/加氧酶(rubisco)的最大羧化速率(V cmax )和光合氮的利用效率(PNUE,A sat / N面积)上坡的下降比下坡的下降慢。坡地上生长的较低水平的亚洲烟草的较高的叶片光合作用活性导致其在生长早期的V cmax 和PNUE降低,并使叶片寿命缩短。

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