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在两种不同的菜豆品种中,减少光照下液压驯化的限制。

Constraints to hydraulic acclimation under reduced light in two contrasting Phaseolus vulgaris cultivars.

机构信息

Department of Biology, Augustana College, Sioux Falls, SD 57197, USA

Department of Biology, Augustana College, Sioux Falls, SD 57197, USA.

出版信息

J Exp Bot. 2014 Aug;65(15):4409-18. doi: 10.1093/jxb/eru212. Epub 2014 May 26.

Abstract

Two cultivars of Phaseolus vulgaris L. were grown under three light levels to determine if hydraulic acclimation to light occurs in herbaceous annuals and whether intraspecific trade-offs constrain hydraulic traits. Acclimation occurred in response to reduced light and included decreased stomatal density (SD) and increased specific leaf area (SLA). Reduced light resulted in lower wood density (WD); decreased cavitation resistance, measured as the xylem pressure causing a 50 % reduction in stem conductivity (P50); and increased hydraulic capacity, measured as average leaf mass specific transpiration (E(LM)). Significant or marginally significant trade-offs between P50 and WD, WD and E(LM), and E(LM) and P50 reflected variation due to both genotype and environmental effects. A trade-off between WD and P50 within one cultivar indicated that morphological adjustment was constrained. Coordinated changes in WD, P50, and E(LM) within each cultivar in response to light were consistent with trade-offs constraining plasticity. A water-use efficiency (WUE, measured as δ(13)C) versus hydraulic capacity (E(LM)) trade-off was observed within each cultivar, further indicating that hydraulic trade-offs can constrain acclimation. Larger plants had lower hydraulic capacity (E(LM)) but greater cavitation resistance, WD, and WUE. Distinct hydraulic strategies were observed with the cultivar adapted to irrigated conditions having higher stomatal conductance and stem flow rates. The cultivar adapted to rain-fed conditions had higher leaf area and greater cavitation resistance. Hydraulic trade-offs were observed within the herbaceous P. vulgaris resulting from both genotype and environmental effects. Trade-offs within a cultivar reflected constraints to hydraulic acclimation in response to changing light.

摘要

两种菜豆品种在三种光照水平下生长,以确定草本一年生植物是否会对光进行水力驯化,以及种内权衡是否会限制水力特性。适应发生在光照减少的情况下,包括减少气孔密度(SD)和增加比叶面积(SLA)。减少光照导致木材密度(WD)降低;降低了木质部压力导致茎导率降低 50%的空化阻力(P50);以及增加了水力容量,以平均叶片质量比蒸腾量(E(LM))表示。P50 和 WD、WD 和 E(LM)、E(LM)和 P50 之间的显著或边缘显著权衡反映了由于基因型和环境效应的变化。一个品种内 WD 和 P50 之间的权衡表明形态调整受到限制。每个品种对光的响应中 WD、P50 和 E(LM) 的协调变化与限制可塑性的权衡一致。每个品种都观察到了水分利用效率(WUE,以 δ(13)C 表示)与水力容量(E(LM))之间的权衡,进一步表明水力权衡可以限制适应。较大的植物具有较低的水力容量(E(LM)),但具有更大的空化阻力、WD 和 WUE。在每个品种中都观察到了不同的水力策略,适应灌溉条件的品种具有较高的气孔导度和茎流率。适应雨养条件的品种具有较大的叶面积和更大的空化阻力。草本菜豆由于基因型和环境效应的共同作用,观察到了水力权衡。一个品种内的权衡反映了对不断变化的光照进行水力适应的限制。

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