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花朵的水力特征比叶子更为多样化。

Hydraulic traits are more diverse in flowers than in leaves.

机构信息

School of Forestry & Environmental Studies, Yale University, New Haven, CT, 06511, USA.

State Key Laboratory of Conservation and Utilization of Subtropical Agrobioresources, Guangxi University, Nanning, Guangxi, 530004, China.

出版信息

New Phytol. 2019 Jul;223(1):193-203. doi: 10.1111/nph.15749. Epub 2019 Mar 18.

Abstract

Maintaining water balance has been a critical constraint shaping the evolution of leaf form and function. However, flowers, which are heterotrophic and relatively short-lived, may not be constrained by the same physiological and developmental factors. We measured physiological parameters derived from pressure-volume curves for leaves and flowers of 22 species to characterize the diversity of hydraulic traits in flowers and to determine whether flowers are governed by the same constraints as leaves. Compared with leaves, flowers had high saturated water content, which was a strong predictor of hydraulic capacitance in both leaves and flowers. Principal component analysis revealed that flowers occupied a different region of multivariate trait space than leaves and that hydraulic traits are more diverse in flowers than in leaves. Without needing to maintain high rates of transpiration, flowers rely on other hydraulic traits, such as high hydraulic capacitance, to maintain turgor pressure. As a result, instead of employing a metabolically expensive but durable carbon (C)-based skeleton, flowers may rely predominantly on a metabolically cheaper, hydrostatic skeleton to keep their structures on display for pollinators, which has important implications for both the costs of reproduction and the biomechanical performance of flowers, particularly during drought.

摘要

维持水平衡一直是塑造叶片形态和功能进化的关键限制因素。然而,作为异养且相对短命的花,可能不受相同的生理和发育因素的限制。我们测量了 22 个物种的叶片和花朵的压力-体积曲线得出的生理参数,以描述花朵水力特征的多样性,并确定花朵是否受到与叶片相同的限制。与叶片相比,花朵具有较高的饱和含水量,这是叶片和花朵水力容差的一个强有力预测因子。主成分分析表明,花朵占据了比叶片更多维特征空间的不同区域,并且花朵的水力特征比叶片更为多样。由于不需要维持高蒸腾速率,花朵依赖于其他水力特征,例如高水力容差,来维持膨压。因此,花朵可能不会采用代谢昂贵但耐用的碳(C)基骨架,而是主要依赖代谢成本更低的静水骨架来保持结构的展示,以吸引传粉者,这对繁殖成本和花朵的生物力学性能都有重要影响,特别是在干旱期间。

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