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Speed versus endurance tradeoff in plants: Leaves with higher photosynthetic rates show stronger seasonal declines

机译:植物的速度与耐力权衡:叶子较高的光合速率显示出更强的季节性下降

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We tested for a tradeoff across species between plant maximum photosynthetic rate and the ability to maintain photosynthesis under adverse conditions in the unfavorable season. Such a trade-off would be consistent with the observed trade-off between maximum speed and endurance in athletes and some animals that has been explained by cost-benefit theory. This trend would have importance for the general understanding of leaf design, and would simplify models of annual leaf carbon relations. We tested for such a trade-off using a database analysis across vascular plants and using an experimental approach for 29 cycad species, representing an ancient plant lineage with diversified evergreen leaves. In both tests, a higher photosynthetic rate per mass or per area in the favorable season was associated with a stronger absolute or percent decline in the unfavorable season. We resolved a possible mechanism based on biomechanics and nitrogen allocation; cycads with high leaf toughness (leaf mass per area) and higher investment in leaf construction than in physiological function (C/N ratio) tended to have lower warm season photosynthesis but less depression in the cool season. We propose that this trade-off, consistent with cost-benefit theory, represents a significant physio-phenological constraint on the diversity and seasonal dynamics of photosynthetic rate.
机译:我们在植物最大光合速率之间进行了跨越物种的权衡,以及在不利季节的不利条件下保持光合作用的能力。这种权衡将符合观察到的运动员的最高速度和耐力之间的折衷和一些由成本效益理论解释的动物。这种趋势将重视叶片设计的一般理解,并将简化年叶碳关系模型。我们使用穿过血管植物的数据库分析和29种Cycad物种的实验方法测试了这种折衷,代表了一个多元化的常绿叶的古代植物血统。在这两个测试中,有利季节的每种群众或每种区域的光合速率较高与不利季节的较强的绝对或百分比有关。我们解决了基于生物力学和氮气分配的可能机制;患有高叶韧性(叶片的叶片)和叶片施工的投资高于生理功能(C / N比的曲线)倾向于具有较低的温暖季节光合作用但在凉爽的季节抑郁症较少。我们提出这种权衡与成本效益理论一致,对光合速率的多样性和季节性动态表示了显着的物理职业制约因素。

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