Department of Integrative Biology, University of California, Berkeley, CA, 94720, USA.
Department of Environmental Science, Policy & Management, University of California, Berkeley, CA, 94720, USA.
New Phytol. 2018 Sep;219(4):1156-1169. doi: 10.1111/nph.15307. Epub 2018 Jun 30.
Contents Summary 1156 I. Introduction 1156 II. How often are leaves wet? 1157 III. The costs of leaf wetting 1157 IV. The real and potential benefits of leaf wetting 1161 V. Wet leaves: costs, benefits and tradeoffs in a changing world 1165 Acknowledgements 1166 References 1166 SUMMARY: An often-overlooked feature of all plants is that their leaf surfaces are wet for significant periods over their lifetimes. Leaf wetting has a number of direct and indirect effects on plant function from the scale of the leaf to that of the ecosystem. The costs of leaf wetting for plant function, such as the growth of pathogens and the leaching of nutrients, have long been recognized. However, an emerging body of research has also begun to demonstrate some very clear benefits. For instance, leaf wetting can improve plant-water relations and lead to increased photosynthesis. Leaf wetting may also lead to synergistic effects on plant function, such as when leaf water potential improvements lead to enhanced growth that does not occur when plant leaves are dry. We identify important reasons why leaf wetting can be critical for plant sciences to not only acknowledge, but also directly address, in future research. To do so, we provide a framework for the consideration of the relative balance of the various costs and benefits resulting from leaf wetting, as well as how this balance may be expected to change given projected scenarios of global climate change in the future.
内容摘要 1156 I. 引言 1156 II. 叶片湿润的频率是多少? 1157 III. 叶片湿润的代价 1157 IV. 叶片湿润的实际和潜在好处 1161 V. 湿叶:在不断变化的世界中的成本、收益和权衡 1165 致谢 1166 参考文献 1166 摘要:所有植物的一个经常被忽视的特征是,它们的叶片在其一生中的大部分时间都处于湿润状态。叶片湿润对植物功能从叶片尺度到生态系统尺度都有许多直接和间接的影响。叶片湿润对植物功能的成本,如病原体的生长和养分的淋失,长期以来一直受到人们的关注。然而,越来越多的研究也开始证明一些非常明显的好处。例如,叶片湿润可以改善植物水分关系,并导致光合作用增加。叶片湿润也可能对植物功能产生协同效应,例如当叶片水分势的改善导致增强的生长时,而当植物叶片干燥时则不会发生这种情况。我们确定了一些重要的原因,说明为什么叶片湿润对于植物科学不仅需要承认,而且需要在未来的研究中直接解决。为此,我们提供了一个框架,用于考虑叶片湿润所带来的各种成本和收益的相对平衡,以及在未来预测的全球气候变化情景下,这种平衡可能会如何变化。