Rainwater uptake in conifer twigs: Five experiments tell a story of absorption, storage, and transport.

IF 5.6 2区 生物学 Q1 PLANT SCIENCES
Alana R O Chin, Arthur Gessler, Paula Guzmán-Delgado, Rubén D Manzanedo, Matthias Saurer, Janneke Hille Ris Lambers
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Abstract

While evidence supports the idea that a portion of the many raindrops that fall onto a forest canopy may be directly absorbed by the twigs they lands on, we do not know how much is absorbed, how it enters the twig, or what internal path it might take on its way to the xylem. Using a diverse series of 5 experiments encompassing isotopic labeling, fluorescent tracers, rehydration kinetics, synchrotron-based X-ray tomographic microscopy, and thermal imaging, we follow the fate of rainwater from initial contact with the twig to its distribution to adjacent tissues. We provide conclusive, multi-pronged evidence of surface water-absorption into the xylem of year-old conifer twigs with incomplete bark development. Additionally, we demonstrate a surface capillary phase, mixed apoplastic and symplastic internal routes, and the strong influence of intercellular airspace as a hydraulic capacitor across multiple tissues. We show that twigs are capable of rapid, large-volume water absorption which may help trees take advantage of crown-wetting events and support the repair of hydraulic damage from frost and drought. Forecasting the impacts of climatic stress on different tree species will benefit from understanding the importance, and tissue-level specifics, of this critical water-acquisition pathway. Our works tells a detailed story of rain absorption and lays a foundation for future trait-based research into among-species differences in absorption capacity.

针叶树树枝的雨水吸收:五个实验讲述了吸收、储存和运输的故事。
虽然有证据支持这样一种观点,即落在森林树冠上的许多雨滴中的一部分可能会被它们降落的树枝直接吸收,但我们不知道有多少被吸收了,它是如何进入树枝的,或者它可能通过什么内部路径进入木质部。通过同位素标记、荧光示踪剂、再水化动力学、基于同步加速器的x射线层析显微镜和热成像等5个不同系列的实验,我们跟踪了雨水从最初接触树枝到分布到邻近组织的命运。我们提供了结论性的、多管齐下的证据,证明树皮发育不完全的1年针叶树树枝的木质部吸收了表面水分。此外,我们还展示了表面毛细相,混合的外胞和共塑内部路线,以及细胞间空间作为跨多个组织的水力电容器的强大影响。研究表明,树枝能够快速、大量地吸收水分,这可能有助于树木利用冠湿润事件,并支持霜冻和干旱造成的水力损害的修复。预测气候胁迫对不同树种的影响将受益于理解这一关键的取水途径的重要性和组织水平的特征。我们的工作详细讲述了雨水吸收的故事,为未来基于性状的物种间吸收能力差异研究奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Experimental Botany
Journal of Experimental Botany 生物-植物科学
CiteScore
12.30
自引率
4.30%
发文量
450
审稿时长
1.9 months
期刊介绍: The Journal of Experimental Botany publishes high-quality primary research and review papers in the plant sciences. These papers cover a range of disciplines from molecular and cellular physiology and biochemistry through whole plant physiology to community physiology. Full-length primary papers should contribute to our understanding of how plants develop and function, and should provide new insights into biological processes. The journal will not publish purely descriptive papers or papers that report a well-known process in a species in which the process has not been identified previously. Articles should be concise and generally limited to 10 printed pages.
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