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Responses of black willow (Salix nigra) cuttings to simulated herbivory and flooding

机译:黑柳(Salix nigra)插条对模拟食草和洪水的响应

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Herbivory and flooding influence plant species composition and diversity in many wetland ecosystems. Black willow (Salix nigra) naturally occurs in floodplains and riparian zones of the southeastern United States. Cuttings from this species are used as a bioengineering tool for streambank stabilization and habitat rehabilitation. The present study was conducted to evaluate the photosynthetic and growth responses of black willow to simulated herbivory and flooding. Potted cuttings were subjected to three levels of single-event herbivory: no herbivory (control), light herbivory, and heavy herbivory; and three levels of flooding conditions: no flooding (control), continuous flooding, and periodic flooding. Results indicated that elevated stomata] conductance partially contributed to the increased net photosynthesis noted under both levels of herbivory on day 30. However, chlorophyll content was not responsible for the observed compensatory photosynthesis. Cuttings subjected to heavy herbivory accumulated the lowest biomass even though they had the highest height growth by the conclusion of the experiment. In addition, a reduction in root/shoot ratio was noted for plants subjected to continuous flooding with no herbivory. However, continuously flooded, lightly clipped plants allocated more resources to roots than shoots. This study provides evidence that it is feasible to use black willow for habitat rehabilitation along highly eroded streambanks where both flooding and herbivory are present. (c) 2005 Elsevier SAS. All rights reserved.
机译:食草和洪水影响许多湿地生态系统中的植物物种组成和多样性。黑柳(Salix nigra)自然发生在美国东南部的洪泛区和河岸带。该物种的插条被用作生物工程工具,以稳定河岸和恢复生境。本研究旨在评估黑柳对模拟食草和洪水的光合作用和生长响应。对盆栽插条进行三级单事件食草:无食草(对照),轻食草和重食草。和三个级别的洪水条件:无洪水(控制),连续洪水和定期洪水。结果表明,在第30天,在两种食草水平下,气孔导度的升高都部分促进了净光合作用的提高。但是,叶绿素含量与观察到的补偿性光合作用无关。根据实验结论,即使遭受高度草食的插也具有最低的生物量,即使它们的高度增长最高。另外,注意到连续放水而没有食草的植物的根/茎比降低。但是,不断泛滥,修剪较浅的植物为根系分配的资源要比芽多。这项研究提供了证据,将黑柳树用于在洪泛和食草同时存在的高度侵蚀的河岸上进行生境恢复是可行的。 (c)2005 Elsevier SAS。版权所有。

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