...
首页> 外文期刊>Canadian Journal of Botany >The effects of flooding regime on the rare Atlantic coastal plain species Hydrocotyle umbellata.
【24h】

The effects of flooding regime on the rare Atlantic coastal plain species Hydrocotyle umbellata.

机译:洪水制度对稀有的大西洋沿岸平原物种伞形藻(Hydrocotyle umbellata)的影响。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The hydrological regime on many lakes is changing through climate change, construction of dams, and land-use changes. We examined the effects of flooding regime on growth and development of the endangered semiaquatic species, Hydrocotyle umbellata L. (water pennywort), in a greenhouse experiment. Growth was twice as fast under dry, above-water (terrestrial) conditions as under flood conditions. Depth of flooding (15 or 30 cm) had little impact. Short-term floods at either the middle or end of the growing season were just as damaging as continuous flooding. The decrease in growth under flood conditions was largely due to a temporary reduction in unit leaf rate (growth per unit leaf area) rather than to a reduction in leaf area ratio (leaf area per unit mass). Flooded plants allocated more resources to the production of petioles at the expense of reproductive structures and to a lesser extent, belowground structures. They also produced fewer, larger leaves with more stomata on the upper than on the lower surface. These changes in structure were largely restricted to new leaves produced under flood conditions; most of the mature leaves produced in a terrestrial environment senesced upon flooding. Chemical analysis of tubers produced by plants grown under terrestrial conditions indicates that these structures function in carbohydrate storage. The likely impact of changes in hydrological regime on this endangered species is discussed in light of these findings..
机译:随着气候变化,水坝建设和土地利用变化,许多湖泊的水文状况正在发生变化。在温室实验中,我们研究了淹水制度对濒危半水生物种Hydrocotyle umbellata L.(pennywort)生长和发育的影响。在干旱,水上(陆地)条件下的生长速度是洪水条件下的两倍。淹水深度(15或30厘米)影响很小。生长期中期或中期的短期洪水与持续洪水一样具有破坏性。洪水条件下生长的下降主要是由于单位叶片率(单位叶面积的增长)的暂时降低,而不是叶片面积比(单位质量的叶面积)的降低。水淹的植物将更多的资源分配给叶柄的生产,但要以生殖结构为代价,而在较小程度上是地下结构。它们还产生了较少的,较大的叶片,上部的气孔大于下部的气孔。这些结构变化在很大程度上限于洪水条件下产生的新叶片。在陆地环境中产生的大多数成熟叶片在洪水后会衰老。在陆地条件下生长的植物产生的块茎的化学分析表明,这些结构在碳水化合物的储存中起作用。根据这些发现,讨论了水文状况变化对这一濒危物种的可能影响。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号