首页> 外文期刊>Marine Environmental Research >Size and density of upside-down jellyfish, Cassiopea sp., and their impact on benthic fluxes in a Caribbean lagoon
【24h】

Size and density of upside-down jellyfish, Cassiopea sp., and their impact on benthic fluxes in a Caribbean lagoon

机译:倒立水母Cassiopea sp。的大小和密度,及其对加勒比泻湖底栖通量的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Anthropogenic disturbances may be increasing jellyfish populations globally. Epibenthic jellyfish are ideal organisms for studying this phenomenon due to their sessile lifestyle, broad geographic distribution, and prevalence in near-shore coastal environments. There are few studies, however, that have documented epibenthic jellyfish abundance and measured their impact on ecological processes in tropical ecosystems. In this study, the density and size of the upside-down jellyfish (Cassiopea spp.) were measured in Codrington Lagoon, Barbuda. A sediment core incubation study, with and without Cassiopea, also was performed to determine their impact on benthic oxygen and nutrient fluxes. Densities of Cassiopea were 24-168 m(-2), among the highest reported values in the literature. Under illuminated conditions, Cassiopea increased oxygen production >300% compared to sediment alone, and they changed sediments from net heterotrophy to net autotrophy. Cassiopea increased benthic ammonium uptake, but reduced nitrate uptake, suggesting they can significantly alter nitrogen cycling. Future studies should quantify the abundance of Cassiopea and measure their impacts on ecosystem processes, in order to further determine how anthropogenic-related changes may be altering the function of tropical coastal ecosystems.
机译:人为干扰可能正在全球范围内增加水母种群。上皮水母由于其固执的生活方式,广泛的地理分布以及在近岸沿海环境中的流行而成为研究此现象的理想生物。然而,很少有研究记录表皮水母的丰度并测量它们对热带生态系统生态过程的影响。在这项研究中,在巴布达的Codrington泻湖中测量了倒置水母(Cassiopea spp。)的密度和大小。进行了有或没有仙后座的沉积物核心孵化研究,以确定它们对底氧和养分通量的影响。仙后座的密度为24-168 m(-2),是文献中报道的最高值。在光照条件下,与单独的沉积物相比,仙后座的氧气产量增加了300%以上,并且将沉积物从净异养转为净自养。仙后座增加底栖铵盐的吸收,但减少硝酸盐的吸收,表明它们可以显着改变氮循环。未来的研究应该量化仙后座的丰度,并测量其对生态系统过程的影响,以便进一步确定与人为因素有关的变化如何改变热带沿海生态系统的功能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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