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First approach to the characterization of the ecological succession on perforated trapezoidal multi-purpose reef modules: Building climate resilience

机译:一种穿孔梯形多用途礁模块生态继承性能的首先方法:建立气候弹性

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The study reports the colonization and ecological succession of epibenthic communities on perforated trapezoidal Artificial Reef (AR) modules deployed in Vaan Island of Gulf of Mannar, southeast India. These AR communities assist in building climate resilience among the coastal ecosystems, which have faced severe climate change impacts during the last decade. Based on wave dynamics modeling studies, 10,600 modules were deployed in two layers to protect the Island from beach erosion and to enhance biodiversity. Randomly selected modules were subject to continuous monitoring from 2015 to 2020 to understand the ecological succession of the epibenthic communities. Hard corals turned out to be the dominant epibenthic category with 76.01 no.module~(-1)(SE ± 2.16) by 2020. A total of 37 coral species belonging to 16 genera were found inhabiting the modules at the end of five years. The other major epibenthic categories were molluscs, hydroids, sponges, ascidians, octocorals and echinoderms with a total density of 40.44 no.module~(-1)(SE ± 1.41) by 2020. A couple of years after the deployment, when hard corals started to flourish on the AR modules, the density of other epibenthic categories began to decline. A comparison of the numbers of epibenthic organisms on the inner and outer layers of AR modules reveals that the inner layer has a larger epibenthic community. After five years, the AR modules have started to act as coral refugia and are expected to create reef ecosystem analogous to natural reefs. The modules also provide the much needed topographic complexity for the fish to move in. This planned deployment not only helped in reef recovery and enhancement of associated biodiversity in Gulf of Mannar, which is severely impacted by global climate change, but also would serve to enhance the climate resilience of the coral ecosystems by increasing the coral biomass and thereby restoring the ecological services, which help to sustain the livelihood of the dependent small-scale fisher folk.
机译:该研究报告了在印度东南部的Vaan岛V​​aan岛的穿孔梯形人工Reef(AR)模块上殖民化和生态继承。这些AR社区有助于建立沿海生态系统之间的气候恢复力,这在过去十年中面临严重的气候变化影响。基于波动力学建模研究,将10,600个模块部署在两层中,以保护岛屿免受海滩侵蚀并增强生物多样性。随机选择的模块从2015年到2020年持续监测,以了解Epibenthic社区的生态继承。硬珊瑚原来是具有76.01编号的主导癫痫类别,76.01编号〜(-1)(-1)(SE±2.16)到2020年。在五年结束时发现了居住的37种属于16属的珊瑚物种。其他主要的表皮类别是MOLLUSC,氢菌药,海绵,阿霉素,八陶瓷和棘突,总密度为40.44编号〜(-1)(SE±1.41)到2020年。部署后几年,当硬珊瑚时开始在AR模块上蓬勃发展,其他表达式类别的密度开始下降。 AR模块内层和外层上的表皮生物数量的比较显示内层具有较大的癫痫群落。五年后,AR模块已开始充当珊瑚避难所,预计将创建类似于天然珊瑚礁的珊瑚礁生态系统。这些模块还为鱼类提供了众多所需的地形复杂性。这一计划的部署不仅有助于麦克奈尔湾的珊瑚礁恢复和加强相关生物多样性,这受全球气候变化严重影响,也可以提高增强通过增加珊瑚生物量,从而恢复生态服务,恢复生态服务的气候复原力,从而有助于维持依赖小规模渔民民众的生计。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1307-1307|共1页
  • 作者

    G. Mathews; K.D. Raj; R.L. Laju;

  • 作者单位

    Suganthi Devadason Marine Research Institute 44- Beach Road Tuticorin Tamil Nadu 628 001 India;

    Suganthi Devadason Marine Research Institute 44- Beach Road Tuticorin Tamil Nadu 628 001 India;

    Suganthi Devadason Marine Research Institute 44- Beach Road Tuticorin Tamil Nadu 628 001 India;

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