首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Coral carpets- a novel ecological engineering tool aimed at constructing coral communities on soft sand bottoms
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Coral carpets- a novel ecological engineering tool aimed at constructing coral communities on soft sand bottoms

机译:珊瑚地毯 - 一种新型生态工程工具,旨在在软砂底部构建珊瑚群

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Hard bottom substrates that are the hallmark property of the coral reefs can be expanded by transforming sedimentary areas into engineered reefs. Testing this rationale, we developed here two preset coral-carpet prototypes ('coral sods'; 6 units, each 7.5 m(2)), one containing branching species and one with both coral forms (mixed-units) that were transplanted on a soft bottom area, containing 10 coral species (five branching, five massive; 354 ramets from 30 genotypes and 181 whole-colonies). Ramets from branching genotypes were distributed in central and peripheral coral-sod locations, whereas all massive colonies were put in central locations. The 'coral sod' carpets were set-up at the Eilat, Red Sea nursery, held in place for 2-8 months, then transplanted into a highly hostile soft-bottom area (15 m depth) and monitored for up to 17 months. Results revealed high survival rates for corals in the peripheral/center positions (80-100%; most combinations). A fast increase in ecological volume (EV) was recorded during 447 residency days, up to 112% in EV for Acropora variabilis mixedunits in the peripheral position. There was no statistically significant difference between treatments and sod's locations, except for the Pocillopora. damicornis branching/mixed treatment. At day 514, corals' aerial coverage has increased from 50% at onset to 67.3% for the branching units and to 61.5% in the mixed-units. Larvae released from transplanted Stylophora pistillata corals outperformed those of natal colonies in the two following reproductive seasons, significantly higher in the first reproductive season when compared to the second. Coral recruitment (day 485) was up to 4 times higher in the centers compared to the peripheries, in both coral-sod types. Using gypsum sticks dissipation, we recorded reduced water velocities at lateral and uppermost colonial architectures and in the coral sod centers as compared to peripheries. These results reveal the first steps for improved 'coral sod' units aiming to shape sandy tropical areas into flourishing coral reef sites.
机译:作为珊瑚礁的标志性的硬底基板可以通过将沉积区域转化为工程珊瑚礁来扩展。测试这一理由,我们在这里开发了两个预设的珊瑚地毯原型('珊瑚素SOD'; 6个单位,每个7.5米(2)),一个含有分支物种,一个含有珊瑚形式(混合单元)的一个含有分枝物种软底部区域,含有10个珊瑚物种(五个分支,五个巨大; 354个基因型和181个全菌落)。分支基因型的振铃分布在中环和外周珊瑚 - SOD位置,而所有大规模的菌落都被放入中心位置。 “珊瑚草皮”的地毯在艾尔特,红海苗圃中设置为2-8个月,然后移植到高度敌对的软底部(深度深度)中,监测长达17个月。结果显示外围/中心位置中珊瑚的高生存率(80-100%;大多数组合)。在447个居住天期间记录了生态体积(EV)的快速增加,在外围位置的Acropora Variabilis混合器中高达112%。治疗和草皮的地点之间没有统计学上显着差异,除了猪肉。 Damicornis分支/混合治疗。在第514天,珊瑚的空中覆盖率从分支单元的开始增加到67.3%,混合单元中的61.5%。幼虫从移植的Tuthophora Pistillata珊瑚释放出来的羊皮中的出现在两次繁殖季节中的生育季节中的菌群,在第一次生殖季节的比较时显着更高。珊瑚招募(第485天)与珊瑚-SOD类型的外周相比,中心的中心高达4倍。使用石膏棒耗散,我们在横向和最上层殖民地架构和珊瑚草皮中心的速度减少了减少的水速。这些结果揭示了改进的“珊瑚草皮”单位的第一步,旨在将砂质热带地区塑造成繁华的珊瑚礁位点。

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