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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Diversity and biomass dynamics of marine algae in Biosphere II's tropical reef macrocosm
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Diversity and biomass dynamics of marine algae in Biosphere II's tropical reef macrocosm

机译:生物圈二号热带礁大世界中海藻的多样性和生物量动态

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Macrocosms can be used to study complex ecological processes in a small physical space,but the validity of the studies depends on how well the macrocosm simulates natural ecosystem functions.We measured the standing crop of macroalgae and nutrient levels over 4 years in the Biosphere II macrocosm tropical reef biome at Oracle,Arizona.Ten years after this system was closed to outside introductions,it still contained 35 species of macroalgae,within the range found on natural reefs.The macroalgae community was recognizable as a late-successional,coralline algal turf community similar to those found in the low-energy portions of inner tropical reefs.However,biomass values for the most abundant species were in a continual state of flux over the study,and no single species was dominant.Nutrient levels were also unexpectedly dynamic,with dissolved inorganic phosphorous,nitrate,and ammonium each varying by a factor of 10 over the study.The dynamic nature of biomass and nutrient cycles would make it difficult to use this macrocosm for controlled studies.On the other hand,the community dynamics in the Biosphere II ocean may shed light on processes controlling biodiversity and succession on natural reefs.The apparently chaotic swings in biomass and nutrient levels suggested that the paradox of the plankton,which explains how seemingly uniform aquatic environments can support a wide diversity of planktonic forms,may apply to reef macroalgae as well.The Biosphere II ocean biome demonstrates that a diverse macroalgal reef community can be restored relatively easily,supporting the feasibility of actively restoring damaged natural reefs.Macrocosms such as this could be used in manipulative experiments to study the effects of nutrient enrichment and herbivory on coral-algal phase shifts.
机译:宏观可以用来研究在一个很小的物理空间中的复杂生态过程,但是研究的有效性取决于宏观如何模拟自然生态系统的功能。我们在生物圈II宏观中测量了4年以上常绿藻类和营养水平该系统对外界引入封闭十年后,它仍然包含35种大型藻类,处于天然礁石上的范围之内。大型藻类群落被认为是晚继珊瑚礁藻类草坪群落。类似于热带内礁低能部分中发现的那些。但是,在整个研究过程中,最丰富的物种的生物量值处于连续变化的状态,并且没有单个物种占优势。营养水平也出乎意料地动态,随着在研究中,溶解的无机磷,硝酸盐和铵的变化各为10。生物量和养分循环的动态性质会另一方面,生物圈二号海洋中的群落动态可能揭示了控制生物多样性和自然礁石演替的过程。生物量和营养水平的明显波动表明这一悖论浮游生物的研究解释了看似均匀的水生环境如何能够支持多种浮游生物形式,也可能适用于珊瑚礁大型藻类。生物圈二号海洋生物群落表明,可以相对容易地恢复多样化的大型藻类生物群落,从而支持了诸如此类的大自然可以用于操纵实验,研究营养物质的丰富和食草性对珊瑚-藻类相移的影响。

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