地中海成林大型藻类 Ericaria amentacea 的异地恢复:优化培养物的生长可能不是实地生长的关键

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Marine environmental research Pub Date : 2024-08-31 DOI:10.1016/j.marenvres.2024.106718
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引用次数: 0

摘要

有证据表明,地中海沿岸裸露海域多种海洋森林群落的基础物种--形成冠层的藻类 Ericaria amentacea 在当地和区域性减少,这促使人们努力采用可持续的原生境外技术进行恢复。由于需要平衡养殖维护成本和早期生命阶段对原生栖息地压力因素的易感性,包括温度、流体动力和养分供应的快速、通常是极端的变化,这促使目前的工作重点是创造一种能为幼苗外植打下基础的养殖环境,提高它们的恢复能力,而不是最大限度地提高生长速度。我们测试了:1)较高的培养温度(25 °C)与波浪模拟相结合;2)减少营养负荷(标准方案的 10%)与波浪模拟相结合,相对于既定方案(20 °C、无波浪、高营养培养基)中的最佳生长条件,对培养后和外植后结果的影响。虽然温度和水流的增加对培养苗的生长产生了负面影响,而较高的养分会造成氧化应激,可能与附生植物过度生长有关,但这些影响并没有明显转化为田间的长期生长模式。相反,移栽后最初几天的存活率似乎是恢复潜力的瓶颈,在一个月幼苗存活的基质中,通常会发现四个月后幼苗生长旺盛。反过来,较大的幼苗群也与最初的存活率和未来的生长密切相关。这些结果强调了子代沉降阶段对建立高秧苗密度的重要性,可以通过对供体种群进行物候监测来优化秧苗密度。这些结果还表明,在向本地环境过渡的过程中,控制较少、环境更真实的培养条件(包括引入温和的压力)可能会提高E. amentacea早期生命阶段的存活率,从而为同时降低培养过程中的人力资源成本和扩大规模提供了一种方法。
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Ex-situ restoration of the Mediterranean forest-forming macroalga Ericaria amentacea: Optimizing growth in culture may not be the key to growth in the field

Evidence of local and regional declines in the canopy-forming alga Ericaria amentacea, a foundation species of diverse marine forest communities on exposed Mediterranean coasts, have spurred restoration efforts focused on sustainable ex-situ techniques. The need to balance the costs of culture maintenance and the susceptibility of early life stages to stressors in the native habitat, including rapid, often extreme shifts in temperature, hydrodynamics and nutrient availability, have driven current efforts to create a culture environment that primes seedlings for outplant, increasing their resilience rather than maximizing growth. We tested the effects of 1) higher culture temperature (25 °C) combined with wave simulation and 2) reduced nutrient loads (10% of standard protocol) with wave simulation on post-culture and post-outplant outcomes relative to optimal growth conditions in established protocols (20 °C, no waves, high-nutrient culture medium). While increased temperature and water motion negatively affected seedling growth in culture, and higher nutrients caused oxidative stress likely associated with enhanced epiphyte overgrowth, these effects were not clearly translated into patterns of long-term growth in the field. Instead, survival in the initial days post-outplant appeared to be the bottleneck for restoration potential, where substrates with persisting seedlings at one month were generally found with flourishing juveniles at four months. Larger clumps of seedlings, in turn, were strongly associated with both initial survival and future growth. These results underscore the importance of the zygote settlement phase to establish high seedling densities, which may be optimized by phenological monitoring of the donor population. They also suggest that less-controlled, more environmentally-realistic culture conditions involving the introduction of mild stress may enhance the survival of early life stages of E. amentacea during the transition to the native environment, providing a means to simultaneously reduce human resource costs in culture and move toward scaling up.

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来源期刊
Marine environmental research
Marine environmental research 环境科学-毒理学
CiteScore
5.90
自引率
3.00%
发文量
217
审稿时长
46 days
期刊介绍: Marine Environmental Research publishes original research papers on chemical, physical, and biological interactions in the oceans and coastal waters. The journal serves as a forum for new information on biology, chemistry, and toxicology and syntheses that advance understanding of marine environmental processes. Submission of multidisciplinary studies is encouraged. Studies that utilize experimental approaches to clarify the roles of anthropogenic and natural causes of changes in marine ecosystems are especially welcome, as are those studies that represent new developments of a theoretical or conceptual aspect of marine science. All papers published in this journal are reviewed by qualified peers prior to acceptance and publication. Examples of topics considered to be appropriate for the journal include, but are not limited to, the following: – The extent, persistence, and consequences of change and the recovery from such change in natural marine systems – The biochemical, physiological, and ecological consequences of contaminants to marine organisms and ecosystems – The biogeochemistry of naturally occurring and anthropogenic substances – Models that describe and predict the above processes – Monitoring studies, to the extent that their results provide new information on functional processes – Methodological papers describing improved quantitative techniques for the marine sciences.
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