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保持简单:改善[具体生物名称未给出]的迁地培养以恢复大型海藻森林。

Keep It Simple: Improving the Ex Situ Culture of to Restore Macroalgal Forests.

作者信息

Lokovšek Ana, Pitacco Valentina, Trkov Domen, Zamuda Leon Lojze, Falace Annalisa, Orlando-Bonaca Martina

机构信息

Marine Biology Station Piran, National Institute of Biology, Fornače 41, 6330 Piran, Slovenia.

Jožef Stefan International Postgraduate School, Jamova Cesta 39, 1000 Ljubljana, Slovenia.

出版信息

Plants (Basel). 2023 Jul 11;12(14):2615. doi: 10.3390/plants12142615.

Abstract

Brown algae from genus form dense underwater forests that represent the most productive areas in the Mediterranean Sea. Due to the combined effects of global and local stressors such as climate change, urbanization, and herbivore outbreaks, there has been a severe decline in brown algal forests in the Mediterranean Sea. Natural recovery of depleted sites is unlikely due to the low dispersal capacity of these species, and efficient techniques to restore such habitats are needed. In this context, the aims of our study were (1) to improve and simplify the current ex situ laboratory protocol for the cultivation of by testing the feasibility of some cost-effective and time-efficient techniques on two donor sites of and (2) to evaluate the survival and growth of young thalli during the laboratory phase and during the most critical five months after out-planting. Specifically, the following ex situ cultivation methods were tested: (A) cultivation on clay tiles in mesocosms with culture water prepared by three different procedures (a) filtered seawater with a 0.22 μm filter membrane, (b) filtered seawater with a 0.7 μm filter membrane (GF), and (c) UV-sterilized water, and (B) cultivation on clay tiles in open laboratory systems. After two weeks, all thalli were fixed to plastic lantern net baskets suspended at a depth of 2 m in the coastal sea (hybrid method), and the algal success was monitored in relation to the different donor sites and cultivation protocol. The satisfactory results of this study indicate that UV-sterilized water is suitable for the cultivation of in mesocosm, which significantly reduces the cost of the laboratory phase. This opens the possibility of numerous and frequent algal cultures during the reproductive period of the species. Additionally, if the young thalli remain in the lantern net baskets for an extended period of several months, they can grow significantly in the marine environment without being exposed to pressure from herbivorous fish.

摘要

该属的褐藻形成了茂密的水下森林,这些森林是地中海最具生产力的区域。由于气候变化、城市化和食草动物爆发等全球和局部压力源的综合影响,地中海的褐藻森林数量急剧减少。由于这些物种的扩散能力较低,枯竭区域自然恢复的可能性不大,因此需要有效的技术来恢复此类栖息地。在此背景下,我们的研究目的是:(1)通过在两个供体地点测试一些具有成本效益和省时的技术的可行性,改进并简化当前用于培养该褐藻的异地实验室方案;(2)评估幼体在实验室阶段以及移栽后最关键的五个月内的存活和生长情况。具体而言,测试了以下异地培养方法:(A)在中宇宙中用三种不同方法制备的养殖水在粘土瓦片上进行培养,(a)用0.22μm滤膜过滤的海水,(b)用0.7μm滤膜(GF)过滤的海水,(c)紫外线消毒水;(B)在开放实验室系统中的粘土瓦片上进行培养。两周后,将所有藻体固定在悬挂于沿海海域2米深处的塑料灯笼网篮中(混合方法),并根据不同的供体地点和培养方案监测藻类的生长情况。本研究的满意结果表明,紫外线消毒水适用于在中宇宙中培养该褐藻,这显著降低了实验室阶段的成本。这为该物种繁殖期大量且频繁地进行藻类培养开辟了可能性。此外,如果幼体在灯笼网篮中停留数月,它们可以在海洋环境中显著生长,而不会受到食草鱼的压力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cbd/10386143/03e77e92498a/plants-12-02615-g001.jpg

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