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首页> 外文期刊>Journal of Applied Phycology >Growth, protein and carbohydrate contents in Ulva rigida and Gracilaria bursa-pastoris integrated with an offshore fish farm
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Growth, protein and carbohydrate contents in Ulva rigida and Gracilaria bursa-pastoris integrated with an offshore fish farm

机译:与近海养鱼场整合的僵硬乌贼和江cil的生长,蛋白质和碳水化合物含量

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Low-technology practices are generally the rule when cultivating marine macroalgae, and they do not necessarily comply with sustainability requirements. When integrated with other marine organisms in land-based setups, seaweed culture can be sustainable also providing environmental benefits. Major challenges of such integrated aquaculture systems, however, are in sea-based setups. The current study examined the growth rates of Ulva rigida and Gracilaria bursa-pastoris, as well as their protein and carbohydrate contents, when exposed to different distances from an offshore, fed-fish cage system. Nutrient levels in seawater were consistently high downstream from the fish cages, significantly enhancing the specific growth rates and cellular contents of starch and soluble protein in these two seaweeds. Specifically, daily maximal growth rates were 17 % day(-1) for U. rigida and 10 % day(-1) for G. bursa-pastoris, maximal starch contents were 22 and 21 %, respectively, and maximal protein contents were on a dry weight basis 7 and 13 %, respectively. When repositioned at low ambient nutrient levels for 48 h, the starch and the carbohydrate levels increased by 129 and 131 % for U. rigida and by 198 and 150 % for G. bursa-pastoris, respectively. Altogether, this study supports implementing future viable mean of sustainable macroalgae cultivation by taking advantage of excessive nutrients released from an offshore fish farm.
机译:在种植海洋大型藻类时,通常应遵循低技术规范,并且不一定符合可持续性要求。当与其他海洋生物整合到陆地环境中时,海藻养殖不仅具有可持续性,而且还带来了环境效益。但是,这种综合水产养殖系统的主要挑战是在海洋环境中。当前的研究检查了当暴露于离岸投饲鱼笼系统不同距离的情况下,僵硬石and和南美楠的生长速度,以及它们的蛋白质和碳水化合物含量。鱼笼下游的海水中营养水平一直很高,这大大提高了这两种海藻中淀粉和可溶性蛋白质的比生长速率和细胞含量。具体而言,僵硬的美罗非鱼的每日最大生长速率为17%(-1),而法氏囊的每日最大生长速率为10%(-1),淀粉的最大含量分别为22%和21%,最大蛋白含量为。以干重计分别为7%和13%。当在低环境养分水平下放置48小时后,硬质U.的淀粉和碳水化合物的含量分别增加了129%和131%,G。bursa-pastoris的淀粉和碳水化合物的含量分别增加了198%和150%。总之,这项研究通过利用从近海养鱼场释放的过量养分来支持实现未来可持续的大型藻类栽培的可行方法。

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