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首页> 外文期刊>Journal of Fisheries Science and Technology >Comparison of Phytoplankton Growth and Species Composition in Pangasiid Catfish Monoculture and Pangasiid Catfish/Silver Carp Polyculture Ponds
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Comparison of Phytoplankton Growth and Species Composition in Pangasiid Catfish Monoculture and Pangasiid Catfish/Silver Carp Polyculture Ponds

机译:庞加锡Cat鱼单一养殖和庞加锡Cat鱼/银鲤混养池塘浮游植物生长和物种组成的比较

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摘要

Excessive growth of phytoplankton is a common and severe problem in intensively farmed pangasiid catfish (Pangasius hypophthalmus) culture ponds. It can lead to cyanobacterial blooms, reduced fish growth, bad-tasting fish flesh, and lower market demand. To investigate how to manage undesirable phytoplankton growth, we evaluated three stocking strategies in nine rural fishponds (0.020-0.022 ha) owned by various farmers: a pangasiid catfish monoculture (treatment 1, TI), and pangasiid catfish-silver carp (Hypophthalmichthys molitrix) polycultures at two stocking ratios of 1:1 (treatment 2, T_2) and 2:1 (treatment 3, T_3). The total density of all ponds was approximately 30,000 fishes/ha. Monoculture (T_1) resulted in significantly higher (p < 0.05) nutrient levels (nitrate and phosphate) in ponds than did polyculture (T_2 and T_3). Nutrient loads increased with culture time, resulting in increased growth of phytoplankton, including Cyanophyceae (9 genera), Chlorophyceae (15 genera), Bacillariophyceae(8 genera), and Euglenophyceae (3 genera). The introduction of silver carp as a co-species helped to regulate phytoplankton growth and to improve the water quality of pangasiid catfish culture ponds.
机译:在集约化养殖的gas鱼(Pangasius hypophthalmus)养殖池中,浮游植物的过度生长是一个普遍而严重的问题。它可能导致蓝藻大量繁殖,鱼类生长减少,鱼肉味道不好以及市场需求降低。为了研究如何控制浮游植物的不良生长,我们评估了九种不同养殖者拥有的农村鱼塘(0.020-0.022公顷)中的三种放养策略:pan鱼单一养殖(处理1,TI)和,鱼-白-(Hypophthalmichthys molitrix)两种养料比例为1:1(处理2,T_2)和2:1(处理3,T_3)的混养。所有池塘的总密度约为30,000条鱼/公顷。与混养(T_2和T_3)相比,单养(T_1)导致池塘养分水平(硝酸盐和磷酸盐)显着更高(p <0.05)。营养负荷随着培养时间的增加而增加,导致浮游植物的生长增加,其中包括蓝藻科(9属),绿藻科(15属),芽孢杆菌科(8属)和裸藻科(3属)。引入silver鱼作为共同物种有助于调节浮游植物的生长并改善pan类pan鱼养殖池的水质。

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