Integrated System of Red Seaweed Kappaphycus alvarezii (Rhodophyta, Solieriaceae) and Clownfish Amphiprion ocellaris (Perciformes, Pomacentridae): An Experimental Study

A. F. G. D. Santos, Nathalia da Silva Lucarevschi, Eshefison Rodrigues Batista, Simone Gomes Ferreira
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Abstract

: This study aimed to analyse the integrated system of red seaweed Kappaphycus alvarezii and clownfish Amphiprion ocellaris . Experiments were performed in a 45 L aquarium under the following controlled conditions: temperature 22 ◦ C, dissolved oxygen 5 mg/L, salinity 30, and photoperiod 12 h light. There were 10 fish per aquarium, fed with commercial food. Four treatments were tested (three replicates per treatment): (1) only fish (control); (2) fish with 250 g seaweed; (3) fish with 500 g seaweed; and (4) fish with 750 g seaweed. Weekly seaweed and fish were weighed and measured, and ammonia (NH 3 ), nitrite (NO 2 ), nitrate (NO 3 − ), phosphate (PO 43 − ), and phosphorus (P) were analyzed. The total weight (g) (TW) of fish differed over time (F = 0.00) and between treatments (F = 2.84; p = 0.03). Higher TW ( ± 0.75 g) occurred in treatment 3 and after 14 days did not significantly differ from the end of the experiment ( p < 0.01). The total length of fish (cm) did not differ significantly over time (F = 0.64; p = 0.66) or between treatments (F = 0.34; p = 0.79). The relative growth rate of seaweed (RGR) did not differ over time ( p > 0.12). There was a significant interaction between the nutrients present in the water by treatment and time (F = 3.59; p = 0.00). The nutrient removal efficiency (NRE) of NH 3 and NO 2 was higher in treatments 3 and 1, respectively, reaching ± 30% at 14 days ( p < 0.001), and from the 21st day of the experiment, the values were close to zero, with no significant difference between treatments up to 35 days ( p > 0.90 for both). The NRE of NO 3 − increased by 2% at 28 days of the experiment, with no significant difference between treatments ( p > 0.07). The NRE of P was ± 25% at 14 days and was not different between treatments 1 and 2. The NRE of PO 43 − reached 14% at 21 days for treatments 1, 2 and 3 ( p < 0.001). The control showed lower values for the NRE of NH3, NO 3 − , P, and PO 43 − compared to the treatments, but the NRE of NO 2 increased in 14 days. It is concluded that a greater abundance of K. alvarezii helps in water quality and contributes to the total weight of clownfish between 14 and 21 days.
红藻(红藻目,水龙鱼科)与小丑鱼(鱼形目,鱼心科)整合系统的实验研究
本研究旨在分析红藻和小丑鱼的整合系统。实验在45 L水族箱中进行,控制条件为:温度22◦C,溶解氧5 mg/L,盐度30,光周期12 h。每个鱼缸里有10条鱼,用商业食品喂养。试验了4个处理(每个处理3个重复):(1)只试验鱼(对照);(2)鱼配海藻250克;(3)鱼配500克海藻;(4)鱼加750克海藻。每周对海藻和鱼类进行称重和测量,并分析氨(nh3)、亚硝酸盐(no2)、硝酸盐(no3−)、磷酸盐(po43−)和磷(P)。鱼的总重(g) (TW)随时间(F = 0.00)和不同处理(F = 2.84;P = 0.03)。试验第3天和第14 d时TW升高(±0.75 g),与试验结束时比较差异无统计学意义(p < 0.01)。鱼的总长度(cm)随时间变化无显著差异(F = 0.64;p = 0.66)或处理间差异(F = 0.34;P = 0.79)。海藻的相对生长率(RGR)不随时间变化而变化(p > 0.12)。处理后水体中存在的营养物质与时间之间存在显著的交互作用(F = 3.59;P = 0.00)。处理3和处理1对nh3和no2的养分去除率(NRE)较高,在第14天达到±30% (p < 0.001),从试验第21天开始,NRE接近于零,直至35 d,处理间无显著差异(p > 0.90)。试验第28天no3−的NRE提高了2%,处理间差异无统计学意义(p > 0.07)。第14天,P的NRE为±25%,处理1和处理2之间无差异。第1、2、3组PO 43−的NRE在第21天达到14% (p < 0.001)。对照组NH3、no3−、P和po43−的NRE较处理低,no2的NRE在14 d内增加。综上所述,在14 ~ 21天时,高丰度的K. alvarezii有利于改善水质,并对小丑鱼的总重有贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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