首页> 外文OA文献 >Influence of Simulated Double-crested Cormorant, \u3ci\u3ePhalacrocorax auritus\u3c/i\u3e, Predation on Multiple-batch Production of Channel Catfish,\u3ci\u3eIctalurus punctatus\u3c/i\u3e
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Influence of Simulated Double-crested Cormorant, \u3ci\u3ePhalacrocorax auritus\u3c/i\u3e, Predation on Multiple-batch Production of Channel Catfish,\u3ci\u3eIctalurus punctatus\u3c/i\u3e

机译:模拟双冠鸬鹚,u p a / / / / / /,,,,,,,,,,,,,,,,,pred pred pred pred pred pred pred pred pred pred pred pred pred pred pred pred pred pred pred

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摘要

The double-crested cormorant, Phalacrocorax auritus, is considered the primary depredating bird species on commercially produced channel catfish, Ictalurus punctatus, in the southeastern USA. We simulated different levels of cormorant predation on losses at harvest and economic effects on channel catfish production in a multiple-batch cropping system. We observed significant (P\u3c0.05) declines in catfish production at increasing levels of cormorant predation in this study. This decline was mitigated by increased individual growth of catfish at higher predation rates (i.e., lower catfish densities). This mitigating effect produced a non-linear relationship with total kg of catfish harvested per pond resulting in a non-linear incremental increase in breakeven price related to predation. Costs of production ($/kg) increased with increasing predation levels up to very high levels of predation with a cumulative maximum increase in breakeven price of $0.143/kg. These results indicate that losses at harvest due to cormorant predation occur immediately but are mitigated in part by compensatory growth of individual catfish. Losses due to cormorant predation in multi-batch systems can be considerable, but there is not a 1:1 relationship between losses and kg of catfish harvested due to compensatory factors.
机译:在美国东南部,双冠cor被认为是商业生产的channel鱼伊卡塔洛斯马尾鱼(Ictalurus punctatus)的主要掠食鸟类。我们在多批次种植系统中模拟了不同水平的cor捕食对收获时的损失以及对channel鱼生产的经济影响。在这项研究中,我们观察到随着increasing捕食水平的提高cat鱼产量显着下降(P \ u3c0.05)。通过以更高的捕食率(即,较低的lower鱼密度)增加of鱼的个体生长,可以缓解这种下降。这种缓解效果与每个池塘捕捞的kg鱼总公斤数之间存在非线性关系,导致与捕食相关的收支平衡价格出现非线性增量增长。生产成本(美元/千克)随着捕食水平的提高而上升,到非常高的捕食水平,盈亏平衡价格的累计最大增幅为0.143美元/千克。这些结果表明,由于cor捕食造成的收获损失立即发生,但由于个别cat鱼的补偿性生长而部分减轻。在多批次系统中,由于cor捕食造成的损失可能是可观的,但是由于补偿因素,损失与捕捞的kg鱼千克之间没有1:1的关系。

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