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首页> 外文期刊>Japan agricultural research quarterly >Growth Pattern of the Tropical Sea Cucumber, Holothuria scabra, under Captivity
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Growth Pattern of the Tropical Sea Cucumber, Holothuria scabra, under Captivity

机译:圈养条件下热带海参荷叶草的生长模式

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摘要

The growth of the juvenile sea cucumber, Holothuria scabra, was studied under captivity to elucidate the growth variation pattern and determine the best-fit growth model to estimate age- and size-specific growth rates. Individual growth was extremely variable, with some individuals below the mean initial weight and some expanding their original body length (L) and weight (W) by up to 6.4 and 156 times, respectively; during 84 days of culture starting at 127 days of age. Some of the smallest individuals showed a higher condition factor than larger individuals in the presence of ample food, indicating that lack of food may not be the only impediment to growth. Among the three growth models compared (von Bertalanffy, Gompertz and logistic), the Gompertz model was considered optimal to express H. scabra growth; both in L and W. The age- and size-specific daily growth rate for L and W up to 365 days of age, as estimated by the Gompertz model, had a range of two and nine orders of magnitude in L (0.035 ? 0.96 mm/day) and W (3.4 × 10-7 ? 3.5 g/day), respectively. Use of the Gompertz model over the linear model, which tends to overestimate growth rates, is encouraged to estimate the growth of H. scabra more accurately.
机译:在圈养条件下研究了少年海参Holothuria scabra的生长,以阐明生长变异模式并确定最合适的生长模型,以估计年龄和大小特定的增长率。个体的生长变化很大,有些个体的平均体重低于平均初始体重,有些个体的原始身长(L)和体重(W)分别增加了6.4和156倍。从127天的年龄开始培养84天。在食物充足的情况下,一些最小的个体比较大的个体表现出更高的条件因子,这表明缺乏食物可能不是生长的唯一障碍。在三种比较的生长模型(冯·贝塔兰菲,贡珀兹和逻辑模型)中,贡珀兹模型被认为是表达H鳞草生长的最佳模型。根据Gompertz模型估算,直到365天,L和W的年龄和大小特定的日增长率(根据Gompertz模型估算)在L范围内分别为两个和九个数量级(0.035?0.96)。毫米/天)和宽(3.4×10-7?3.5克/天)。鼓励使用Gompertz模型而不是线性模型,因为线性模型往往会高估增长率,因此可以更准确地估算s。scabra的生长。

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