<p>The culture of all-male Chinese mitten crab, <i>Eriocheir sinensis</i>, represents a promising strategy to enhance productivity. However, the lack of optimal stocking density for all-male culture of <i>E. sinensis</i> hinders the development of standard culture protocols. This study aimed to determine the optimal stocking density for all-male culture of adult <i>E. sinensis</i>, based on a comprehensive assessment of culture performance, total edible yield, and economic analysis. All-male juveniles with an initial average weight of 8.67 ± 0.36 g were stocked at four different stocking densities (1, 2, 3, and 6 inds./m<sup>2</sup>) with five replicates for each treatment, and the culture experiment lasted 34 weeks during the grow-out culture period in net-enclosure culture facilities. The results showed that specific growth rate, final body weight (FBW), and survival rate significantly decreased with increasing stocking density (<i>P</i> &lt; 0.05). The meat yield of 6 inds./m<sup>2</sup> treatment was significantly higher than that of the 2 inds./m<sup>2</sup> treatment (<i>P</i> &lt; 0.05), but there was no difference in the hepatosomatic index, gonadosomatic index, and total edible yield among the density treatments (<i>P</i> &gt; 0.05). The total yield per unit varied between 168.24 and 289.31&#xa0;g/m<sup>2</sup>, with the lowest and the highest values at stocking densities 1 ind./m<sup>2</sup> and 6 inds./m<sup>2</sup> treatments respectively. Economic efficiency analysis showed total cost significantly increasing with increased stocking densities (<i>P</i> &lt; 0.05). Total return and net profit were affected by stocking density and peaked at a stocking density of 3 inds./m<sup>2</sup>. The highest break-even yield (BEY) and the lowest return on investment (ROI) were obtained at a density of 6 inds./m<sup>2</sup> (<i>P</i> &lt; 0.05), whereas no significant differences were observed among the 1 ind./m<sup>2</sup>, 2 inds./m<sup>2</sup>, and 3 inds./m<sup>2</sup> treatments. Moreover, the net profit and ROI followed a quadratic regression on the stocking density, with a maximum at 3.3 inds./m<sup>2</sup> and 2.5 inds./m<sup>2</sup>, respectively. Based on the observations above, a stocking density of around 2‒3 inds./m<sup>2</sup> was considered reasonable during the grow-out culture period of <i>E. sinensis</i> in a net-enclosure culture system.</p>

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Optimal stocking density enhances culture performance for all‑male culture of Chinese mitten crab Eriocheir sinensis

  • Guangbao Zhang,
  • Chenwei Fan,
  • Virakbot Hou,
  • Zhijie Zhou,
  • Di Kong,
  • Dawei Zhao,
  • Xugan Wu

摘要

The culture of all-male Chinese mitten crab, Eriocheir sinensis, represents a promising strategy to enhance productivity. However, the lack of optimal stocking density for all-male culture of E. sinensis hinders the development of standard culture protocols. This study aimed to determine the optimal stocking density for all-male culture of adult E. sinensis, based on a comprehensive assessment of culture performance, total edible yield, and economic analysis. All-male juveniles with an initial average weight of 8.67 ± 0.36 g were stocked at four different stocking densities (1, 2, 3, and 6 inds./m2) with five replicates for each treatment, and the culture experiment lasted 34 weeks during the grow-out culture period in net-enclosure culture facilities. The results showed that specific growth rate, final body weight (FBW), and survival rate significantly decreased with increasing stocking density (P < 0.05). The meat yield of 6 inds./m2 treatment was significantly higher than that of the 2 inds./m2 treatment (P < 0.05), but there was no difference in the hepatosomatic index, gonadosomatic index, and total edible yield among the density treatments (P > 0.05). The total yield per unit varied between 168.24 and 289.31 g/m2, with the lowest and the highest values at stocking densities 1 ind./m2 and 6 inds./m2 treatments respectively. Economic efficiency analysis showed total cost significantly increasing with increased stocking densities (P < 0.05). Total return and net profit were affected by stocking density and peaked at a stocking density of 3 inds./m2. The highest break-even yield (BEY) and the lowest return on investment (ROI) were obtained at a density of 6 inds./m2 (P < 0.05), whereas no significant differences were observed among the 1 ind./m2, 2 inds./m2, and 3 inds./m2 treatments. Moreover, the net profit and ROI followed a quadratic regression on the stocking density, with a maximum at 3.3 inds./m2 and 2.5 inds./m2, respectively. Based on the observations above, a stocking density of around 2‒3 inds./m2 was considered reasonable during the grow-out culture period of E. sinensis in a net-enclosure culture system.