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81.
Normally Chinese mitten crab Eriocheir sinensis were cultured for 2 years, 1 year is cultured from crab larvae to seeds or button sized crab in ponds, tanks or rice fields, the another year is cultured from seeds to market size in ponds, reservoirs or other waters. The present study was conducted to determine the effect of stocking density (0, 3.75, 15, 30 and 60 inds. per m2, respectively) of Chinese mitten crab larvae on rice and crab seed yields in rice-crab culture systems using land-based enclosures (4 m × 7 m, with three replicates for each stocking density) at the Panjin Guanghe Fisheries Co. Ltd, in the Liaohe Delta, China. Zoobenthos biomass, production of crab and rice paddy, and economical profit among the treatments were determined. The experiment showed that zoobenthos biomass in rice-crab culture systems was relatively variant and not significantly correlated to these stocking density. The biomass of aquatic plant declined significantly with increasing stocking density. Specific growth rates (SGR) and survival rates of the crab were significantly higher at the lower stocking density (P < 0.05); in addition, the ratio of precocious crab and total crab significantly increased with the stocking density increasing (P < 0.05); There were not significant effect of presence of crab on yields of rice straw and rice paddy (P > 0.05). Net crab yield and net profit were the highest at the 15 treatment (P < 0.05), however, the net profits among 3.75, 15 and 30 treatments did not show significant difference (P > 0.05) economically. Based on the observations above, a stocking density of 3.75 to 30 inds. per m2 was considered reasonable in rice-crab culture system. 相似文献
82.
David L Mann Tom Asakawa Beverley Kelly Trent Lindsay & Brian Paterson 《Aquaculture Research》2007,38(14):1580-1587
Intensive nursery systems are designed to culture mud crab postlarvae through a critical phase in preparation for stocking into growout systems. This study investigated the influence of stocking density and provision of artificial habitat on the yield of a cage culture system. For each of three batches of postlarvae, survival, growth and claw loss were assessed after each of three nursery phases ending at crab instars C1/C2, C4/C5 and C7/C8. Survival through the first phase was highly variable among batches with a maximum survival of 80% from megalops to a mean crab instar of 1.5. Stocking density between 625 and 2300 m−2 did not influence survival or growth in this first phase. Stocking densities tested in phases 2 and 3 were 62.5, 125 and 250 m−2. At the end of phases 2 and 3, there were five instar stages present, representing a more than 20‐fold size disparity within the populations. Survival became increasingly density‐sensitive following the first phase, with higher densities resulting in significantly lower survival (phase 2: 63% vs. 79%; phase 3: 57% vs. 64%). The addition of artificial habitat in the form of pleated netting significantly improved survival at all densities. The mean instar attained by the end of phase 2 was significantly larger at a lower stocking density and without artificial habitat. No significant effect of density or habitat on harvest size was detected in phase 3. The highest incidence of claw loss was 36% but was reduced by lowering stocking densities and addition of habitat. For intensive commercial production, yield can be significantly increased by addition of a simple net structure but rapidly decreases the longer crablets remain in the nursery. 相似文献
83.
While numerous studies have evaluated intestinal phytase activity in terrestrial monogastric species, little work has been
conducted investigating the enzyme's activity in finfish. This experiment was conducted to determine if hybrid striped bass
Morone saxatilis × M. chrysops possess intestinal phytase activity, and to perform a preliminary characterization of this activity in terms of pH, metal
ion dependence and substrate kinetics. Hybrid bass do exhibit low levels of intestinal phytase activity. The activity has
an acidic pH optimum between 3.5 and 4.5. Low concentrations of Mn2+ slightly enhance this activity. The divalent cations Mg2+ and Zn2+ were shown to either have no effect on the enzyme activity or to be inhibitory, particularly at high concentrations. The
present results indicate that intestinal phytase activity in hybrid bass does follow Michaelis-Menten kinetics, with estimated
Km and Vmax values of 2.5 mM phytate and 4.8 units mg−1 protein, respectively. The physiologic significance of the enzyme's presence in hybrid striped bass is questionable due to
the low activity as compared to terrestrial monogastrics, the acidic pH optimum and the low affinity the enzyme appears to
have for phytate. These observations also raise the question of whether the intestinal phytase activity detected in hybrid
bass is merely a manifestation of non-specific acid phosphatase activity. Further investigation is needed to determine the
practical significance of phytase activity in hybrid bass in terms of phytate phosphorus utilization. Additional experiments
should also be conducted which evaluate intestinal phytase activity in other important aquacultured finfish species.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
84.
85.
不同放养密度对泥螺生长的影响 总被引:1,自引:0,他引:1
试验结果表明:随着泥螺放养密度的增加和养殖时间的推进,底泥总有机碳量减少,底栖硅藻数量有较明显降低。75万个/hm2组个体大(平均壳高1.583 cm),最终的产量也比较高(1129.5 kg/hm2),是比较合理的放养密度。 相似文献
86.
Abstract – Lipid density appears to influence life-history decisions in salmonid fishes. This study shows that parr and smolts of anadromous Atlantic salmon from a south Norwegian river have on average between 30 and 40% higher energy level than corresponding brown trout in spring and summer, which may explain differences in life-history traits between the two species. The higher energy density of young salmon was chiefly due to a 1.8 times higher lipid density in parr and 2.4 times higher lipid density in smolts. The difference was smaller among immature parr in the autumn, with only 1.4 times higher lipid density in salmon than trout. The reason for the decreased difference was probably that the more energy rich salmon parr had attained maturity at the time. Among mature male parr, the somatic energy density was approximately 10% higher in trout than salmon. However, the gonadal energy content was more than twice as high in salmon than in trout. The higher somatic energy allocation in parr of Atlantic salmon probably influences protein growth of the two species in fresh water, and increases the ability of salmon relative to trout to undertake long distance feeding migrations and make large investments in reproduction. 相似文献
87.
88.
89.
The individual growth being regulated by population structure was studied in cultured populations of Senegalese sole (Solea senegalensis Kaup) juveniles. Soles constituting an initial population were individually tagged and their specific growth rates (SGR) registered after two months of growth. Fish were then graded in order to achieve four new subpopulations based in their previous growths and cultured for other additional 60 days. Three subpopulations consisted of individuals that had previously shown an average SGR (% day−1) of 1.04 ± 0.3, 0.66 ± 0.1 and 0.18 ± 0.1, respectively. A fourth sole subpopulation was established from randomly selected juveniles to constitute the ungraded control group. Growth of the three subpopulations originally graded according to high (1.04% day−1), medium (0.66% day−1) and low (0.18% day−1) SGR soles, was always similar (P > 0.05) at any time (close to 0.60% day−1). SGR distributions along time revealed a tendency of the three subpopulations to achieve similar growth rate dispersals to that of the ungraded group after 60 days of culture.The individual growth of sole juveniles was also determined in populations that were subject to increased stocking density and food restriction. Soles stocked at high density (N = 110 fish tank−1; 30.97 ± 0.8 kg m−2) showed an increased growth standard deviation when compared with individuals kept at low density (N = 20 fish tank−1; 6.20 ± 0.2 kg m−2). In contrast, it was found that population growth dispersal was unaffected in soles fed at a daily ration of either 0.25% or 1.0% of their biomass. Minimum consequences on overall size dispersal in terms of ΔCV were found when high stocking and restricted food ration conditions were compared to control groups. Overall results from this work indicate that individual growth of captive juvenile soles was mainly regulated at a population level, existing a strong tendency to achieve a social arrangement in terms of growth. High stocking density and low feeding ration assay suggests that potentially competitive rearing conditions do not contribute to increase population size dispersal during intensive production of S. senegalensis. 相似文献
90.