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Marine fish farms cause environmental disturbance of sediment due to uneaten food and fish faeces that accumulate on the sea bottom. These products give rise to organic enrichment followed by degradation processes; reduction of level of dissolved oxygen in the bottom water; generation of high levels of sulfides; changes of benthic assemblages and even azoic conditions. The soft bottom benthic communities and, above all, the polychaetes are considered good indicators of environmental perturbations considering their relatively fast changes in diversity and abundance and because their trophic flexibility and life-history traits are considered a pre-adaptation to the condition of disturbed habitats. The aim of the present study is to evaluate the polychaete population changes as a result of organic enrichment produced by a marine fish farm. The study was carried out on a fish farm located in the coastal water of Porto Ercole (Tyrrhenian Sea) with two submersible sea cages and a year production of 180 tonnes. The macrobenthos samples were collected during four campaigns (July and December 2001, May and October 2002). The results showed: 1) a rapid change of the assemblage located beneath the cages related to the fish biomass reared and a high dominance of the opportunistic Capitella spp.; 2) limited sediment disturbance close to cages (20–50 m); 3) no effect in the area 50 m beyond the cages. Two months after the fish harvest and thus reduction of organic enrichment, perturbated assemblages showed signals of recovery like species richness increase and reduction of opportunistic species.  相似文献   
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A possible factor behind the successful use of polychaetes for prawn broodstock diet was investigated. Some steroid hormones in polychaetes have been suspected as being a potential component for prawn reproductive system development. Progesterone (P4) and 17-alpha hydroxyprogesterone (17α-OHP4) were extracted from polychaetes (Perinereis sp.) and female Penaeus monodon broodstock at various maturation stages. Concentration of both hormones was determined using RIA or HPLC. Immature natural polychaetes (2 months old) displayed the highest level of P4 and 17α-OHP4 compared to more mature ones (4, 6 and 8 months old polychaetes) (47.48 ± 6.70 ng P4/mg Protein and 143.74 ± 28.70 ng 17α-OHP4/mg Protein) whereas opposite results were received with cultured polychaetes in which a reverse relationship between P4 and its derivative with polychaete maturation was obtained. Diverse concentrations of both hormones may be linked with other factors such as types of polychaetes, habitats, seasons, and feed intakes. Twenty-four hours in vitro incubation of prawn previtellogenic oocytes with P4 or 17α-OHP4 extracted from polychaetes or with synthetic hormones, significantly increased percentages of vitellogenic oocytes and oocytes with cortical rod compared to the control with no hormones. P4 was more effective in enhancing the final maturation of oocytes while 17α-OHP4 had more effects on vitellogenic oocytes. Synthetic steroid hormones at equal hormone concentrations produced similar results to steroid hormones extracted from natural polychaetes.  相似文献   
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