6 resultados para Polyculture

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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Polyculture of seaweeds alongside fed animal aquaculture is an environmentally friendly means of avoiding eutrophication problem both in land-based and sea-based monoculture systems. Many aspects of such polyculture systems have been described, but little attention has been given to the impact of live seaweeds on the microbiological properties of the water that connects the algae and animals. In this investigation, the Pacific red alga Gracilaria textorii was cultured in a recirculated dual tank system (150 L) with the juvenile abalone Haliotis discus hannai. Dynamic changes of total bacteria (TB) and total Vibrio (TV) in the water of polyculture and monoculture systems were evaluated. Results revealed that (1) level of TB in the polyculture was constantly higher than in the monoculture over a 6.5-day period. While levels of TV in the polyculture was detected to be constantly lower than in the monoculture, (2) integration of G. textorii in the abalone culture changed the Vibrio compositions in the water as judged by the changes of bacteria colony types; (3) application of artificial diet led to dramatic increase of the levels in TB and TV in both systems at 12 h after application in the 24-h test and resulted in selective propagation of Vibrio in the water in the monoculture system; (4) polyculture of G. textorii with juvenile abalone in combination with feeding with live algal diet helped to maintain low levels of TV and the balance of the Vibrio composition; (5) living biomass of G. textorii was effective in preventing propagation of two purified Vibrio strains (V alginolaticus and V logei) in the water. These results provide a general basis of the dynamic changes of levels in TB and TV in a seaweed-abalone polyculture system with or without artificial diet in tanks. (c) 2005 Elsevier B.V All rights reserved.

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应用稳定碳、氮同位素比值法和脂肪酸标志分析法,较为系统地研究了贝藻混养系统中滤食性贝类的食物来源,评估了大型藻类对混养系统及滤食性贝类的物质贡献。主要研究结果如下: 1.综述了典型生态系统中大型藻类和滤食性贝类各自的生态学地位和作用,大型藻类与滤食性贝类不仅在水体营养盐方面存在互利关系,二者在物质循环与收支方面同样具有耦合性,大型藻类提供的颗粒态有机质可以为滤食性贝类提供饵料来源。 2.总结了稳定同位素比值法和脂肪酸标志法在海洋生态系统食物来源及食物网分析中的应用,并建立了两种方法的具体操作规程。 3.分析了栉孔扇贝Chlamys farreri和海带Laminaria japonica混养系统中海带碎屑形成及释放不同阶段的生态学特征,评估了碎屑对扇贝的饵料贡献。海带在6周内释放了自身约27%的碳;碎屑形成及释放过程中C:N比值显著下降,同时伴随着旺盛的细菌降解,碎屑中也发现有大量硅藻类和原生动物存在。稳定同位素分析证实海带碎屑是混养期间扇贝的主要食物来源。 4.查明了春季胶州湾潮间带自然分布的长牡蛎Crassostrea gigas、紫贻贝Mytilus galloprovincialis和湾内浅海筏式养殖栉孔扇贝的可能食物来源。湾内栉孔扇贝饵料组成中浮游硅藻类为最主要部分,同时混杂有陆源有机质和细菌类物质;潮间带自然生长的牡蛎和贻贝饵料组成中,浮游植物占86.2-89.0%,种类组成中除硅藻外还包括一定比例的金藻和甲藻类;潮间带繁盛的孔石莼Ulva pertusa藻床为两种贝类提供了8.7-11.0%的补充食物来源。 5.揭示了桑沟湾贝藻混养海区春、夏季栉孔扇贝饵料来源组成情况及其季节变化,评估了海带养殖区碎屑碳量季节变化及海带来源碳对扇贝组织碳的贡献。结果表明,湾内贝藻混养区碎屑碳量为75.52-265.19 μg l-1,其在水体总颗粒态有机碳中的比例为25.6-73.8%。海带来源碎屑碳对栉孔扇贝组织碳的贡献比例为14.1-42.8%,且与水体碎屑碳比例的季节变化存在极显著相关性(F=0.992, P=0.004)。5月份湾外海带养殖区水体碎屑碳量为110.12-144.71 μg l-1,显著高于湾内无海带区(75.52 μg l-1),湾外养殖的扇贝组织中海带来源碳比例为22.0-24.1%,显著高于湾内单养区扇贝(9.6%)。估算结果表明,桑沟湾每年收获的6967吨(总湿重)栉孔扇贝中,海带提供了约57.1吨碳,换算为海带干物质为219.6吨。脂肪酸标志分析结果表明,2月份至8月份硅藻类在扇贝饵料组成中比例逐渐下降,而细菌类比例逐渐升高。整个采样期间,EPA/DHA比例较低,说明扇贝饵料组成中可能包括高DHA含量的组分。

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沉积物再悬浮作为一个比较普遍的物理现象,对浅海生态系统污染物的生物地球化学循环具有强烈的干扰作用。本研究以我国北方重要养殖海湾——桑沟湾为研究对象,从物理、化学、生物三个角度出发,研究了沉积物再悬浮的发生过程以及再悬浮介质-沉积物的源汇转换角色及其与养殖藻类的关系,构建了波流耦合模型和再悬浮颗粒物浓度预测数学模型。主要研究结果如下: 1)桑沟湾的海湾动力比约为1.54,沉积物具有发生再悬浮的潜在动力条件;推导出波流耦合切应力的计算公式。 2)悬浮颗粒物浓度(SSC)与浊度(NTU)之间符合线性方程SSC=15.908×ln(NTU)+7.0888(n=33,R2=0.7209);碎屑有机碳库是桑沟湾养殖生态系统中最大的有机碳库,占总POC库储量的81.87%。 3)沉积物再悬浮的临界切应力在0.059 N/m2左右,耦合切应力与悬浮颗粒物浓度符合方程= 238.06 SSC + 25.215(n=25,R2 = 0.7298);最大剪切深度可达8.81 cm;桑沟湾沉积物再悬浮通量的数量级在10-5~10-6 kg·m-2·s-1之间,再悬浮临界风速约为5.51 m/s,全年约有171天沉积物处于再悬浮状态;构建了沉积物再悬浮颗粒物浓度预测数学模型。 4)桑沟湾表层沉积物总氮的含量范围313.09~1094.44µg/g,有机氮是总氮的主要形态,平均占总氮的60.86%;交换态氮是无机氮的主要形式,平均占无机氮的71.40%,交换态氮中NO3--N的含量最大;桑沟湾表层沉积物的TOC/TN比值为9.38,表明沉积物中有机质具有混合来源的特征;无机磷是桑沟湾表层沉积物中磷的主要形态,平均占总磷的73.33%,钙结合磷是无机磷的主要赋存形态;表层沉积物中潜在生物有效性磷的含量占总磷的86.54%,具有很强的释磷潜力。桑沟湾重金属的潜在生态危害指数RI约为36.17,表明重金属的潜在生态危害轻微。 5)再悬浮过程中沉积物春季表现为氮磷源,释放溶解无机氮和磷酸盐;夏、秋季表现为氮汇磷源,释放磷酸盐而吸附溶解无机氮;冬季表现为氮磷汇,吸附磷酸盐和溶解无机氮。

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The redlip mullet, Liza haematocheila, is a common species in polyculture as a scavenger in China. Feeding on detritus, redlip mullet transports nutrients from sediments up into the water column and converts them into forms that can be utilized by phytoplankton and affects the relative abundance of detritus and dissolved inorganic nutrients to phytoplankton, zooplankton and other fishes. We used nitrogen and carbon as the indicators in this study to measure the scavenging ability, which means intake of nitrogen or carbon by redlip mullet, and the loss of nutrients. Temperature and body weight significantly affected growth nitrogen, faecal nitrogen and faecal carbon. At a certain temperature, the proportion of growth nitrogen or growth carbon increased while the proportion of excretion nitrogen or respiration carbon decreased with increasing body weight.

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Experiments on growth characters and ecological functions of the macroalgae Gracilaria lemaneiformis, collected from south China, were conducted in polyculture areas of kelp and filter-feeding bivalve in Sanggou Bay in Weihai City, Shandong, in north China from May 2002 to May 2003. The results of 116 days cultivation showed that the average wet weight of alga increased 89 times from 0.1 to 8.9 kg rope(-1), with an average specific growth rate ( based on wet weight) of 3.95% per day. The most favorable water layer for its growth was 1.0 - 1.8 m below the surface in July and August, with an average specific growth rate of 8.2% per day in 30-day experiments. Photosynthetic activity changed seasonally, with an average of 7.3 mg O-2 g dw(-1) h(-1). The maximum rate (14.4 mg O-2 g dw(-1) h(-1)) was recorded in July, or 19.3 mg CO2 g dw(-1) h(-1), while the minimum (0.40 mg CO2 g dw(-1) h(-1)) was in April. This study indicated that the culture of G. lemaneiformis is an effective way to improve water quality where scallops are cultivated intensively.