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1.
虾池生态系能流结构分析   总被引:3,自引:1,他引:2  
阐述虾池生态系的能流结构,将虾池生态系分为两个亚系统:浮游亚系统与底栖亚系统,在浮游亚系统中有3个功能群,底栖亚系统中有5个功能群。系统的能量来源为人工投饵和太阳光。研究分析两个亚系统中各个生物状态变量的公式表达及其在系统中的功能,阐明了能量在系统中的流动方向和公式表达。浮游亚系统与底栖亚系统通过POC的沉降过程以及营养盐在沉积物中的生物地化循环再生后,经由水/底界面进入水体而耦合。  相似文献   

2.
韩庆喜  刘东艳 《海洋通报》2014,33(3):352-359
近海的双壳类筏式养殖,通过对海域水文、物理、化学条件的改变,从在对海岸带水域的生态系统产生影响。滤食性双壳类能够摄食有机质颗粒和浮游植物,产生的粪便或假粪能够加剧生物沉降,造成有机质在海底表面的大量聚集,造成养殖海域的有机质污染。养殖设施也会引起当地水文状况和海流的改变。双壳类养殖筏架对大型底上动物来说,可起到人工鱼礁相似的作用,为众多生物提供了栖息场所和庇护场所,增加了大型无脊椎动物和底层鱼类可利用的饵料数量,保护底上动物免受渔业捕捞等强烈扰动的影响,提高底栖鱼类和大型无脊椎动物的丰度和生产力。而对于底内动物来说,双壳类养殖对底栖群落的结构和组成的影响与海流的强度呈负相关,当养殖海域的海流强度达到一定程度,大量有机质将会被带走,对底内群落的影响将可以忽略不计,但在海流能量较小的情况下,有机质的富集将会造成底栖群落多样性和丰度的降低。正确的养殖选址结合科学的生态容量评估,以及多营养层次的综合养殖是维持双壳类养殖健康可持续发展的重要保证。  相似文献   

3.
底栖动物的生物沉降作用能够促进悬浮颗粒物的沉降过程以及海水-沉积物界面间的营养盐交换,因此可以净化水体中的悬浮物、溶解性有机碳和营养盐等;底栖动物的生物扰动作用可以改变沉积物的物理化学性质,影响水层-沉积层的物质交换和能量传递,因此通过影响沉积物的氧化还原条件、菌群结构以及污染物的降解特性来促进污染物的降解转化过程;同时,底栖动物的摄食及消化过程可以提高污染物的生物可利用性以及外源酶的生物转化,从而对海洋环境修复产生促进作用。  相似文献   

4.
南麂列岛海洋自然保护区潮间带小型生物初步研究   总被引:3,自引:3,他引:3  
20 0 1年 10月对浙江省南麂列岛国家海洋自然保护区潮间带进行小型生物采样调查。大沙岙沙滩小型生物丰度较低 ,中潮带为 2 91.9ind· 10 cm-2 ,低潮带为 5 16.8ind· 10 cm-2 。线虫是最优势类群 ,线虫 /桡足类比分别为 3.2 7和 1.0 6,表明沙滩环境质量良好 ,未受到有机质污染。岩相潮间带有 4种大型底栖海藻。附植小型生物平均丰度为 36.1ind· g-1dw algae,桡足类为最优势类群。附植大型底栖动物丰度 4 4 .6ind· g-1dwt algae,大于小型生物丰度。  相似文献   

5.
刘晓收  赵瑞  华尔  路璐  张志南 《海洋通报》2014,33(3):283-292
2009年6月在莱州湾9个站位采集的大型底栖动物样品的研究结果,并与历史资料进行了对比。共鉴定出大型底栖动物96种,总平均丰度为1 902.21 ind./m2,总平均生物量为8.30 g/m2,其中软体动物占据绝对优势。基于丰度进行的CLUSTER聚类分析和MDS标序图将研究海域划分为3个组,与沉积物底质类型显著相关。研究海域底质类型包括粘土质粉砂、砂、砂质粉砂、粉砂质砂4种。通过BIOENV分析,影响其群落结构的主要环境因子有水深、底温、沉积物偏态、中值粒径、有机质、叶绿素含量。多样性指数反映各站位生物多样性差异较大。ABC曲线显示大部分站位群落结构受到中等程度扰动,只有2个站位显示未受扰动。通过与历史数据的对比发现,平均丰度较1980年代和1990年代有所增加,但物种数目明显减少。以上结果表明莱州湾近年来受人类活动影响较大,出现了不同程度的污染,导致大型底栖动物的群落结构发生变化及生物多样性下降。  相似文献   

6.
广西的红树林资源及其可持续利用   总被引:25,自引:0,他引:25  
梁士楚 《海洋通报》1999,18(6):77-83
简述了广西红树林的生境条件和群落类型。从植物、浮游生物、底栖硅藻、大型底栖动物、游泳鱼类、昆虫、鸟类等方面,对红树林区的生物类群进行了统计和论述。同时对红树林资源的特点,合理开发和可持续利用进行了初步探讨。  相似文献   

7.
崂山湾潮间带食物网结构的碳稳定同位素初步研究   总被引:14,自引:3,他引:14  
通过对1993年8月和1994年2和5月在崂山湾潮间带采集的底栖生物碳稳定同位素组成(δ13C值)的分析,发现该区底栖动物的主要食物来源以δ13C值大致可划分为4类:水体中的颗粒有机质(POM)、底栖硅藻、大型底栖藻类和底泥中的有机物质(SOM).研究结果表明,底栖动物的碳稳定同位素组成与其所摄食的食物的碳稳定同位素组成有密切的关系,因此,底栖动物的碳稳定同位素组成可以用于研究其食物来源.碳稳定同位素数据证实,双壳类等滤食性动物的食物来源主要是POM;甲壳动物的δ13C值的范围较大,证明其食物来源的多样性;底栖硅藻是多数腹足类食物来源的相当重要组成部分.用碳稳定同位素示踪剂对该区底栖-水体耦合作用的初步研究表明,水体中的POM是底栖动物的重要食物来源,但底泥中有机质和底栖硅藻也是许多底栖动物食物来源的相当重要的组成部分.  相似文献   

8.
为了解胶州湾养殖水域和自然水域的底栖动物生态状况,尤其是水产养殖等人类活动对胶州湾生态系统的影响,在胶州湾菲律宾蛤仔养殖区内外选取六个典型站位,于2011年4月进行了大型底栖动物和环境因子的采样,分析比较了养殖区内外大型底栖动物的丰度、生物量、群落结构和生物多样性等群落特征以及与环境因子的关系。本研究共采到大型底栖动物77种,其平均丰度为1154.44 ind./m~2,平均生物量为369.33 g.wwt/m~2。研究结果表明的养殖区内外大型底栖动物的优势种、丰度、生物量和群落结构差别较大。根据CLUSTER聚类结果,可以将大型底栖动物群落划分为3个站群。与历史数据相比,本研究6个站位中自然水域的站位丰度、生物量降低,而养殖水域内的站位丰度、生物量较高。菲律宾蛤仔养殖活动压力已造成胶州湾养殖区域及其邻近自然海域的大型底栖动物群落特征发生了一定变化。  相似文献   

9.
浮游生物和大型底栖动物参与水体营养物循环, 影响着污染物的迁移转化与沉积物的稳定性, 对海洋生态系统的能 流和物流起着至关重要的作用。为系统了解渤海海域浮游生物和大型底栖动物多样性与优势种的时空变化状况, 本研究以生 态监测调查结果为依据, 站位重点布设在渤海海域重要的河口、海湾、海岛周边海域以及渤海中部海域, 同时结合相关历史 资料, 对渤海海域的浮游生物和大型底栖动物的种类组成 、密度 、生物多样性指数 、优势种等的变化趋势进行了分析。从 2016—2018 年浮游植物的细胞密度空间分布可以看出, 细胞密度均值在滦河口-北戴河海域相对较高, 而在锦州湾 、莱州湾 和庙岛群岛海域相对偏低。渤海浮游植物多样性在各调查海域之间相差不大, 但渤海湾海域的浮游植物多样性呈现明显的逐 年下降趋势。浮游动物细胞密度在滦河口-北戴河海域相对偏高, 其余各海域差别不大。2016—2018 年, 浮游动物多样性在 双台子河口 、渤海湾 、黄河口海域明显增加, 大型底栖动物群落物种数在渤海湾 、黄河口 、莱州湾和庙岛群岛均呈减少趋 势, 大型底栖动物多样性在锦州湾 、滦河口-北戴河的水平偏低, 在渤海湾有所下降, 耐污能力较强的多毛类成为目前渤海 近岸海域大型底栖动物最主要的优势类群。通过与历史数据对比可知, 2014—2018 年, 渤海浮游植物及浮游动物的群落种 类数、密度 、多样性指数总体变化不大, 主要优势种基本一致, 但大型底栖动物种类数 、生物量和密度总体上呈减少趋势, 主要优势种类由软体动物转变为环节动物多毛类。本研究丰富了渤海海域浮游生物和大型底栖动物群落的研究, 并为渤海生 态系统的健康评价与生物多样性保护提供了数据支持, 对合理开发海洋生物资源具有一定的指导意义。  相似文献   

10.
研究利用中型生物扰动系统 (AFS)对胶州湾薛家岛潮间带菲律宾蛤仔 (Ruditapesphilippinarum)养殖断面和非养殖断面的中潮和低潮 4个站位的生物沉降和沉积物的再悬浮过程进行测定。结果表明生物沉降作用与大型滤食性双壳类动物 -菲律宾蛤仔的丰度呈显著的正相关关系 (r=0 .984 ,P<0 .0 5 ) ,养殖断面的生物沉降作用要明显地大于非养殖断面。在菲律宾蛤仔的低密度区 ,生物沉降的作用小于自然沉降 ,而在其养殖的高密度区 ,生物沉降率约为自然沉降率的4倍。薛家岛潮间带沉积物的临界侵蚀速率为 17.4~ 2 0 .4 cm/ s。沉积物的稳定性与所测生物因子的关系不密切 (P>0 .0 5 )。作者推测两个断面中潮站位沉积物的相对易侵蚀性 ,可能是由于此处环境受到某些大型动物及高潮带人工养殖带来的扰动所致  相似文献   

11.
The identification of energy sources, pathways and trophic linkages among organisms is crucial for the understanding of food web dynamics. Stable isotopes were used to identify the trophic level of food web components and track the incorporation of organic matter of different origins in the coastal ecosystem adjacent to the Tagus estuary. It was shown that the river Tagus is a major source of organic carbon to this system. Also, the wide difference in δ13C among the primary consumers allowed the identification of the pelagic and the benthic energy pathways. The maximum trophic level observed was 2.4 for Sepia officinalis. This value is indicative of a short food web. It was concluded that the diet of the upper trophic level species relies directly on the lower food web levels to a considerable extent, instead of relying mostly on intermediate trophic level species. Moreover, the δ15N values of primary consumers were very close to that of particulate organic matter, probably due to poorly known processes occurring at the basis of the food web. This lowers the trophic length of the whole food web. Reliance on benthic affinity prey was high for all upper trophic level secondary consumers.  相似文献   

12.
Stable isotopes were used to investigate contributions of autochthonous (i.e. benthic: epilithon and macroalgae) and allochthonous (i.e. pelagic: phytoplankton) organic matter sources to the diet of suspension-feeders, grazers and predators associated to small reef-pools (cuvettes) created by the reef-building species Dendropoma petraeum in the north-western coast of Sicily (Italy). Contributions of potential food sources were calculated using Bayesian mixing-models and integrated to a multivariate approach to highlight the diversity of C and N pathways within Dendropoma cuvettes. Both pelagic and benthic organic matter sources were exploited by benthic consumers, although clear differences were revealed in the various species depending on their feeding strategy. Three different trophic pathways were identified: one based mainly on phytoplankton, one based mainly on macroalgae and a third one mainly on epilithon. Suspension-feeders seemed to rely mainly on allochthonous organic matter sources, while grazers showed a wider diet spectrum. Predators revealed a high specialization in each of the three food chains and showed a distinct reliance on organic matter originated from benthic or pelagic sources. Stable isotopes evidenced here a marked differentiation of the trophic niche within the cuvette-associated community, which allows minimizing competition in very space-limited conditions.  相似文献   

13.
Abstract. ω13C and ω15N of organic matter sources and consumers were employed to analyse trophic differentiation between a benthic consumer, Gobius niger (L., 1758) (Pisces, Osteichthyes), and a pelagic consumer, Atherina boyeri (Risso, 1810) (Pisces, Osteichthyes) in a Mediterranean coastal lagoon (Lake of Sabaudia) in winter and summer 1999. Trophic differences between the two species throughout the two sampling periods were related to the environmental trophic condition (i. e. nutrient and phytopigment concentrations). Although these two fish have different habitats, they both exploited benthic organisms, above all in summer. When the nutrient and phytopigment concentrations were higher (summer), the most abundant benthic organisms were the main food sources for both species. In winter A. boyeri apparently shifted its feeding preferences to include zooplankton, confirming its opportunistic feeding strategy. Par-ticulate organic matter and algae seemed to play the main trophic role in the food web structure. Benthic invertebrates used both sources, while zooplankton seemed to rely exclusively on the particulate fraction. The overlapping and very depleted signatures of sedimentary and particulate organic matter highlights a strong link between sediments and water column, rarely observed in other aquatic ecosystems using stable isotopes. Such a finding further substantiates the importance of particulate organic matter as a food source in the study area.  相似文献   

14.
The shallow continental shelves and slope of the Amerasian Arctic are strongly influenced by nutrient-rich Pacific waters advected over the shelves from the northern Bering Sea into the Arctic Ocean. These high-latitude shelf systems are highly productive both as the ice melts and during the open-water period. The duration and extent of seasonal sea ice, seawater temperature and water mass structure are critical controls on water column production, organic carbon cycling and pelagic–benthic coupling. Short food chains and shallow depths are characteristic of high productivity areas in this region, so changes in lower trophic levels can impact higher trophic organisms rapidly, including pelagic- and benthic-feeding marine mammals and seabirds. Subsistence harvesting of many of these animals is locally important for human consumption. The vulnerability of the ecosystem to environmental change is thought to be high, particularly as sea ice extent declines and seawater warms. In this review, we focus on ecosystem dynamics in the northern Bering and Chukchi Seas, with a more limited discussion of the adjoining Pacific-influenced eastern section of the East Siberian Sea and the western section of the Beaufort Sea. Both primary and secondary production are enhanced in specific regions that we discuss here, with the northern Bering and Chukchi Seas sustaining some of the highest water column production and benthic faunal soft-bottom biomass in the world ocean. In addition, these organic carbon-rich Pacific waters are periodically advected into low productivity regions of the nearshore northern Bering, Chukchi and Beaufort Seas off Alaska and sometimes into the East Siberian Sea, all of which have lower productivity on an annual basis. Thus, these near shore areas are intimately tied to nutrients and advected particulate organic carbon from the Pacific influenced Bering Shelf-Anadyr water. Given the short food chains and dependence of many apex predators on sea ice, recent reductions in sea ice in the Pacific-influenced sector of the Arctic have the potential to cause an ecosystem reorganization that may alter this benthic-oriented system to one more dominated by pelagic processes.  相似文献   

15.
Marine benthic trophic relationships and food web structures may be influenced by benthic–pelagic coupling processes, which could also be intensified by the physical dynamics of marine fronts. In this work, we employed stable isotope (δ13C and δ15N) analysis to investigate the influence of the Southwest (SW) Atlantic shelf-break front (SBF; 38–39°S, 55–56°W; Argentina) on an epibenthic trophic web. Epibenthic organisms were sampled, at depths of ~ 100 m, with a non-selective dredge from a sandy bottom community located in frontal (F) and marginal (M) areas. The SBF position and the chlorophyll-a (chl-a) concentrations were inferred using satellite data of the sea surface temperature (SST) and satellite chl-a concentration, respectively. The most noticeable shifts in stable isotopes between the sampled areas were those of the Patagonian scallop, Zygochlamys patagonica13C), and those of the sea urchin, Sterechinus agassizi15N). Diet analyses inferred from stable isotopes and mixing models demonstrated that the dominant component of this community, Z. patagonica, had variable contributions to higher trophic levels between areas. More importantly, the epibenthic assemblage in F areas showed δ13C-enriched and δ15N-depleted isotopic signatures with respect to the M areas. Collectively, this evidence suggests that frontal dynamics promotes the accumulation of δ13C-enriched phytoplankton in the seabed in F areas, while in M areas the more degraded organic matter becomes more important in the trophic web, decreasing the δ15N isotopic signature of the assemblage. Therefore, the trophic web was sustained by fresher food in F areas than in M areas, demonstrating the role of frontal dynamics in the shaping of these communities.  相似文献   

16.
Benthic food chains of the Amazon (Brazil) and Fly (Papua New Guinea) river deltas and adjacent shelves are compared. Abundance patterns of the major trophic groups (bacteria, meiofauna, and macroinfauna) are similar between regions, with very low densities, or the absence of benthos, within and near the deltas. For muds in the more quiescent areas, benthic abundance and productivity are highest, commonly coinciding with maximum pelagic primary production. Episodes of physical disturbance, erratic food supply, and dilution of river-derived, particulate organic matter foster the development of opportunistic benthic communities of variable diversity and low biomass, dominated by bacteria. These pioneering assemblages are the main food of penaeid shrimp, which dominate the demersal trawl fisheries of both fluvial-dominated regions.  相似文献   

17.
Sediment dwelling macrofauna (infauna) are important vectors for the transfer of sediment-associated contaminants to higher trophic levels. Sedimenting organic matter constitutes an important food source for all benthic organisms and changes seasonally in terms of quantity and quality. Sediment organic matter (SOM) quality affects organism activity and feeding behaviour, and is therefore also likely to affect contaminant fate in benthic systems. We investigated the impact of SOM quality (enrichment with either labile Tetraselmis sp. or refractory lignin) on the accumulation and metabolism of sediment-associated pyrene in Nereis diversicolor (Annelida) and Amphiura filiformis (Echinodermata), as well as the combined effect of SOM quality and infaunal bioturbation on pyrene distribution and metabolism in the sediment. After 45 d of exposure, SOM quality almost doubled pyrene bioaccumulation in both species, while pyrene metabolism remained unaffected. Metabolites comprised approximately 80% of the total tissue pyrene in N. diversicolor and approximately 40% in A. filiformis. A. filiformis arms contained one fifth of the disk pyrene concentration. Approximately 20% of the pyrene found in A. filiformis arms was found to be covalently bound to, e.g. DNA, RNA or proteins, thus reducing pyrene bioavailability to arm-cropping predators. The sedimentary pyrene distribution and metabolism was species-dependent, but correlated poorly with prevailing knowledge on species-specific bioturbation patterns. This was attributed to the comparably high biodegradability of the contaminant thus altering its sorptive characteristics and function as inert tracer. Subduction of pyrene and metabolites occurred, and the fraction of pyrene covalently bound to SOM increased with depth, thereby removing pyrene from the bioavailable pool. Our results imply that bioaccumulation and trophic transfer of sediment-associated PAH should increase following fresh organic matter input, e.g. after sedimentation of phytoplankton blooms. We stress the importance of considering behavioural characteristics of infauna and the trophic situation of the system when assessing fate and effects of sediment-associated contaminants.  相似文献   

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Studies of the trophic structure in methane‐seep habitats provide insight into the ecological function of deep‐sea ecosystems. Methane seep biota on the Chilean margin likely represent a novel biogeographic province; however, little is known about the ecology of the seep fauna and particularly their trophic support. The present study, using natural abundance stable isotopes, reveals a complex trophic structure among heterotrophic consumers, with four trophic levels supported by a diversity of food sources at a methane seep area off Concepción, Chile (~36° S). Although methanotrophy, thiotrophy and phototrophy are all identified as carbon fixation mechanisms fueling the food web within this area, most of the analysed species (87.5%) incorporate carbon derived from photosynthesis and a smaller number (12%) use carbon derived from chemosynthesis. Methane‐derived carbon (MDC) incorporation was documented in 22 taxa, including sipunculids, gastropods, polychaetes and echinoderms. In addition, wide trophic niches were detected in suspension‐feeding and deposit‐feeding taxa, possibly associated with the use of organic matter in different stages of degradation (e.g. from fresh to refractory). Estimates of Bayesian standard ellipses area (SEAB) reveal different isotopic niche breadth in the predator fishes, the Patagonian toothfish Dissostichus eleginoides and the combtooth dogfish Centroscyllium nigrum, suggesting generalist versus specialist feeding behaviors, respectively. Top predators in the ecosystem were the Patagonian toothfish D. eleginoides and the dusky cat shark, Bythaelurus canescens. The blue hake Antimora rostrata also provides a trophic link between the benthic and pelagic systems, with a diet based primarily on pelagic‐derived carrion. These findings can inform accurate ecosystem models, which are critical for effective management and conservation of methane seep and adjacent deep‐sea habitats in the Southeastern Pacific.  相似文献   

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