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1.
Pike (Esox lucius) occupy coastal streams and rivers of the Baltic Sea, where they attain large sizes (>5 kg). These large sizes are perhaps due to the fact that they can tolerate relatively high salinities and can thus forage in the nearby more productive brackish environments. In an attempt to quantify the extent to which pike utilise brackish environments, and to provide some insight into the underlying causes for brackish water migrations, we tagged 30 pike from a western Baltic river with acoustic transmitters and were able to track 21 individuals for 1 year. Based on experienced from local anglers, this population was assumed to be brackish in nature, where individuals underwent freshwater migrations to spawn. Our findings however suggest that the smallest and most active individuals make short exits into brackish waters and do so on rare occasions. Our results further indicate that neither sex nor size is related to activity level. We suggest that these patterns reflect two distinct behaviours—active and passive—and that large pike can be supported by the food availability in the river, without the need to venture into coastal zones, thus defying the conventional view that Baltic pike are all brackish in nature.  相似文献   
2.
Northern Lake Huron (Ontario, Canada) supports the largest concentration of freshwater salmonid cage culture farms in Canada and receives inputs of domestic‐strain rainbow trout (Oncorhynchus mykiss) through escapement. We assessed the potential effects of these domestic fish on the naturalised rainbow trout of this ecosystem by comparing their respective ecologies. Mature adults were sampled from spawning tributaries, primarily in spring, and to a lesser extent in fall. Fish of domestic origin comprised ~80% of rainbow trout sampled from sites near cage culture facilities but <20% of rainbow trout sampled from more distant sites. Domestic adults in spawning condition (gametes free‐flowing) were present in the spawning tributaries in both spring and fall sampling seasons, whereas naturalised fish in spawning condition were only observed in the spring. Domestic adults were younger and smaller (in length), appeared to have shorter lifespan and had a higher male to female ratio compared with their naturalised counterparts. Growth rates (change in length with age) of naturalised and domestic females in the wild were similar, but domestic males grew more slowly than naturalised males. Domestic females also produced smaller eggs than naturalised females. Food web positions (inferred from δ13C and δ15N) of domestic and naturalised fish were very similar but varied more strongly with body size in the former. Domestic‐strain rainbow trout of cage culture origin can survive, grow and attempt to spawn in northern Lake Huron and have the potential to compete for food, mates and spawning habitat with naturalised rainbow trout.  相似文献   
3.
Land use practices alter the biomass and structure of soil microbial communities. However, the impact of land management intensity on soil microbial diversity (i.e. richness and evenness) and consequences for functioning is still poorly understood. Here, we addressed this question by coupling molecular characterization of microbial diversity with measurements of carbon (C) mineralization in soils obtained from three locations across Europe, each representing a gradient of land management intensity under different soil and environmental conditions. Bacterial and fungal diversity were characterized by high throughput sequencing of ribosomal genes. Carbon cycling activities (i.e., mineralization of autochthonous soil organic matter, mineralization of allochthonous plant residues) were measured by quantifying 12C- and 13C-CO2 release after soils had been amended, or not, with 13C-labelled wheat residues. Variation partitioning analysis was used to rank biological and physicochemical soil parameters according to their relative contribution to these activities. Across all three locations, microbial diversity was greatest at intermediate levels of land use intensity, indicating that optimal management of soil microbial diversity might not be achieved under the least intensive agriculture. Microbial richness was the best predictor of the C-cycling activities, with bacterial and fungal richness explaining 32.2 and 17% of the intensity of autochthonous soil organic matter mineralization; and fungal richness explaining 77% of the intensity of wheat residues mineralization. Altogether, our results provide evidence that there is scope for improvement in soil management to enhance microbial biodiversity and optimize C transformations mediated by microbial communities in soil.  相似文献   
4.
通过施用不同药肥,研究其对香瓜根际线虫数量、土壤线虫群落的影响。结果表明,阿维?噻唑磷颗粒剂、复合芽孢杆菌水剂+氨基酸、复合芽孢杆菌水剂、石灰氮、木霉菌能降低盆栽香瓜根际土壤线虫总数、植物寄生性、杂食性线虫、食真菌类线虫、捕食类线虫,其中对杂食性线虫的影响最大。从不同药肥处理对根结线虫数量的影响和防效来看,复合芽孢杆+氨基酸处理和阿维?噻唑磷、石灰氮处理均取得不错的防治效果,平均防治效果为58.34%~100%,但三者之间差异不显著。从农产品质量安全和生态安全的角度出发,复合芽孢杆+氨基酸具有更广阔的应用  相似文献   
5.
Silver chub (Macrhybopsis storeriana, Kirtland, 1844) is a native Cyprinid in Lake Erie, one of the Laurentian Great Lakes of North America. It is listed as endangered by the US state of New York and Canada, which has a recovery plan, and as special concern by the state of Michigan. Silver chub faces a potential threat to recovery from control efforts for invasive Grass carp (Ctenopharyngodon idella, Valenciennes 1844). Among the knowledge gaps for protection and restoration is current diet data. I describe the diet of silver chub from western Lake Erie in 2014, and I compare it to past studies to assess changes in diet through time. Silver chub captured in bottom trawls May–September 2014 were frozen in the field, and stomach contents were preserved in ethanol. Diet taxa were identified to the lowest practical taxonomic unit, then dried and weighed. Frequency of occurrence in silver chub diets was highest for Hexagenia spp. mayflies (79%). Dreissena spp. and Hexagenia spp. were both 41% of the diet by dry weight. Analysis of δ13C isotopes identified Hexagenia spp. as the primary source of carbon in silver chub. Compared to past studies, Dreissena spp. have mostly replaced Sphaeriidae and Gastropoda in silver chub diets. There also have been seasonal shifts in relative amounts of shelled organisms and Hexagenia spp. This study and past research suggest a functional link between silver chub and Hexagenia spp. abundance. Maintenance and recovery of silver chub may be dependent on maintaining Hexagenia spp. populations.  相似文献   
6.
Insect hyperparasitoids are fourth trophic level organisms that commonly occur in terrestrial food webs, yet they are relatively understudied. These top‐carnivores can disrupt biological pest control by suppressing the populations of their parasitoid hosts, leading to pest outbreaks, especially in confined environments such as greenhouses where augmentative biological control is used. There is no effective eco‐friendly strategy that can be used to control hyperparasitoids. Recent advances in the chemical ecology of hyperparasitoid foraging behavior have opened opportunities for manipulating these top‐carnivores in such a way that biological pest control becomes more efficient. We propose various infochemical‐based strategies to manage hyperparasitoids. We suggest that a push‐pull strategy could be a promising approach to ‘push’ hyperparasitoids away from their parasitoid hosts and ‘pull’ them into traps. Additionally, we discuss how infochemicals can be used to develop innovative tools improving biological pest control (i) to restrict accessibility of resources (e.g. sugars and alternative hosts) to primary parasitoid only or (ii) to monitor hyperparasitoid presence in the crop for early detection. We also identify important missing information in order to control hyperparasitoids and outline what research is needed to reach this goal. Testing the efficacy of synthetic infochemicals in confined environments is a crucial step towards the implementation of chemical ecology‐based approaches targeting hyperparasitoids. © 2019 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.  相似文献   
7.
调查汾河太原段轮虫群落结构的时空变化,探讨轮虫群落结构动态变化规律及其与环境理化因子的关系,为汾河太原段浮游动物动态预测和多样性保护提供必要信息,从生态系统的角度客观评价水质污染状况与水体富营养化程度。在汾河太原段设置采样点7个,于2014年3-12月对轮虫和水体理化指标进行逐月调查。共检出轮虫98种,隶属3目21科33属。全年优势种是长肢多肢轮虫(Polyarthra dolichoptera)和螺形龟甲轮虫(Keratella cochlearis)。调查期间月均检出轮虫28种,轮虫丰度变化范围为153 ~ 1 440 个/L,生物量为0.08~0.89 mg/L;种类数、丰度和生物量均表现为枯水季较低,丰水季最高。群落结构相似性分析表明不同营养状态水体之间差异显著,轮虫丰度、生物量、Shannon-Wiener 多样性指数和Pielou均匀度指数均存在明显差异;中等营养条件的指示种为卵形无柄轮虫(Ascomorpha ovalis)和单趾狭甲轮虫(Colurella unicauda),指示轻度富营养的指示种为柔软龟甲轮虫(Keratella delicata),中等富营养水体的指示种则为臂尾轮属的种类。冗余分析结果显示环境变量对轮虫群落结构变异的解释率为 41.3%,水温、叶绿素a 、溶解氧、总氮等因子是影响轮虫时空分布的主要因素。轮虫群落结构特征可以指示水体的营养状态。  相似文献   
8.
渔获物平均营养级在渔业可持续性评价中的应用研究进展   总被引:1,自引:0,他引:1  
高强度的捕捞努力量和渔业管理不力等因素导致全球范围内传统渔业资源的衰退,近年来渔获物平均营养级(MTL,mean trophic level)作为以生态系统为基础的渔业管理评价指标被普遍应用。本文在广泛收集国内外相关文献资料基础上,系统地介绍了MTL在渔业资源评价中的研究进展。已有研究显示,MTL能够利用已知渔获数据来分析,且参数化较为简便,在评价渔业可持续性中优势明显。受以渔获量作为生态系统指标、营养级(TL,trophic level)随体长的变化、渔获统计数据质量、低TL种类的过多捕捞和海域环境富营养化等因素的影响,在评估渔业资源利用状况时,需将MTL与剔除TL小于3.25物种下的3.25MTL、渔业均衡指数(FIB)等营养指标综合分析。此外,综合运用多指标,将营养指标与渔获组成、中上层鱼类与底层鱼类产量的比值、市场价格等指标结合分析,有助于掌握引起MTL变动的因素,更加全面地掌握捕捞活动下鱼类群落结构的实际变化状况。  相似文献   
9.
基于稳定同位素的口虾蛄食性分析   总被引:2,自引:0,他引:2  
为了探讨口虾蛄的食物组成,利用稳定同位素方法对2015年5月在汕尾红海湾海域采集的口虾蛄及其饵料生物的碳、氮稳定同位素比值(δ~(13)C和δ~(15)N值)进行分析,定量研究不同饵料生物在口虾蛄食物中的贡献比率。结果表明,口虾蛄的δ~(13)C值为–18.1‰~–16.3‰,δ~(15)N值为10.9‰~13.5‰,平均值分别为–17.1‰±0.5‰和12.7‰±0.7‰。δ~(13)C和δ~(15)N值的变化范围均较大,表明口虾蛄的食物来源较多。口虾蛄的食物主要由鱼类、虾类、贝类、蟹类和桡足类组成。其中,贝类为口虾蛄的主要食物,平均贡献率为38.6%;其次为蟹类和桡足类,平均贡献率分别为22.9%和16.0%;虾类的平均贡献率为13.6%;鱼类的平均贡献率最低,仅为8.9%。根据δ~(15)N值及营养级的计算公式得出,口虾蛄的营养级为3.01±0.22,在其5类食物中,桡足类的营养级最低,仅为1.77±0.12;其次为贝类;蟹类和虾类的营养级分别为2.78±0.21和2.89±0.16;鱼类的最高,为2.98±0.15;它们的营养级均低于口虾蛄。此外相关分析显示,口虾蛄的δ~(15)N值与其个体体质量间存在极显著的正相关关系,说明不同大小的口虾蛄营养级有所差异。  相似文献   
10.
2006-2007年分4次对余姚四明湖水库水质理化指标、浮游生物群落结构进行了调查,并进行了多样性指数分析及渔产潜力估算。结果表明,四明湖水库浮游植物种类共计8门、47种(属),其中以绿藻为最优势类群,占总密度的36.2%;浮游动物共计3大类、30种,其中原生动占40%;浮游植物年均生物量为10.20mg/L,浮游动物年均生物量2.36mg/L。从水体理化指标数据来看,四明湖水库水质属于II~IV类;从浮游植物群落结构和多样性指数分析结果来看,水库属于富营养水平;根据相关公式估算四明湖水库的鱼产潜力为20  相似文献   
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