Research Article: New report for Pristinella jenkinae Stephenson, 1931 (Annelida: Oligochaeta: Naididae) geographical distribution from Southern Caspian Sea basin, Mazandaran province -Iran
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引用次数: 0
Abstract
Pristinella jenkinae(Stephenson, 1931) is a freshwater cosmopolitan oligochaete. This species was found during limnological investigation in two rivers alongside Iranian coasts and has not been previously reported from Iran’s freshwater fauna and Southern Caspian Sea basin. The specimens of P. jenkinaewere collected bimonthly from Cheshmehkileh and Sardabrood rivers and estuaries (river mouth) using a Van Veen grab (0.03 m2) and Surber (0.1 m2, 0.2 mm-mesh size) samplers at three stations in each estuary (S1: riverine, S2: estuary and S3: marine ecosystem) with three replicates from November 2014 through September 2015. Results of temporal distribution showed that the highest and lowest density and biomass of this species were in January (102.3±68.3 ind m-2 and 0.075±0.034g m-2) and in September (24.4±12.3 ind m-2 and 0.020±0.005g m-2), respectively which were significantly different (N=57, t=0.99, p<0.05). Spatial distribution of P. jenkinae among sampling stations (S1, S2 and S3) showed significant differences (N=57, t=0.99, p<0.05). Freshwater stations (S1) within the river showed higher density and biomass (112.1±64.8 ind m-2 and 0.082±0.035g m-2) than semi-brackish stations (S2) within the estuary (18.8±10.3 ind m-2 and 0.013±0.005g m-2). Semi-brackish stations (S2) showed higher density and biomass than brackish stations (S3) within the sea (0±0 ind m-2 and 0±0g m-2). Density and biomass of this species in Cheshmehkileh River and estuary was more than Sardabrood. A significant correlation (N=57, r=Pearson, p<0.05) between density and biomass of P. jenkinaewith environmental variables was found.
詹基纳普里斯蒂内拉(Pristinella jenkinae,Stephenson,1931)是一种世界性的淡水寡毛动物。该物种是在伊朗海岸附近的两条河流中进行的湖沼学调查中发现的,此前在伊朗淡水动物群和里海南部盆地尚未报告。从2014年11月至2015年9月,使用Van Veen抓斗(0.03 m2)和Surber(0.1 m2,0.2 mm网目大小)采样器,在每个河口的三个站点(S1:河流,S2:河口和S3:海洋生态系统),每两个月从Cheshmehkileh和Sardabrood河和河口(河口)采集一次江豚标本,共三次重复。时间分布结果表明,该物种的密度和生物量最高和最低分别为1月(102.3±68.3 ind m-2和0.075±0.034g m-2)和9月(24.4±12.3 ind m-2和0.020±0.005g m-2,不同采样站(S1、S2和S3)间的江豚种群空间分布存在显著差异(N=57,t=0.99,p<0.05)。河内淡水站(S1)的密度和生物量(112.1±64.8 ind m-2和0.082±0.035g m-2)高于河口半咸水站(S2)(18.8±10.3 ind m-2和0.013±0.005g m-2)。半咸水站(S2)的密度和生物量高于海水中的咸水站(S3)(0±0 ind m-2和0±0 g m-2)。Cheshmehkille河和河口的密度和生物量均大于Sardabrood。詹金纳的密度和生物量与环境变量之间存在显著相关性(N=57,r=Pearson,p<0.05)。
期刊介绍:
1- Living various species (contains animals and vegetal species) in various aquatic ecosystems.
2- Health and diseases of aquatic species.
3- Determining the stocks and specific time and location for catching and reliable exploitation for sustainable development.
4- Methods of propagation and culture of high value aquatic resources.
5- Aquatic stock assessment and the methods of restocking the high value species and suggestion for rate, areas and the time for releasing fish and other aquatic organisms fries.
6- Pollutant agents and their effects to the environments of aquatic species.
7- Feed and feeding in aquatic organisms.
8- Fish processing and producing new products.
9- The economic and social aspects of fisheries.