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A Comparative Study of the Far Eastern Seas and the Northern Pacific Ocean Based on Integral Parameters of Net Zooplankton in the Epipelagic Layer

机译:基于表层浮游动物净浮游生物积分参数的远东海域与北太平洋海域比较研究

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Integral parameters of zooplankton community, including species diversity and its components were compared between the Chukchi Sea, Bering Sea, Sea of Okhotsk, Sea of Japan, and adjacent Pacific waters based on the data obtained by standard Juday net with a mouth area of 0.1 m(2) during the large-scale surveys conducted by the Pacific Fisheries Research Center (TINRO Center) in 1984-2013. These parameters were calculated for the total surveyed area of approximately 7.0 million km(2) and separately for each of the considered water bodies. In Pacific waters, species richness is higher than that in all the seas, while the concentration of individuals (expressed in terms of abundance, ind./m(3)) and evenness of their distribution over species were lower. The only sea with a larger mean size of organisms compared to the ocean is the Bering Sea. A lower species diversity than in the ocean has been recorded only from the Chukchi Sea; a lower density (in terms of biomass, g/m(3)) was determined only from the Sea of Japan. Among the four seas, the Chukchi Sea ranks first in terms of biomass and abundance of zooplankton, second in species evenness, third in the mean size of individuals, and last in species richness and diversity. The Bering Sea ranks first in terms of mean size of plankton organisms, second in species richness, diversity, and biomass, third in abundance, and last in species evenness. The Sea of Okhotsk ranks second in terms of mean size of individuals, last in their abundance, and third in the other parameters. The Sea of Japan ranks first in terms of species richness, evenness, and diversity, second in abundance, and last in mean size of zooplankton organisms, and, therefore, their biomass. The biomass of zooplankton, in accordance with the concentration of nutrients, increases in the southto-north direction (while its absolute abundance depends largely on the size of the body of water). The mean size of organisms increases in the same direction; the evenness of their distribution over species increases in the reverse direction (with the exception of both parameters for the Chukchi Sea). The rank of a water body for its biodiversity coincides with the species richness rank. The latter increases from north to south (except for the Okhotsk Sea), but greatly depends on the surveyed area and, even more, on the surveyed volume of water. A study of the literature data found some unexpected statistically significant relationships of the integral parameters of zooplankton with those of pelagic and bottom macrofauna, as well as with the parameters of zooplankton production, on the size of the considered bodies of water. The causes and the biological meanings of most of these relationships still do not have any rational interpretation. Their testing at other spatial scales will be continued in future works.
机译:根据嘴角面积为0.1 m的标准Juday网获得的数据,比较了楚科奇海,白令海,鄂霍次克海,日本海和邻近的太平洋水域浮游动物群落的整体参数,包括物种多样性及其组成部分。 (2)在1984-2013年由太平洋渔业研究中心(TINRO中心)进行的大规模调查中。这些参数是针对大约700万公里(2)的总调查面积计算的,并分别针对每个考虑的水体进行计算。在太平洋水域,物种丰富度高于所有海洋,而个人的浓度(以丰度,ind / m(3)表示)及其在物种中分布的均匀性较低。与海洋相比,唯一具有更大平均生物体规模的海洋是白令海。仅楚科奇海的物种多样性低于海洋。仅从日本海确定了较低的密度(就生物量而言,g / m(3))。在这四个海洋中,楚科奇海的生物量和浮游生物的丰度排名第一,物种均匀度排名第二,个体平均大小排名第三,物种丰富度和多样性排名第三。白令海在浮游生物的平均大小方面排名第一,物种丰富度,多样性和生物量排名第二,丰度排名第三,物种均匀度排名第三。鄂霍次克海在个人平均规模方面排名第二,在其丰富度方面排名倒数,在其他参数方面排名第三。日本海在物种丰富度,均匀度和多样性方面排名第一,在物种丰富度方面排名第二,在浮游生物的平均大小及其生物量方面排名倒数第二。根据营养物的浓度,浮游动物的生物量在南北方向上增加(而其绝对丰度在很大程度上取决于水体的大小)。生物体的平均大小朝同一方向增加;它们在物种上分布的均匀性沿反方向增加(除了楚科奇海的两个参数之外)。水体的生物多样性等级与物种丰富度等级一致。后者从北到南(鄂霍次克海除外)增加,但在很大程度上取决于被调查的地区,甚至更多地取决于被调查的水量。对文献数据的研究发现,浮游动物的整体参数与浮游和底栖大型动物的整体参数以及浮游动物生产的参数在所考虑的水体大小上存在一些出乎意料的统计学显着关系。这些关系中大多数的原因和生物学意义仍然没有任何理性的解释。他们在其他空间尺度上的测试将在以后的工作中继续进行。

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