首页> 外文期刊>The Science of the Total Environment >Comparative analysis of the ecosystems in the northern Adriatic Sea and the Inland Sea of Japan: Can anthropogenic pressures disclose jellyfish outbreaks?
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Comparative analysis of the ecosystems in the northern Adriatic Sea and the Inland Sea of Japan: Can anthropogenic pressures disclose jellyfish outbreaks?

机译:对日本北部亚得里亚海和日本内海生态系统的比较分析:人为压力能否揭示水母暴发?

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A prominent increase in the moon jellyfish (genusAurelia) populations has been observed since 1980 in two semi-enclosed temperate seas: the northern Adriatic Sea and the Inland Sea of Japan. Therefore, we reviewed long-term environmental and biotic data from the two Long-Term Ecological Research (LTER) sites, along with the increase in the moon jellyfish occurrence to elucidate how these coastal seas shifted to the jellyfish-dominated ecosystems. The principal component analysis of atmospheric data revealed a simultaneous occurrence of similar climatic changes in the early 1980s; thereafter, air temperature increased steadily and precipitation decreased but became more extreme. Accordingly, the average seawater temperature from March to October, a period of polyps' asexual reproduction i.e.budding, increased, potentially leading to an increase in the reproductive rates of local polyp populations. Conspicuous eutrophication occurred due to the rise of anthropogenic activities in both areas from the 1960s onwards. This coincided with an increase of the stock size of forage fishes, such as anchovy and sardine, but not the population size of the jellyfish. However, by the end of the 1980s, when the eutrophication lessened due to the regulations of nutrients loads from the land, the productive fishing grounds of both systems turned into a state that may be described as ‘jellyfish-permeated,’ as manifested by a drastic decrease in fish landings and a prominent increase in the intensity and frequency of medusa blooms. A steady increase in artificial marine structures that provide substrate for newly settled polyps might further contribute to the enhancement of jellyfish population size. Elevated fishing pressure and/or predation by jellyfish on ichthyoplankton and zooplankton might jeopardize the recruitment of anchovy, so that the anchovy catch has never recovered fully. These semi-enclosed seas may represent many temperate coastal waters with increased anthropogenic stressors, which have degraded the ecosystem from fish-dominated to jellyfish-dominated.
机译:自1980年以来,在两个半封闭的温带海域(北亚得里亚海和日本内海),观察到月水母(属Aurelia)的数量显着增加。因此,我们回顾了来自两个长期生态研究(LTER)站点的长期环境和生物数据,以及月水母的出现增加,以阐明这些沿海海域如何转变为以水母为主的生态系统。大气数据的主成分分析表明,在1980年代初期,同时发生了类似的气候变化。此后,气温稳定上升,降水减少,但变得更加极端。因此,从3月到10月,即息肉无性繁殖即萌芽期的平均海水温度增加,可能导致当地息肉种群的繁殖率增加。自1960年代以来,这两个地区的人为活动都在增加,因此发生了富营养化。这与诸如an鱼和沙丁鱼等饲用鱼的种群增加,而水母的种群规模却没有增加。然而,到了1980年代末,由于土地养分负荷的调节导致富营养化程度降低,两个系统的生产性捕捞场都变成了一种可被描述为“水母浸透”的状态,如鱼的上岸量急剧减少,水母花盛开的强度和频率显着增加。人工海洋结构的稳定增加为新近定居的息肉提供了底物,这可能进一步有助于增加水母种群的数量。捕捞压力的增加和/或水母对鱼类的浮游生物和浮游动物的捕食可能会危害the鱼的吸收,因此so鱼的捕获量从未完全恢复。这些半封闭的海洋可能代表着许多人为压力增加的温带沿海水域,使人类的生态系统从以鱼类为主的变为以水母为主的。

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