首页> 外文期刊>Bulletin of Marine Science >TEMPORAL VARIATION IN JUVENILE BLUE CRAB MORTALITY: NEARSHORE SHALLOWS AND CANNIBALISM IN CHESAPEAKE BAY
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TEMPORAL VARIATION IN JUVENILE BLUE CRAB MORTALITY: NEARSHORE SHALLOWS AND CANNIBALISM IN CHESAPEAKE BAY

机译:少年蓝蟹死亡率的时空变化:CHESAPEAKE BAY附近的浅水区和食人鱼

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摘要

Adult abundance is determined by both recruitment and survival of juveniles. Blue crabs exhibit a distinct population size-structure reflecting seasonal cycles of recruitment and growth in the Rhode River, a subestuary lacking submerged vegetation in central Chesapeake Bay. Seasonally shifting modes in the size-structure, corresponding to juvenile, prepubertal and mature crabs, allowed trawl catches to be partitioned into 0+ and 1 + year classes of the crabs' 2—3 year life span. Fluctuations in the annual abundance of the year classes during 1988-1993 indicated that abundance of 0+ juveniles was not a good predictor of 1+ year-class abundance. We used tethering techniques to assess sources of, and temporal variation in, juvenile blue crab mortality as a function of water depth in the nearshore shallows of the subestuary. Laboratory experiments and analysis of remains of crabs tethered in the field indicated that cannibalism by large blue crabs was the source of 75-97% of mortality of juveniles. Crabs 30—50 mm CW suffered significantly higher mortality than 50-70 mm crabs. Mortality of tethered juveniles was significantly lower in shallow (15 cm) than deep ( > 70 cm) water. Mortality rates did not differ between day and night periods. Mortality of tethered juvenile blue crabs was high (40-90% per day) and exhibited significant seasonal and annual variation from 1989-1993; and water depth showed significant interaction effects with these components of temporal variability. Multiple regression analysis indicated that water temperature, abundance of 1+ year-class crabs in deep-water trawls, and abundance of 0+ year-class crabs in nearshore seines accounted for 82% of the annual variation in mortality of juveniles tethered at medium (40 cm) depth. Together, these results emphasize the importance of the nearshore shallows and body size as a crucial refuges for juvenile blue crabs encountering intense, but temporally variable cannibalism by large crabs. Juvenile mortality may be an important variable regulating population dynamics of blue crabs.
机译:成人的丰度取决于少年的募集和生存。蓝蟹显示出独特的种群规模结构,反映了罗得河(切萨皮克湾中部缺乏淹没植被的河口)的季节性征募和生长周期。大小结构的季节性变化模式(对应于幼蟹,青春期前和成熟的螃蟹)使拖网渔获物可以分为螃蟹2至3年寿命的0+和1+年类。 1988-1993年期间年级年度丰度的波动表明,0 +岁以上年纪的丰度并不是1+年级丰富度的良好预测。我们使用了束缚技术来评估青蟹幼体死亡率的来源和随时间的变化,其与河口近岸浅滩中水深的函数关系。实验室实验和野外系留的螃蟹遗骸分析表明,大蓝蟹的自相残杀是造成75-97%的未成年人死亡的根源。 30-50 mm CW的螃蟹死亡率比50-70 mm的螃蟹高得多。在浅水(15厘米)中,被束缚的幼鱼的死亡率显着低于深水(> 70厘米)。白天和晚上的死亡率没有差异。 1989年至1993年,拴系幼体蓝蟹的死亡率很高(每天40-90%),并且季节性和年度变化显着。和水深显示出与时间变化的这些组成部分的显着相互作用。多元回归分析表明,水温,深水拖网中1+年级螃蟹的丰度和近岸围网中0+年级螃蟹的丰度占拴在中等( 40厘米)深。总之,这些结果强调了近岸浅滩和鱼体大小的重要性,因为它们是大型蓝蟹遇到强烈但随时间变化的自相食性的幼小蓝蟹的重要避难所。少年死亡率可能是调节蓝蟹种群动态的重要变量。

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