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Variability in reproductive investment of skipjack tuna (Katsuwonus pelamis) in relation to the oceanclimate dynamics in the tropical eastern Indian Ocean

机译:eastern鱼(Katsuwonus pelamis)生殖投资与热带印度洋东部海洋气候动态的关系

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The Indian Ocean is characterised by significant climatic and oceanographic variability such as the seasonal monsoon and the decadal and inter-annual oscillation of the Indian Ocean Dipole (IOD). Understanding the effects of oceanclimate variability on marine top predators is important for both fisheries and ecosystem management. To test the hypothesis that variability in surface and subsurface temperature affects the annual reproductive cycles of skipjack tuna (Katsuwonus pelamis) in the tropical eastern Indian Ocean, we examined the seasonal and inter-annual variations of the gonadosomatic index (GSI) and determined hatch date by using otolith microstructure analysis. The GSI tended to be higher in JanuaryFebruary during the north-eastern monsoon when seawater cooling at the subsurface layer is induced by the seasonal inflow of the South Equatorial Countercurrent (SECC). The mode of the hatch-month distribution was also detected in that season. The generalised linear model (GLM) resulted in a dome-shaped quadratic relationship, with a peak GSI between 24C and 26C occurring at a depth of 50m during austral summer. These findings indicate that seasonal monsoons and associated changes in oceanographic conditions strongly affect the energy-allocation pattern of skipjack tunas.
机译:印度洋的特征是气候和海洋的剧烈变化,例如季节性季风以及印度洋偶极子(IOD)的年代际和年际振荡。了解海洋气候变化对海洋顶级捕食者的影响对于渔业和生态系统管理都至关重要。为了检验假说,地表和地下温度的变化会影响热带东部印度洋annual鱼(Katsuwonus pelamis)的年度繁殖周期,我们研究了性腺体指数(GSI)的季节性和年际变化,并确定了孵化日期通过使用耳石微结构分析。由于南赤道逆流(SECC)的季节性流入导致地下层的海水冷却,GSI倾向于在2月的1月东北季风期间升高。在那个季节也检测到了孵化月分布的模式。广义线性模型(GLM)形成了圆顶形的二次关系,在南方夏季,在50m的深度处24C和26C之间出现了一个GSI峰值。这些发现表明季节性季风和海洋条件的相关变化强烈影响skip鱼金枪鱼的能量分配模式。

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