裂胸科鱼类的适应性生殖策略:喜马拉雅生态系统的双产卵期和环境同步

IF 1.9 Q3 FISHERIES
Syed Talia Mushtaq
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引用次数: 0

摘要

裂胸纲鱼类是喜马拉雅地区特有的鱼类,在高海拔水生环境中表现出非凡的适应性生殖策略。本文综述了目前在这些物种中观察到的双重产卵阶段和环境同步的知识,重点介绍了Schizothorax属。这些鱼表现出每年产卵两次的独特能力,在夏季(6 - 10月)和冬季(1 - 3月)有不同的繁殖期。双产卵期使裂胸科鱼类能够通过将孵化和幼虫出现与高食物供应和有利温度同步来优化生殖产出,从而提高后代存活率(Bromage等,1993;Tao et al. 2018)。这种生殖可塑性与水温、排放和光周期等环境因素密切同步,从而在动态生态系统中优化繁殖周期。值得注意的是,产卵期可能因当地生态条件和海拔梯度的不同而不同。本文探讨了这些策略的适应性意义,包括提高繁殖成功率和增强种群适应力。此外,它还研究了在面对气候变化和喜马拉雅地区人为压力的情况下,这些适应对保护工作的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Adaptive Reproductive Strategies in Schizothoracine Fishes: Dual Spawning Phases and Environmental Synchronization in Himalayan Ecosystems

Adaptive Reproductive Strategies in Schizothoracine Fishes: Dual Spawning Phases and Environmental Synchronization in Himalayan Ecosystems

Schizothoracine fishes, endemic to the Himalayan region, exhibit remarkable adaptive reproductive strategies in response to their challenging high-altitude aquatic environments. This review synthesizes current knowledge on the dual spawning phases and environmental synchronization observed in these species, with a focus on the genus Schizothorax. These fishes demonstrate a unique ability to spawn twice annually, with distinct breeding periods in summer (June–October) and winter (January–March). Dual spawning phases allow Schizothoracine fishes to optimize reproductive output by synchronizing hatching and larval emergence with periods of high food availability and favourable temperatures, thereby increasing offspring survival (Bromage et al. 1993; Tao et al. 2018). This reproductive plasticity is closely synchronized with environmental cues such as water temperature, discharge, and photoperiod, allowing for optimized breeding cycles in dynamic ecosystems. Notably, spawning periods may vary among populations of the same species based on local ecological conditions and elevational gradients. The review explores the adaptive significance of these strategies, including increased reproductive success and enhanced population resilience. In addition, it examines the implications of these adaptations for conservation efforts in the face of climate change and anthropogenic pressures in the Himalayan region.

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