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首页> 外文期刊>Environmental Biology of Fishes >Energetic requirements of green sturgeon (Acipenser medirostris) feeding on burrowing shrimp (Neotrypaea californiensis) in estuaries: importance of temperature, reproductive investment, and residence time
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Energetic requirements of green sturgeon (Acipenser medirostris) feeding on burrowing shrimp (Neotrypaea californiensis) in estuaries: importance of temperature, reproductive investment, and residence time

机译:在河口挖土虾(NeoTrypaea Californiensis)饲喂绿色鲟鱼(Acipenser Medirostris)的精力充沛的要求:温度,生殖投资和停留时间的重要性

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Habitat use can be complex, as tradeoffs among physiology, resource abundance, and predator avoidance affect the suitability of different environments for different species. Green sturgeon (Acipenser medirostris), an imperiled species along the west coast of North America, undertake extensive coastal migrations and occupy estuaries during the summer and early fall. Warm water and abundant prey in estuaries may afford a growth opportunity. We applied a bioenergetics model to investigate how variation in estuarine temperature, spawning frequency, and duration of estuarine residence affect consumption and growth potential for individual green sturgeon. We assumed that green sturgeon achieve observed annual growth by feeding solely in conditions represented by Willapa Bay, Washington, an estuary annually frequented by green sturgeon and containing extensive tidal flats that harbor a major prey source (burrowing shrimp, Neotrypaea californiensis). Modeled consumption rates increased little with reproductive investment ( 0.4%), but responded strongly (10-50%) to water temperature and duration of residence, as higher temperatures and longer residence required greater consumption to achieve equivalent growth. Accordingly, although green sturgeon occupy Willapa Bay from May through September, acoustically-tagged individuals are observed over much shorter durations (34 d + 41 d SD, N = 89). Simulations of 34 d estuarine residence required unrealistically high consumption rates to achieve observed growth, whereas longer durations required sustained feeding, and therefore higher total intake, to compensate for prolonged exposure to warm temperatures. Model results provide a range of per capita consumption rates by green sturgeon feeding in estuaries to inform management decisions regarding resource and habitat protection for this protected species.
机译:栖息地使用可以复杂,作为生理学,资源丰富和捕食者之间的权衡,影响不同物种的不同环境的适用性。绿色鲟鱼(Acipenser Medirostris)是北美西海岸的危险物种,在夏季和初期秋季进行了广泛的沿海迁徙和占领河口。河口的温水和丰富的猎物可能会提供增长机会。我们应用生物能器模型来研究河口温度,产卵频率和河口住宅持续时间的变异影响各种绿色鲟鱼的消费和增长潜力。我们认为,绿色鲟鱼通过仅由绿色鲟鱼常用的威尔拉帕湾,华盛顿州的河口和港口大规模潮汐源(穴居虾,新甲乳虾,新甲肾上腺植物)的潮汐公寓所代表的条件来实现年度增长。模型消费利率随着生殖投资(<0.4%)而增加,但强烈响应(10-50%)到水温和居住的持续时间,随着更高的温度和更长的住宅所需的速度,以实现相同的增长。因此,虽然绿色鲟鱼从5月到9月占领威尔拉帕湾,但在较短的持续时间内观察到声学标记的个体(34 d + 41 d sd,n = 89)。模拟& 34 D河口住宅需要不切实际的高消耗率来实现观察到的增长,而持续喂养的持续时间更长,因此较高的总摄入量,以补​​偿长时间暴露于温暖的温度。模型结果通过绿色鲟鱼在河口中提供了一系列人均消费率,以告知对这种受保护物种的资源和栖息地保护的管理决策。

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