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Growth condition and maturity schedules of an estuarine fish species change in estuaries following increased hypoxia due to climate change

机译:由于气候变化导致缺氧增加后河口鱼类物种的生长状况和成熟期计划发生变化

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摘要

Understanding challenges posed by climate change to estuaries and their faunas remains a high priority for managing these systems and their communities. Freshwater discharge into a range of estuary types in south‐western Australia between 1990 and 2015 is shown to be related to rainfall. This largely accounts for decreases in discharge in this microtidal region being more pronounced on the west coast than south coast, where rainfall decline was less. Results of an oxygen‐balance model imply that, as demonstrated by empirical data for the Swan River Estuary, declines in discharge into a range of estuary types would be accompanied by increases in the extent of hypoxia. In 2013–15, growth and body condition of the teleost Acanthopagrus butcheri varied markedly among three permanently open, one intermittently‐open, one seasonally‐closed and one normally‐closed estuary, with average time taken by females to reach the minimum legal length (MLL) of 250 mm ranging from 3.6 to 17.7 years. It is proposed that, in a given restricted period, these inter‐estuary variations in biological characteristics are related more to differences in factors, such as food resources and density, than to temperature and salinity. The biological characteristics of A. butcheri in the four estuaries, for which there are historical data, changed markedly between 1993–96 and 2013–15. Growth of both sexes, and also body condition in all but the normally‐closed estuary, declined, with females taking between 1.7 and 2.9 times longer to attain the MLL. Irrespective of period, body condition, and growth are positively related. Age at maturity typically increased between periods, but length at maturity declined only in the estuary in which growth was greatest. The plasticity of the biological characteristics of A. butcheri, allied with confinement to its natal estuary and ability to tolerate a wide range of environmental conditions, makes this sparid and comparable species excellent subjects for assessing estuarine “health.”
机译:了解气候变化对河口及其动植物构成的挑战仍然是管理这些系统及其社区的高度优先事项。 1990年至2015年之间,澳大利亚西南部的一系列河口类型的淡水排放与降雨有关。这主要是由于该微潮区的排水量减少在西海岸比南海岸更为明显,而在南海岸,降雨的下降幅度较小。氧气平衡模型的结果表明,如天鹅河河口的经验数据所表明的,向一系列河口类型的排放量的减少将伴随着缺氧程度的增加。在2013-15年度,硬骨无刺棘皮growth的生长和身体状况在三个永久性开放,一个间歇性开放,一个季节性封闭和一个正常封闭的河口之间显着变化,女性平均花费的时间达到最小法定长度( MLL)为250毫米,范围从3.6到17.7年。建议在给定的限制时间内,这些河口生物特征的变化更多地与食物资源和密度等因素的差异有关,而不是与温度和盐度有关。在1993-96年至2013-15两年间,有历史数据的四个河口的A.butcheri的生物学特性发生了显着变化。除正常封闭的河口外,所有性别的生长以及身体状况均下降,女性获得MLL所需的时间要长1.7至2.9倍。不论时期,身体状况和成长如何,都呈正相关。成熟期通常在两个时期之间增加,但成熟期仅在增长最大的河口才下降。 but虫的生物学特性的可塑性,不仅限于其出生河口,而且还具有宽泛的环境条件承受能力,这使这种spa和可比的物种成为评估河口“健康”的极佳对象。

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