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干湿热带河流中的消费者-资源耦合。

Consumer-resource coupling in wet-dry tropical rivers.

机构信息

Australian Rivers Institute, Griffith University, Nathan, QLD 4111, Australia.

出版信息

J Anim Ecol. 2012 Mar;81(2):310-22. doi: 10.1111/j.1365-2656.2011.01925.x. Epub 2011 Nov 21.

DOI:10.1111/j.1365-2656.2011.01925.x
PMID:22103689
Abstract
  1. Despite implications for top-down and bottom-up control and the stability of food webs, understanding the links between consumers and their diets remains difficult, particularly in remote tropical locations where food resources are usually abundant and variable and seasonal hydrology produces alternating patterns of connectivity and isolation. 2. We used a large scale survey of freshwater biota from 67 sites in three catchments (Daly River, Northern Territory; Fitzroy River, Western Australia; and the Mitchell River, Queensland) in Australia's wet-dry tropics and analysed stable isotopes of carbon (δ(13) C) to search for broad patterns in resource use by consumers in conjunction with known and measured indices of connectivity, the duration of floodplain inundation, and dietary choices (i.e. stomach contents of fish). 3. Regression analysis of biofilm δ(13) C against consumer δ(13) C, as an indicator of reliance on local food sources (periphyton and detritus), varied depending on taxa and catchment. 4. The carbon isotope ratios of benthic invertebrates were tightly coupled to those of biofilm in all three catchments, suggesting assimilation of local resources by these largely nonmobile taxa. 5. Stable C isotope ratios of fish, however, were less well-linked to those of biofilm and varied by catchment according to hydrological connectivity; the perennially flowing Daly River with a long duration of floodplain inundation showed the least degree of coupling, the seasonally flowing Fitzroy River with an extremely short flood period showed the strongest coupling, and the Mitchell River was intermediate in connectivity, flood duration and consumer-resource coupling. 6. These findings highlight the high mobility of the fish community in these rivers, and how hydrological connectivity between habitats drives patterns of consumer-resource coupling.
摘要
  1. 尽管人们已经认识到消费者与其食物之间存在自上而下和自下而上的控制关系,以及食物网的稳定性,但理解这种关系仍然很困难,尤其是在偏远的热带地区,这些地区的食物资源通常丰富且多变,季节性的水文变化会产生连接和隔离的交替模式。

  2. 我们利用澳大利亚干湿热带地区三个流域(北领地的达利河、西澳大利亚的菲茨罗伊河和昆士兰州的米切尔河)的 67 个地点的大型淡水生物群调查,分析了消费者的稳定碳同位素(δ¹³C),以寻找资源利用的广泛模式,同时结合已知和测量的连通性指数、洪泛平原淹没的持续时间以及饮食选择(即鱼类的胃内容物)。

  3. 生物膜 δ¹³C 与消费者 δ¹³C 的回归分析,作为对依赖本地食物源(周丛生物和碎屑)的指示,因分类群和流域而异。

  4. 所有三个流域的底栖无脊椎动物的碳同位素比值与生物膜的碳同位素比值紧密相关,这表明这些基本不活动的分类群同化了本地资源。

  5. 然而,鱼类的稳定 C 同位素比值与生物膜的比值相关性较差,并且根据水连通性而在流域之间有所不同;常年流动的达利河,洪泛平原淹没的时间较长,耦合程度最低;季节性流动的菲茨罗伊河,洪水期极短,耦合程度最强;米切尔河在连通性、洪水持续时间和消费者-资源耦合方面处于中间位置。

  6. 这些发现强调了这些河流中鱼类群落的高度流动性,以及栖息地之间的水文连通性如何驱动消费者-资源耦合模式。

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