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全球变化与海洋群落:外来物种与气候变化

Global change and marine communities: alien species and climate change.

作者信息

Occhipinti-Ambrogi Anna

机构信息

Dip. di Ecologia del Territorio, Sezione di Ecologia, Università degli Studi di Pavia, Pavia, Italy.

出版信息

Mar Pollut Bull. 2007;55(7-9):342-52. doi: 10.1016/j.marpolbul.2006.11.014. Epub 2007 Jan 18.

Abstract

Anthropogenic influences on the biosphere since the advent of the industrial age are increasingly causing global changes. Climatic change and the rising concentration of greenhouse gases in the atmosphere are ranking high in scientific and public agendas, and other components of global change are also frequently addressed, among which are the introductions of non indigenous species (NIS) in biogeographic regions well separated from the donor region, often followed by spectacular invasions. In the marine environment, both climatic change and spread of alien species have been studied extensively; this review is aimed at examining the main responses of ecosystems to climatic change, taking into account the increasing importance of biological invasions. Some general principles on NIS introductions in the marine environment are recalled, such as the importance of propagule pressure and of development stages during the time course of an invasion. Climatic change is known to affect many ecological properties; it interacts also with NIS in many possible ways. Direct (proximate) effects on individuals and populations of altered physical-chemical conditions are distinguished from indirect effects on emergent properties (species distribution, diversity, and production). Climatically driven changes may affect both local dispersal mechanisms, due to the alteration of current patterns, and competitive interactions between NIS and native species, due to the onset of new thermal optima and/or different carbonate chemistry. As well as latitudinal range expansions of species correlated with changing temperature conditions, and effects on species richness and the correlated extinction of native species, some invasions may provoke multiple effects which involve overall ecosystem functioning (material flow between trophic groups, primary production, relative extent of organic material decomposition, extent of benthic-pelagic coupling). Some examples are given, including a special mention of the situation of the Mediterranean Sea, where so many species have been introduced recently, and where some have spread in very large quantities. An increasing effort by marine scientists is required, not only to monitor the state of the environment, but also to help predicting future changes and finding ways to mitigate or manage them.

摘要

自工业时代到来以来,人类活动对生物圈的影响日益导致全球变化。气候变化以及大气中温室气体浓度的上升在科学和公共议程中占据重要位置,全球变化的其他组成部分也经常被提及,其中包括将非本地物种引入与来源地相隔甚远的生物地理区域,随后往往会引发大规模入侵。在海洋环境中,气候变化和外来物种的扩散都已得到广泛研究;本综述旨在探讨生态系统对气候变化的主要响应,同时考虑到生物入侵日益增加的重要性。文中回顾了一些关于海洋环境中非本地物种引入的一般原则,例如繁殖体压力以及入侵过程中发育阶段的重要性。众所周知,气候变化会影响许多生态特性;它还会以多种可能的方式与非本地物种相互作用。对个体和种群因物理化学条件改变而产生的直接(近端)影响与对新兴特性(物种分布、多样性和生产力)的间接影响有所不同。气候驱动的变化可能会改变水流模式,从而影响当地的扩散机制,同时由于新的温度适宜范围的出现和/或不同的碳酸盐化学性质,也会影响非本地物种与本地物种之间的竞争相互作用。除了与温度变化相关的物种纬度范围扩展,以及对物种丰富度和本地物种相关灭绝的影响外,一些入侵可能会引发涉及整个生态系统功能的多重影响(营养级之间的物质流动、初级生产力、有机物质分解的相对程度、底栖 - 浮游耦合的程度)。文中给出了一些例子,特别提到了地中海的情况,最近有许多物种被引入该地区,其中一些已经大量扩散。海洋科学家需要付出更多努力,不仅要监测环境状况,还要帮助预测未来变化并找到减轻或管理这些变化的方法。

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