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温带潮间带生态系统功能更为丰富,但比热带生态系统更容易受到损失影响。

Temperate Intertidal Ecosystems are Functionally Richer but More Vulnerable to Loss Than Tropical Ecosystems.

作者信息

Murley Matilda, Hovey Renae K, Prince Jane

机构信息

School of Biological Science University of Western Australia Crawley Western Australia Australia.

The UWA Oceans Institute Crawley Crawley Western Australia Australia.

出版信息

Ecol Evol. 2024 Dec 5;14(12):e70657. doi: 10.1002/ece3.70657. eCollection 2024 Dec.

Abstract

Gastropods are major contributors to a range of key ecosystem services on intertidal rock platforms, supporting trophic structure in both terrestrial and marine contexts and manipulating habitat complexity. However, the functional structure of these assemblages is rarely examined across broad spatial scales. Here, we describe patterns in gastropod functional diversity, redundancy and vulnerability to functional loss across a latitudinal gradient following the west coast of Australia (18° S-34° S). Specifically, we created a trait matrix based on six categorical traits for 186 gastropod species from 39 sites to examine how trait composition varied with latitude. We found there was no latitudinal gradient in either functional richness or distinctiveness despite clear gradients in species richness and taxonomic distinctiveness, which both increased towards the equator. We delineated two distinct functional bioregions, a temperate south (34° S-27° S) and a tropical north (24° S-18° S), and found that the temperate bioregion had greater functional richness and uniqueness but lower redundancy compared to the tropical bioregion. Our findings show that gastropod assemblages in the temperate bioregion are more vulnerable to functional loss as their functional entities are supported by fewer or even single species. Comparatively, the tropical bioregion reported higher redundancies, which could provide a buffer against future change. Understanding the functional structure of intertidal ecosystems is vital as gastropods face the uncertain impacts of coastal tropicalisation, range shifts and sea level rise.

摘要

腹足纲动物对潮间带岩石平台上一系列关键生态系统服务有重要贡献,在陆地和海洋环境中支持营养结构并影响栖息地复杂性。然而,这些群落的功能结构很少在大空间尺度上进行研究。在此,我们描述了沿澳大利亚西海岸(南纬18°至34°)纬度梯度上腹足纲动物功能多样性、冗余性及功能丧失脆弱性的模式。具体而言,我们基于39个地点的186种腹足纲动物的六个分类特征创建了一个性状矩阵,以研究性状组成如何随纬度变化。我们发现,尽管物种丰富度和分类独特性存在明显梯度且均向赤道增加,但功能丰富度或独特性均无纬度梯度。我们划分出两个不同的功能生物区域,一个是温带南部(南纬34°至27°),另一个是热带北部(南纬24°至18°),并发现与热带生物区域相比,温带生物区域具有更高的功能丰富度和独特性,但冗余性较低。我们的研究结果表明,温带生物区域的腹足纲动物群落更容易受到功能丧失的影响,因为其功能实体由较少甚至单一物种支撑。相比之下,热带生物区域的冗余性较高,这可以为应对未来变化提供缓冲。由于腹足纲动物面临着沿海热带化、范围转移和海平面上升的不确定影响,了解潮间带生态系统的功能结构至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bb7/11621237/377b47a4b9c5/ECE3-14-e70657-g004.jpg

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