Literature DB >> 30006980

Dramatic loss of seagrass habitat under projected climate change in the Mediterranean Sea.

Rosa M Chefaoui1, Carlos M Duarte2, Ester A Serrão1.   

Abstract

Although climate warming is affecting most marine ecosystems, the Mediterranean is showing earlier impacts. Foundation seagrasses are already experiencing a well-documented regression in the Mediterranean which could be aggravated by climate change. Here, we forecast distributions of two seagrasses and contrast predicted loss with discrete regions identified on the basis of extant genetic diversity. Under the worst-case scenario, Posidonia oceanica might lose 75% of suitable habitat by 2050 and is at risk of functional extinction by 2100, whereas Cymodocea nodosa would lose only 46.5% in that scenario as losses are compensated with gained and stable areas in the Atlantic. Besides, we predict that erosion of present genetic diversity and vicariant processes can happen, as all Mediterranean genetic regions could decrease considerably in extension in future warming scenarios. The functional extinction of Posidonia oceanica would have important ecological impacts and may also lead to the release of the massive carbon stocks these ecosystems stored over millennia.
© 2018 John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990Cymodocea nodosazzm321990; zzm321990Posidonia oceanicazzm321990; Mediterranean Sea; climate change; ecological niche modeling; genetic diversity; range shift; seagrass decline

Mesh:

Year:  2018        PMID: 30006980     DOI: 10.1111/gcb.14401

Source DB:  PubMed          Journal:  Glob Chang Biol        ISSN: 1354-1013            Impact factor:   10.863


  7 in total

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Authors:  Bernardo Duarte; Tiago Repolho; José Ricardo Paula; Isabel Caçador; Ana Rita Matos; Rui Rosa
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3.  Tropical seagrass Halophila stipulacea shifts thermal tolerance during Mediterranean invasion.

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4.  Resilience of seagrass populations to thermal stress does not reflect regional differences in ocean climate.

Authors:  Scott Bennett; Teresa Alcoverro; Demetris Kletou; Charalampos Antoniou; Jordi Boada; Xavier Buñuel; Lidia Cucala; Gabriel Jorda; Periklis Kleitou; Guillem Roca; Julia Santana-Garcon; Ioannis Savva; Adriana Vergés; Núria Marbà
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5.  The role of epiphytes in seagrass productivity under ocean acidification.

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6.  Interactive effects of multiple stressors vary with consumer interactions, stressor dynamics and magnitude.

Authors:  Mischa P Turschwell; Sean R Connolly; Ralf B Schäfer; Frederik De Laender; Max D Campbell; Chrystal Mantyka-Pringle; Michelle C Jackson; Mira Kattwinkel; Michael Sievers; Roman Ashauer; Isabelle M Côté; Rod M Connolly; Paul J van den Brink; Christopher J Brown
Journal:  Ecol Lett       Date:  2022-04-27       Impact factor: 11.274

7.  Stress Memory in Seagrasses: First Insight Into the Effects of Thermal Priming and the Role of Epigenetic Modifications.

Authors:  Hung Manh Nguyen; Mikael Kim; Peter J Ralph; Lázaro Marín-Guirao; Mathieu Pernice; Gabriele Procaccini
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  7 in total

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