Benthic successional dynamics on settlement substrate in coral reefs lagoons
Several factors infuence coral reef recovery, including availability of appropriate recruitment surface, which is provided mainly by crustose calcareous algae (CCA). Its role in coral recruitment has been amply documented, but the dynamics governing CCA availability has received little attention. This paper analyzes the benthic successional dynamics of six cover states [CCA, feshy algae (FA), turf algae (TA), calcifed articulated algae (CAA), free space, and other benthic groups] over a two-year period on patch reefs inside and outside Xcalak Reef National Park, a marine protected area (MPA) in the southern Mexican Caribbean. Recruitment tiles were used to mimic physical disturbance, and a Markov chain analysis was applied to understand the transition probabilities among benthic groups. Initial benthic succession was dominated by TA, which covered at least 75% of the surface. CCA were the dominant cover (~ 50%), at stationary distributions, at sites inside the MPA, while at the site outside the MPA the dominant cover was TA (~ 50%). Once CCA and TA occupied a space they had high probabilities of retaining it, with turnover rates~1.5 years. These fndings ofer an entry point to the understanding at fne spatial scales of the dynamics of key benthic groups for coral recruitment and it constitutes the baseline to compare dynamics on reef adverse habitats.
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Subjects: | Algas calcáreas incrustantes, Dinámica sucesional, Sustrato de asentamiento, Artfrosur, |
Online Access: | https://doi.org/10.1007/s00227-023-04202-7 |
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KOHA-OAI-ECOSUR:637152024-03-11T15:24:56ZBenthic successional dynamics on settlement substrate in coral reefs lagoons Victoria Salazar, Isael Doctor autor 19758 Ruiz Zárate, Miguel Ángel Doctor autor 13308 Vega Zepeda, Alejandro Maestro autor 13441 Bahena Basave, Humberto Licenciado autor 13291 textengSeveral factors infuence coral reef recovery, including availability of appropriate recruitment surface, which is provided mainly by crustose calcareous algae (CCA). Its role in coral recruitment has been amply documented, but the dynamics governing CCA availability has received little attention. This paper analyzes the benthic successional dynamics of six cover states [CCA, feshy algae (FA), turf algae (TA), calcifed articulated algae (CAA), free space, and other benthic groups] over a two-year period on patch reefs inside and outside Xcalak Reef National Park, a marine protected area (MPA) in the southern Mexican Caribbean. Recruitment tiles were used to mimic physical disturbance, and a Markov chain analysis was applied to understand the transition probabilities among benthic groups. Initial benthic succession was dominated by TA, which covered at least 75% of the surface. CCA were the dominant cover (~ 50%), at stationary distributions, at sites inside the MPA, while at the site outside the MPA the dominant cover was TA (~ 50%). Once CCA and TA occupied a space they had high probabilities of retaining it, with turnover rates~1.5 years. These fndings ofer an entry point to the understanding at fne spatial scales of the dynamics of key benthic groups for coral recruitment and it constitutes the baseline to compare dynamics on reef adverse habitats.Several factors infuence coral reef recovery, including availability of appropriate recruitment surface, which is provided mainly by crustose calcareous algae (CCA). Its role in coral recruitment has been amply documented, but the dynamics governing CCA availability has received little attention. This paper analyzes the benthic successional dynamics of six cover states [CCA, feshy algae (FA), turf algae (TA), calcifed articulated algae (CAA), free space, and other benthic groups] over a two-year period on patch reefs inside and outside Xcalak Reef National Park, a marine protected area (MPA) in the southern Mexican Caribbean. Recruitment tiles were used to mimic physical disturbance, and a Markov chain analysis was applied to understand the transition probabilities among benthic groups. Initial benthic succession was dominated by TA, which covered at least 75% of the surface. CCA were the dominant cover (~ 50%), at stationary distributions, at sites inside the MPA, while at the site outside the MPA the dominant cover was TA (~ 50%). Once CCA and TA occupied a space they had high probabilities of retaining it, with turnover rates~1.5 years. These fndings ofer an entry point to the understanding at fne spatial scales of the dynamics of key benthic groups for coral recruitment and it constitutes the baseline to compare dynamics on reef adverse habitats.Algas calcáreas incrustantesDinámica sucesionalSustrato de asentamientoArtfrosurMarine Biologyhttps://doi.org/10.1007/s00227-023-04202-7Disponible para usuarios de ECOSUR con su clave de acceso |
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Algas calcáreas incrustantes Dinámica sucesional Sustrato de asentamiento Artfrosur Algas calcáreas incrustantes Dinámica sucesional Sustrato de asentamiento Artfrosur |
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Algas calcáreas incrustantes Dinámica sucesional Sustrato de asentamiento Artfrosur Algas calcáreas incrustantes Dinámica sucesional Sustrato de asentamiento Artfrosur Victoria Salazar, Isael Doctor autor 19758 Ruiz Zárate, Miguel Ángel Doctor autor 13308 Vega Zepeda, Alejandro Maestro autor 13441 Bahena Basave, Humberto Licenciado autor 13291 Benthic successional dynamics on settlement substrate in coral reefs lagoons |
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Several factors infuence coral reef recovery, including availability of appropriate recruitment surface, which is provided mainly by crustose calcareous algae (CCA). Its role in coral recruitment has been amply documented, but the dynamics governing CCA availability has received little attention. This paper analyzes the benthic successional dynamics of six cover states [CCA, feshy algae (FA), turf algae (TA), calcifed articulated algae (CAA), free space, and other benthic groups] over a two-year period on patch reefs inside and outside Xcalak Reef National Park, a marine protected area (MPA) in the southern Mexican Caribbean. Recruitment tiles were used to mimic physical disturbance, and a Markov chain analysis was applied to understand the transition probabilities among benthic groups. Initial benthic succession was dominated by TA, which covered at least 75% of the surface. CCA were the dominant cover (~ 50%), at stationary distributions, at sites inside the MPA, while at the site outside the MPA the dominant cover was TA (~ 50%). Once CCA and TA occupied a space they had high probabilities of retaining it, with turnover rates~1.5 years. These fndings ofer an entry point to the understanding at fne spatial scales of the dynamics of key benthic groups for coral recruitment and it constitutes the baseline to compare dynamics on reef adverse habitats. |
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Texto |
topic_facet |
Algas calcáreas incrustantes Dinámica sucesional Sustrato de asentamiento Artfrosur |
author |
Victoria Salazar, Isael Doctor autor 19758 Ruiz Zárate, Miguel Ángel Doctor autor 13308 Vega Zepeda, Alejandro Maestro autor 13441 Bahena Basave, Humberto Licenciado autor 13291 |
author_facet |
Victoria Salazar, Isael Doctor autor 19758 Ruiz Zárate, Miguel Ángel Doctor autor 13308 Vega Zepeda, Alejandro Maestro autor 13441 Bahena Basave, Humberto Licenciado autor 13291 |
author_sort |
Victoria Salazar, Isael Doctor autor 19758 |
title |
Benthic successional dynamics on settlement substrate in coral reefs lagoons |
title_short |
Benthic successional dynamics on settlement substrate in coral reefs lagoons |
title_full |
Benthic successional dynamics on settlement substrate in coral reefs lagoons |
title_fullStr |
Benthic successional dynamics on settlement substrate in coral reefs lagoons |
title_full_unstemmed |
Benthic successional dynamics on settlement substrate in coral reefs lagoons |
title_sort |
benthic successional dynamics on settlement substrate in coral reefs lagoons |
url |
https://doi.org/10.1007/s00227-023-04202-7 |
work_keys_str_mv |
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