scholarly journals Correction: Keshavmurthy, S., et al. Coral Reef Resilience in Taiwan: Lessons from Long-Term Ecological Research on the Coral Reefs of Kenting National Park (Taiwan). Journal of Marine Science and Engineering 2019, 7, 338

2020 ◽  
Vol 8 (12) ◽  
pp. 964
Author(s):  
Shashank Keshavmurthy ◽  
Chao-Yang Kuo ◽  
Ya-Yi Huang ◽  
Rodrigo Carballo-Bolaños ◽  
Pei-Jei Meng ◽  
...  

The authors are sorry for errors in their paper [...]

2019 ◽  
Vol 7 (11) ◽  
pp. 388 ◽  
Author(s):  
Shashank Keshavmurthy ◽  
Chao-Yang Kuo ◽  
Ya-Yi Huang ◽  
Rodrigo Carballo-Bolaños ◽  
Pei-Jei Meng ◽  
...  

Coral reefs in the Anthropocene are being subjected to unprecedented levels of stressors, including local disturbances—such as overfishing, habitat destruction, and pollution—and large-scale destruction related to the global impacts of climate change—such as typhoons and coral bleaching. Thus, the future of corals and coral reefs in any given community and coral-Symbiodiniaceae associations over time will depend on their level of resilience, from individual corals to entire ecosystems. Herein we review the environmental settings and long-term ecological research on coral reefs, based on both coral resilience and space, in Kenting National Park (KNP), Hengchun Peninsula, southern Taiwan, wherein fringing reefs have developed along the coast of both capes and a semi-closed bay, known as Nanwan, within the peninsula. These reefs are influenced by a branch of Kuroshio Current, the monsoon-induced South China Sea Surface Current, and a tide-induced upwelling that not only shapes coral communities, but also reduces the seawater temperature and creates fluctuating thermal environments which over time have favoured thermal-resistant corals, particularly those corals close to the thermal effluent of a nuclear power plant in the west Nanwan. Although living coral cover (LCC) has fluctuated through time in concordance with major typhoons and coral bleaching between 1986 and 2019, spatial heterogeneity in LCC recovery has been detected, suggesting that coral reef resilience is variable among subregions in KNP. In addition, corals exposed to progressively warmer and fluctuating thermal environments show not only a dominance of associated, thermally-tolerant Durusdinium spp. but also the ability to shuffle their symbiont communities in response to seasonal variations in seawater temperature without bleaching. We demonstrate that coral reefs in a small geographical range with unique environmental settings and ecological characteristics, such as the KNP reef, may be resilient to bleaching and deserve novel conservation efforts. Thus, this review calls for conservation efforts that use resilience-based management programs to reduce local stresses and meet the challenge of climate change.


Author(s):  
Russell J. Schmitt

The Long-Term Ecological Research (LTER) program facilitated my scientific growth in terms of the questions I can address; the tools, approaches, techniques and data to which I have access; and the diversity of intellectual and disciplinary expertise that I can tap. As a consequence, I am asking questions that cut across much larger spatial and especially temporal scales, and my research projects are more interdisciplinary, complex, and integrated. My ability to mentor students at all levels has been transformed by the variety of resources and opportunities afforded by the LTER program. One consequence is that these students are better prepared to become engaged globally. My role in the LTER program has required me to communicate scientific issues and findings to a broad audience. I have become more interested in the translation of science findings to public policy and practices to help conserve key functions of threatened ecosystems. My involvement with the LTER program has enabled me to forge a much larger circle of national and international collaborators to address questions that require a network of similar sites. The LTER construct has enabled me to broaden the scope of my research by expanding the interdisciplinary nature of my collaborations and the diversity of tools at my disposal. My involvement with the LTER program began in 2000 when I joined the Santa Barbara Coastal (SBC) site as an associate investigator, and it expanded in 2004 to include being the principal investigator of the newly established Moorea Coral Reef (MCR) site. I am privileged to continue to serve as principal investigator of MCR and as an associate investigator at SBC. My research interests center on ecological processes and feedbacks that drive the dynamics of populations and communities. Prior to my involvement in the LTER program, I conducted my research projects either alone or with a small group of like-minded collaborators to address such issues as regulation of (marine) animals with open populations or the effect of indirect interactions on coexistence of species (Figure 28.1). These projects taught me some of the limitations of “small science,” particularly when exacerbated by a lack of relevant long-term data.


Ecosphere ◽  
2021 ◽  
Vol 12 (5) ◽  
Author(s):  
David M. Iwaniec ◽  
Michael Gooseff ◽  
Katharine N. Suding ◽  
David Samuel Johnson ◽  
Daniel C. Reed ◽  
...  

2021 ◽  
pp. 100025
Author(s):  
Tamara K. Harms ◽  
Peter M. Groffman ◽  
Lihini Aluwihare ◽  
Chris Craft ◽  
William R Wieder ◽  
...  

2005 ◽  
Vol 29 (2) ◽  
pp. 907-911 ◽  
Author(s):  
Marco Cantonati ◽  
Ermanno Bertuzzi ◽  
Reinhard Gerecke ◽  
Karin Ortler ◽  
Daniel Spitale

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