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DOI10.1016/j.marpolbul.2024.116098
Temperature and local anthropogenic pressures limit stony coral assemblage viability in southeast Florida
发表日期2024
ISSN0025-326X
EISSN1879-3363
起始页码200
卷号200
英文摘要Climate change is viewed as the primary threat to coral reefs, with local pressures exacerbating coral cover decline. The consensus is that improving water quality may increase resilience, but disentangling water quality and temperature impacts is difficult. We used distance-based linear models and random forests to analyze spatiotemporal variation in benthic community structure and interannual changes in the coral assemblage, in relation to specific environmental metrics in Southeast Florida. Temperature accounted for most of the variation, recruitment doubled and interannual increases in coral abundance tripled when mean annual temperature reached 27 C-degrees, until maximum temperatures exceeded 31 C-degrees. Benefits associated with warmer temperatures were negated by poor water quality, as nutrient enrichment was related to increased macroalgal cover, reduced coral recruitment and higher coral partial mortality. We suggest reducing local pressures will contribute to reduced macroalgae and enhance coral recovery, but that temperature is the predominant influence on coral assemblages.
英文关键词Water quality; Chronic pressure; Recovery; Recruitment; Nutrients; High -latitude
语种英语
WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology
WOS类目Environmental Sciences ; Marine & Freshwater Biology
WOS记录号WOS:001179385500001
来源期刊MARINE POLLUTION BULLETIN
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/286956
作者单位Nova Southeastern University
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. Temperature and local anthropogenic pressures limit stony coral assemblage viability in southeast Florida[J],2024,200.
APA (2024).Temperature and local anthropogenic pressures limit stony coral assemblage viability in southeast Florida.MARINE POLLUTION BULLETIN,200.
MLA "Temperature and local anthropogenic pressures limit stony coral assemblage viability in southeast Florida".MARINE POLLUTION BULLETIN 200(2024).
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