Results 31 to 40 of about 186 (105)

Isolation of marine fungi associated with Sarcophyton ehrenbergi and the effect of temperature on their production of secondary metabolites / Liu Yuanwei [PDF]

open access: yes, 2023
Despite limited knowledge on their ecological functions, soft coral-derived fungi produce a range of bioactive secondary metabolites, and have an impact on a diverse microbiome. Little attention has been given to soft corals and their associated fungi in
Liu , Yuanwei
core  

Soft Corals Biodiversity in the Egyptian Red Sea: A Comparative MS and NMR Metabolomics Approach of Wild and Aquarium Grown Species [PDF]

open access: yes, 2016
Marine life has developed unique metabolic and physiologic capabilities and advanced symbiotic relationships to survive in the varied and complex marine ecosystems.
Montasser A. Al-Hammady (2553751)   +7 more
core   +1 more source

Bleaching as a pathogenic response in scleractinian corals, evidenced by high concentrations of apoptotic and necrotic Zooxanthellae [PDF]

open access: yes, 2004
The study of symbiont cells lost from bleached scleractinian corals Acropora hyacinthus, Favites complanata, and Porites solida and octocorals Sarcophyton ehrenbergi, Sinularia sp., and Xenia sp.
Terrence Piva (18029737)   +3 more
core   +3 more sources

Studies on the Secondary Metabolites from the Soft Corals Nephthea erecta, Lobophytum durum, and Sarcophyton ehrenbergi [PDF]

open access: yes, 2009
In order to search for novel bioactive compounds, we have investigated the secondary metabolites of the soft corals Nephthea erecta, Lobophytum durum, and Sarcophyton ehrenbergi. Chemical examinations on the organic extracts of N.
Cheng, Shi-Yie
core  

Bleaching in soft and scleractinian corals: Comparison of the physiology, genetics, and biochemistry of Symbiodinium [PDF]

open access: yes, 2001
The symbiotic association of scleractinian corals with Symbiodinium has been well studied. Until now, very little attention has been given to the symbiotic associations of soft corals with Symbiodinium.
Kevin B. Strychar (279770)
core   +1 more source

Salicylic acid and its derivatives elicit the production of diterpenes and sterols in corals and their algal symbionts: a metabolomics approach to elicitor SAR [PDF]

open access: yes, 2018
The production of marine drugs in its normal habitats is often low and depends greatly on ecological conditions. Chemical synthesis of marine drugs is not economically feasible owing to their complex structures.
Farag, Mohamed Ali
core   +1 more source

Studies on the Secondary Metabolites from the Formosan Soft Coral Sarcophyton ehrenbergi [PDF]

open access: yes, 2012
In the course of studying on secondary metabolites from marine organisms, we have investigated the chemical constituents of the soft coral Sarcophyton ehrenbergi collected at San-Hsien-Tai, Taitong County, Taiwan.
Hsieh, Mu-Keng
core  

Effects of seawater temperature on percent apoptotic endosymbiotic Symbiodinium and host coral Sarcophyton ehrenbergi cells. [PDF]

open access: yes, 2013
In-hospite, collected over a12 h period. Corals exposed to 28 to 36°C treatments. • = 28°C; ○ = 30°C;▾ = 32°C; Δ = 34°C; ▪ = 36°C. Data transformed by arcsine for normalization purposes. Zooxanthellae: Significant negative linear regressions through time
Kevin B. Strychar (279770)   +1 more
core   +1 more source

Effects of increasing seawater temperature on percent viable endosymbiotic Symbiodinium and host coral Sarcophyton ehrenbergi cells. [PDF]

open access: yes, 2013
In-hospite, collected over a12 h period. Data shown here relate to corals exposed to 28 to 36°C. • = 28°C; ○ = 30°C;▾ = 32°C; Δ = 34°C; ▪ = 36°C. Data transformed by arcsine for normalization purposes.
Kevin B. Strychar (279770)   +1 more
core   +1 more source

Effects of seawater temperature on percent necrotic endosymbiotic Symbiodinium and host coral Sarcophyton ehrenbergi cells. [PDF]

open access: yes, 2013
In-hospite, collected over a12 h period. Corals exposed to 28 to 36°C treatments. • = 28°C; ○ = 30°C;▾ = 32°C; Δ = 34°C; ▪ = 36°C. Data transformed by arcsine for normalization purposes.
Kevin B. Strychar (279770)   +1 more
core   +1 more source

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