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Salgado-Hernandez, E.

Publications and source records attributed to Salgado-Hernandez, E..

2 recordsLinked to original sources

Effect of Sargassum on the Behavior and Survival of the Earthworm Eisenia fetida

In the past decade, Sargassum natans and S. fluitans have massively reached the Mexican Caribbean shores. As a result, Sargassum confinement sites may be affecting the soil quality and health in coastal ecosystems and agroecosystems. The impact of Sargassum (e.g., polyphenols) on soil biodiversity has not yet been evaluated. Terrestrial ecotoxicological tests use the epigean earthworm Eisenia fetida as a model organism to assess the function of soil habitats. This study evaluated the behavior and survival of the earthworm E. fetida exposed to five Sargassum concentrations (0, 25, 50, 75, and 100 %) using two toxicological tests. The avoidance test showed that E. fetida repelled (>80 %) a diet with 100 % Sargassum. In contrast, the acute test recorded a low mortality; however, the growth of E. fetida was lower with increasing Sargassum concentrations. It is concluded that the ability to repel and E. fetida biomass are early warning bioindicators to predict the environmental risk of Sargassum in soil. Therefore, it is relevant to determine the potential risk of using earthworm compost and Sargassum leachates as biofertilizers in agroecosystems.

ecology↗

Energy-Saving Pretreatments Affect Pelagic Sargassum Composition and DNA Metabarcoding Analysis Reveals the Microbial Community Involved in Methane Yield

Sargassum spp. floods the Caribbean coastlines, causing damage to the local economy and environment. These macroalgae have a low methane yield that makes the anaerobic digestion (AD) process unviable, so low-cost pretreatments are required. This research investigated the efficiency of energy-saving pretreatments, such as water washing, that had not been evaluated for these species. The microbial communities involved in AD of the best and worst-performing systems were also analyzed by high-throughput sequencing. The results showed that water washing pretreatment modified the content of inorganic compounds, fibers, and C:N ratio and increased the methane yield by 38%. The bacterial phyla Bacteroidota, Firmicutes, and Thermotogota, as well as the archaea genera Methanosarcina, RumEn_M2, and Bathyarchaeia, dominated the microbial communities. This study is the first to show the microbial community structure involved in the AD of Sargassum spp. The pretreatments presented in this study may help overcome the previously reported limitations.

bioengineering↗