Search bioRxiv⌕ Search

Biology subjects

Celis-Hernandez, O.

Publications and source records attributed to Celis-Hernandez, O..

2 recordsLinked to original sources

Flooding patterns shape microbial community in mangrove sediments

BackgroundMangrove ecosystems located in the tropics and subtropics, are crucial for regulating global weather patterns and sequestering carbon. However, they face threats from human activities like altered water flow and deforestation. While the symbiotic relationship between mangrove trees and surrounding microbes are essential for their survival, the impact of human activity on these microbial communities remains incompletely understood. We investigated how microbial communities change in degraded mangrove ecosystems due to loss of hydrologic connectivity, aiming to elucidate consequences and inform restoration strategies. MethodsEmploying 16S rRNA sequencing, we analyzed samples of sediment cores from conserved, moderately degraded, and degraded mangrove sites across dry and flood seasons at three sediment depths. ResultsOur analysis identified 11,469 Amplicon Single Variant (ASVs), revealing diversity loss correlated with degradation levels. Notably, we observed shifts in microbial diversity within sediment layers, with conserved sites dominated by Vibrionaceae in upper layers, potentially indicating urban contamination. In moderate-degradation sites, seasonal patterns emerged, with Halomonas and Marinomonas dominating the dry season and Exiguobacterium thriving during flooding. Interestingly, a community mainly composed of Firmicutes persisted across all degradation scenarios in deeper sediment layers, suggesting potential for ecosystem restoration. Our findings provide insights into microbial responses to human-induced stressors and highlight the role of core microbial communities in guiding restoration efforts for degraded mangrove ecosystems.

microbiology↗

Seasonal and hourly diversity patterns of anthropophagous female mosquito species in a semi-conserved area at the southern Mexico.

Mosquitoes are the most dangerous organisms on Earth because they spread causal agents of diseases. However, mosquito populations need to be better known in coastal areas of the Yucatan Peninsula to understand and prevent the spread of diseases effectively. To increase the knowledge about the mosquito community in the southern Gulf of Mexico region, we determined the diversity of mosquito species in Isla del Carmen Campeche. We trapped adult mosquitoes using buccal aspirators on monthly surveys (September 2019 to December 2020) in mangrove and low-semideciduous forest patches in three climate seasons. The sampling sessions consisted of 60 minutes of trapping performed every four hours (at 09, 13, 17, 21, 01, and 05 hrs) until a 24-hour cycle was completed. The trapped individuals were identified at the species level. We calculated Hill numbers using incidence data for each season and sampling hour. Abundances were compared through Kruskal-Wallis tests. A literature review determined the diseases associated with the species found. We collected 21,424 mosquito individuals from 11 genera, 26 species and four morphospecies. Seasonally, greater mosquito abundance and richness (n = 26) occurred during the norte season ({chi}2 = 7.23, df = 2, p = 0.026) and between the 09:00 and 13:00 hrs ({chi}2 = 15.25, df = 5, p = 0.009). Many species in this study are reported as disease vectors of medical and veterinary relevance. Conclusions: Isla del Carmen contributes to the Yucatan Peninsulas mosquito diversity, and several of its species are vectors of pathogens to humans and wildlife.

ecology↗