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Biology subjects

Zeleke, G.

Publications and source records attributed to Zeleke, G..

2 recordsLinked to original sources

The Future of Juniperus procera in Ethiopia under Climate Change Secnarios - Implications for Ecosystem Rehabilitation and Biodiversity Conservation

Juniperus procera, a keystone conifer of Ethiopias dry Afromontane forests, is increasingly threatened by climate change and land-use pressures. This study employed an ensemble species distribution modeling (SDM) approach integrating Random Forest, MaxEnt, and Boosted Regression Trees to predict the species current and future habitat suitability under two climate scenarios: SSP2-4.5 (intermediate emissions) and SSP5-8.5 (high emissions) for the 2061-2080 period. High-resolution bioclimatic variables and a curated dataset of georeferenced occurrence records were used to calibrate and validate the models. To ensure robustness, variable selection was performed through correlation filtering, and models were evaluated using AUC, TSS, and Kappa metrics. Model outputs revealed a marked contraction of highly suitable habitats under both scenarios, with losses reaching up to 85% under SSP5-8.5. In contrast, areas currently classified as unsuitable are projected to gain suitability, particularly in lower elevation belts of moist Afromontane zones, and higher elevation belts in northern Ethiopia suggesting potential downslope range shifts. Delta maps and transition matrices indicated widespread redistribution, including fragmentation and quality downgrading of core habitats. These findings highlight the dual challenges and opportunities posed by climate change for J. procera. While habitat loss and ecological fragmentation threaten long-term species viability, gains in new areas may offer pathways for adaptation provided dispersal, land use, and landscape connectivity are addressed. This study underscores the need for climate-informed, spatially explicit conservation strategies. Recommendations include prioritizing in-situ protection of climate refugia, promoting assisted migration to emerging suitable zones, and restoring degraded landscapes to support ecological resilience. These insights support ecosystem-based adaptation and sustainable forest management planning under Ethiopias national conservation and afforestation initiatives.

ecology↗

Diversity of arbuscular mycorrhizal fungi under the rhizosphere soil of different cropping systems surrounding Hawassa town, South Ethiopia

This research was conducted to study the diversity of Arbuscular Mycorrhizal Fungi (AMF) in the rhizosphere of different plants at the vicinity of Hawassa city, Southern Ethiopia. The rate of root colonisation and diversity of AMF in the rhizosphere soils of permanent crops, major annual crops, forest areas, and open grazing fields were investigated. It discovered 928 spores of 23 distinct AMF morpho-species in 12 AMF genera and 12 annual and perennial crops. The AMF genera identified were: Acaulospora, Cetraspora, Claroideoglomus, Dentiscutata, Diversispora, Funneliformis, Gigaspora, Glomus, Racocetra, Rhizophagus, Sclerocystis, and Scutellospora. In tomatoes grown inorganically, a compromised species richness may result from the extensive use of agrochemicals. Further research into the effects of agricultural inputs on the subsurface microbial population may be necessary, as this is outside the purview of this publication. When compared to all other land uses, the AMF beneath the rhizosphere soil of Eucalyptus trees has the largest biomass, with spore density of 1907.4{+/-}0.404 spores 100g-1 of dry soil. The lowest AMF biomass has been recorded in the rhizosphere soil of Mango tree, with spore density of 260.1{+/-}0.121 spores 100g-1 dry soil. The results of this study show that the mycorrhizal colonisation and spore density of the plants under investigation are decreased by monocropping, intense agricultural practises, and the application of inorganic fertilisers. Thus, it is thought that conservation agriculture, together with the development of plant species consortiums in agricultural polts, will preserve the biological diversity of Arbuscular mycorrhizal fungi and the integrity of the environment. Significance of the study to the field- plant species diversity is dependent on arbuscular mycorrhizal fungi diversity and density - AMF Favours environmental resilience, carbon sequestration, and improves soil structure - Application of inorganic agricultural inputs decrease, AMF diversity - AMF diversity is affected by land use change, environmental pollution and climate change

microbiology↗