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Rasolozaka, M.

Publications and source records attributed to Rasolozaka, M..

2 recordsLinked to original sources

Influence of vegetation structure on lemur recolonization of post-fire habitats in northwestern Madagascar

Habitat quality is a key determinant of wildlife distribution and persistence. Any disturbance such as fire degrades forest habitats by increasing canopy openness, reducing tree basal area, and eliminating large, cavity-bearing trees providing shelter for many species. In Madagascar, fire has become a prominent disturbance, yet the mechanisms linking fire disturbance to lemur habitat occupation remain poorly understood. Using Generalized Linear Mixed Models, we assessed the effects of forest humidity, temperature, vegetation structural gradients, and tree species richness on lemur occurrence, and evaluated the impact of fire regime parameters on significant abiotic and structural vegetation gradients. Lemur responses varied by body size and ecological specialization. Eulemur fulvus most likely occurred in humid habitats with high floristic diversity. The latter also explained best the presence of Avahi occidentalis and Cheirogaleus medius, while Lepilemur edwardsi was rather connected to dense stands of overstory trees. Small-bodied Microcebus species displayed a higher structural and floristic tolerance. Tree species richness declined sharply in burnt areas and was highest in unburnt forest. Fires impacted vegetation structural gradients, increasing openness and understory density, while old burnt and unburnt forests maintained complex vertical layering. Tree species richness emerged as the strongest predictor of lemur species richness. These results indicate that fire primarily affects lemurs through floristic and structural pathways rather than microclimatic shifts, emphasizing the need to preserve intact forest refugia with mature canopies and species-rich tree communities to sustain lemur diversity under increasing fire pressure in dry forest landscapes of Madagascar. SummaryO_LIForest fires alter lemur habitats by reducing tree species richness and mature tree density. C_LIO_LIEulemur fulvus, Avahi occidentalis and Cheirogaleus medius preferentially occupied floristically diverse forests, suggesting the relevance of a diverse spectrum of food resources for species of divergent body size. C_LIO_LIThe medium-sized Lepilemur edwardsi was sensitive to fire-induced loss of canopy integrity, limiting their persistence in burnt forests, while small-bodied mouse lemurs (Microcebus ravelobensis and M. murinus) exhibited high resilience to fire-modulated habitat changes. C_LIO_LILemur species richness was strongly linked to tree species diversity, underscoring the role of floristic richness in post-fire lemur and habitat recovery. C_LI

ecology↗

Thirty years of deforestation within the entire ranges of nine endangered lemur species (3 CR, 4 EN, 2 VU) in northwestern Madagascar

Forest cover change is of particular concern in tropical regions. In this study, we investigate the degree of deforestation in the entire ranges of nine highly threatened lemur species in northwestern Madagascar. Landsat satellite images were acquired from four different time stages (1990, 2000, 2011, 2020), classified into forest/non-forest, and changes quantified. Forest cover declined from 17.5% to 9.3% within the last 30 years. This decline varied across four protected areas (PAs) investigated: the forest cover of Ankarafantsika National Park (ANP) declined only moderately over time (from 76.3% to 67.4%), while it declined drastically in other PAs (e.g., from 54.9% to 18.9%, Bongolava Forest Corridor). Two lemur taxa are most affected (Lepilemur otto, Microcebus bongolavensis) by having only very few isolated forest patches left within their ranges (approximately 542.7 km{superscript 2}). For two other species (L. ahmansoni, L. aeeclis), most of the remaining forest is concentrated in two coastal PAs (in total 627.2 and 477.9 km{superscript 2}, respectively), while those species occurring inside ANP (5 taxa) experienced rather stable forest coverage until 2020. A reversal of these deforestation trends and active reforestation measures are desperately needed to reduce habitat loss for these nine lemur species. A practical experience-based guideline is therefore provided.

ecology↗