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Biology subjects

Sousa, H. C.

Publications and source records attributed to Sousa, H. C..

2 recordsLinked to original sources

Severe fire regimes select for highly resilient populations in ectotherms

O_LIUnderstanding populations responses to environmental change is crucial for mitigating human-induced disturbances. C_LIO_LIHere, we test hypotheses regarding how three essential components of demographic resilience (resistance, compensation, and recovery) co-vary along the distinct life histories of three lizard species exposed to variable, prescribed fire regimes. C_LIO_LIUsing a Bayesian hierarchical framework, we estimate vital rates (survival, growth, and reproduction) with 14 years of monthly individual-level data and mark-recapture models to parameterize stochastic Integral Projection Models from five sites in Brazilian savannas, each historically subjected to different fire regimes. With these models, we investigate how weather, microclimate, and ecophysiological traits of each species influence their vital rates, emergent life history traits, and demographic resilience components in varying fire regimes. C_LIO_LIOverall, weather and microclimate are better predictors of the species vital rates, rather than their ecophysiological traits. Our findings reveal that severe fire regimes increase populations resistance, but decrease compensation or recovery abilities. Instead, populations have higher compensatory and recovery abilities at intermediate degrees of fire severity. Additionally, we identify generation time and reproductive output as predictors of resilience trends across fire regimes and climate. Our analyses demonstrate that the probability and quantity of monthly reproduction are the proximal drivers of demographic resilience across the three species. C_LIO_LIOur findings suggest that populations surpass a tipping point in severe fire regimes and achieve an alternative stable state to persist. Thus, higher heterogeneity in fire regimes can increase the reproductive aspects and resilience of different populations and avoid high-severity regimes that homogenize the environment. Despite being more resistant, species with long generation times and low reproductive output take longer to recover and cannot compensate as much as species with faster paces of life. We emphasize how reproductive constraints, such as viviparity and fixed clutch sizes, impact the ability of ectothermic populations to benefit and recover from disturbances, underscoring their relevance in conservation assessments. C_LI

ecology↗

Riparian forest restoration as sources of biodiversity and ecosystem functions in anthropogenic landscapes

AO_SCPLOWBSTRACTC_SCPLOWO_LIRestoration of tropical riparian forests is challenging, since these ecosystems are the most diverse, dynamic, and complex physical and biological terrestrial habitats. This study tested whether biodiversity can predict ecosystem functions in a human-impacted tropical riparian forest. C_LIO_LIWe explored the effects of several biodiversity components (taxonomic or functional groups) on different ecosystem functions associated with restored riparian forests C_LIO_LIOverall, 49% of the biodiversity components showed positive effects on ecosystem functions, each component to a different degree. In general, our results showed that both taxonomic and functional biodiversity had strong effects on ecosystem functions indicating that floral and faunal biodiversity enhanced the multifunctionality of these restored riparian tropical forests. C_LIO_LIThese findings indicate that in restored riparian forests, recovery of biodiversity is followed by improvement in important ecosystem functions that are the basis for successful restoration. Future research and policy for restoration programs must focus on restoring elementary faunal and floral components of biodiversity in order to promote ecosystem multifunctionality. C_LI

ecology↗