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Biology subjects

Hazard, Q. C. K.

Publications and source records attributed to Hazard, Q. C. K..

2 recordsLinked to original sources

Indirect effects of habitat amount mediated by habitat configuration determine bat diversity at the landscape-scale in Peninsular Malaysia

The impacts of fragmentation are often overlooked in landscape studies investigating how habitat loss impacts biodiversity, despite the casual relationship linking both processes. As habitat loss is the primary cause of fragmentation, understanding the inter-related effects of these twin processes on biodiversity is key to minimise biodiversity loss. Here we assess how habitat amount and configuration influence insectivorous bat assemblages, considering both the direct effects of these processes, as well as the indirect effects of habitat amount mediated through configuration. Bats were acoustically surveyed along independent gradients of habitat amount (forest cover) and configuration (number of patches and edge density) across 28 insular landscapes embedded within a Malaysian hydroelectric reservoir. Using Structural Equation Modelling, the direct and indirect effects of habitat amount were examined on bat sonotype richness, total, and guild-specific activity (forest, edge and open-space foragers). Forest cover had a direct and positive effect on sonotype richness and forest forager activity. The quadratic relationship linking edge density and forest cover was strong and overall positive, but while below 30% of forest cover, increasingly forested landscapes had increasingly high edge densities, the opposite pattern was observed in more forested landscapes. On the other hand, increasingly forested landscapes consistently harboured less patches. Owing to the overall low habitat amount in our landscapes and negative edge effects, the indirect effects of forest cover (mediated through edge density) were therefore negative on sonotype richness, outweighing any positive direct effect. The number of patches had little effect on the bat assemblage, except on total activity which was higher in landscapes harbouring more forest patches. As a result, negative indirect effects of forest cover mediated through number of patches were only observed on total activity. Our results highlight that, in natural settings, habitat amount can hardly be altered without influencing habitat configuration, thereby preventing any independent management of these threats. Minimising habitat loss is therefore essential to balance the associated prevailing negative effects of fragmentation on insectivorous bats across tropical forests.

ecology↗

Foraging guild modulates insectivorous bat responses to habitat loss and insular fragmentation in peninsular Malaysia

Despite mounting evidence on the ecological impacts of damming for biodiversity, little is known regarding its consequences in the hyper-diverse Southeast Asian tropical forests. Here we assess the effects of habitat loss and fragmentation on the diversity and activity of insectivorous bats within the hydroelectric Kenyir Lake in peninsular Malaysia. We surveyed bat assemblages on 26 islands and two mainland continuous forest sites using passive acoustic monitoring. Echolocation calls were classified into sonotypes, each corresponding to either one or multiple species, and grouped into foraging guilds. We then examined bat overall assemblage (sonotype richness, activity, and composition), guild- and sonotype-specific activity. From 9360 hours of recordings, we identified 16 bat sonotypes, including 10 forest (2854 bat passes), three edge (13 703) and three open-space foragers (3651). Sonotype richness increased towards denser forest structures (higher Normalized Difference Vegetation Index - NDVI), while species composition varied across the gradient of forest area. Forest foragers were positively affected by NDVI and negatively affected by distance to the closest neighbour, whereas edge foragers activity increased in smaller islands. Of the six sonotypes analysed, the activity of one forest sonotype increased with forest area, while that of one edge sonotype decreased. Ensuring habitat quality within insular forest remnants, in addition to their functional connectivity, maximises bat diversity, including the persistence of forest foraging species. Future hydropower development should therefore avoid the creation of a myriad of small, isolated, and habitat-degraded islands further characterised by altered levels of bat diversity and guild-level activity. HighlightsO_LIWe assessed the diversity of insectivorous bats in dam-induced islands in Malaysia C_LIO_LISpecies persistence was modulated by island size and habitat quality C_LIO_LIForest foragers were negatively affected by island isolation and degradation C_LIO_LIEdge foragers benefited from fragmentation, increasing in activity on smaller islands C_LIO_LIBy creating multiple small, isolated, degraded islands, damming erodes bat diversity C_LI

ecology↗