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Holle, M. J. M.

Publications and source records attributed to Holle, M. J. M..

2 recordsLinked to original sources

How do conservationists choose where to publish?

Conservation literature addresses a broad spectrum of interdisciplinary questions and benefits most by representing a diverse range of authors, particularly those from countries where much conservation work is focused. In other disciplines, it is well known that barriers and biases exist in the academic publishing sphere, which can impact research dissemination and an authors career development. Here, we used a Discrete Choice Experiment to determine how different journal attributes impact authors choices of where to publish in conservation. We identified three demographic groups across 1038 respondents who have previously published in conservation journals, each exhibiting different publishing preferences. Only two attributes showed a consistent response across groups: cost to publish negatively impacted journal choice, including for those in high-income countries, and authors had a consistent preference for double-blind review. Authors from middle-income countries were willing to pay more for society-owned journals, unlike authors from higher-income countries. Journals with a broad geographical scope, which were Open Access, and which had higher impact factors were preferable to two of the three demographic groups. However, we found journal scope and Open Access were more important in dictating journal choice than impact factor. Overall, our findings demonstrate that different demographics experience different preferences or limitations depending on attributes such as a journals Open Access policy. However, the scarcity of published authors from low-income countries highlights further, pervasive barriers to representation in conservation research. Based on our findings, we provide recommendations to conservation-related journals to reduce barriers to publishing and ultimately benefit conservation science.

scientific communication and education↗

Altered litter and cellulose decomposition across an anthropogenic habitat modification gradient in Sulawesi, Indonesia

O_LIMany tropical regions in Southeast Asia have experienced extensive habitat modification, creating a mosaic of forested and agricultural land. The capacity of these human-modified tropical landscapes to support biodiversity and ecosystem functions and services is of considerable practical interest. C_LIO_LIDecomposition of plant material is a key process maintaining the nutrient cycle in both natural and agro-ecosystems, but few studies have documented the relative contributions of different guilds of decomposers, acting on different plant substrates, across different tropical land-uses. C_LIO_LIWe measured decomposition of leaf litter and cellulose across a gradient of anthropogenic habitat modification (forest, shrubland, and corn farmland) within Panua Nature Reserve, Sulawesi, Indonesia. The influence of fungi and the litter invertebrate community were investigated experimentally. C_LIO_LIDecomposition of both substrates was significantly lower in corn plantations than in forest sites. Partial exclusion of litter invertebrates, but not fungi, significantly reduced decomposition, but the feeding guild composition of the litter invertebrate community did not differ significantly across habitat types. C_LIO_LIOur results confirm that even small-scale agricultural areas adjacent to forest fragments can experience impaired ecosystem functions. These changes can be linked to reduced invertebrate activity, apparently independent of the functional structure of the litter invertebrate community. Effective management of human-modified landscapes will be needed to maintain nutrient cycling, even in areas where agroecosystems and tropical forests occur in close proximity. C_LI HighlightsO_LIHabitat modification alters litter and cellulose decomposition C_LIO_LISmall-scale agriculture near forest fragments can impair ecosystem functions. C_LIO_LIExclusion of litter invertebrates, but not fungi, significantly reduced decomposition. C_LIO_LIMaintaining nutrient cycling requires effective management of human-altered landscapes. C_LI

ecology↗