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For a better production, agriculture areas need to recover at least 20% of natural habitat

International agreements aim to conserve 17% of Earth's land area by 2020 but include no area-based conservation targets within the working landscapes that support human needs through farming, ranching, and forestry. Through a review of country-level legislation, this study found that just 38% of countries have minimum area requirements for conserving native habitats within working landscapes. The study argues for increasing native habitats to at least 20% of working landscape area where it is below this minimum. Such target has benefits for food security, nature's contributions to people, and the connectivity and effectiveness of protected area networks in biomes in which protected areas are underrepresented. Other urgings of the review include maintaining native habitat at higher levels where it currently exceeds the 20% minimum, and a literature review shows that even more than 50% native habitat restoration is needed in particular landscapes. Including a >20% native habitats within working landscapes restoration target offers an unrivaled opportunity to simultaneously enhance biodiversity, food security and quality of life. The post-2020 Global Biodiversity Framework is an opportune moment to include a minimum habitat restoration target for working landscapes that contributes to, but does not compete with, initiatives for expanding protected areas, the UN Decade on Ecosystem Restoration (2021–2030) and the UN Sustainable Development Goals. informacion[at]ebd.csic.es: Garibaldi et al (2020) Working landscapes need at least 20% native habitat. Conserv Letter DOI: 10.1111/conl.12773


https://conbio.onlinelibrary.wiley.com/doi/full/10.1111/conl.12773
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Carp eggs survive transport through avian intestine

Carp eggs survive transport through avian intestine

Fish have somehow colonized isolated water bodies all over the world without human assistance. It has long been speculated that these colonization events are assisted by waterbirds, transporting fish eggs attached to their feet and feathers, yet empirical support for this is lacking. Recently, it was suggested that endozoochory (i.e., internal transport within the gut) might play a more important role, but only highly resistant diapause eggs of killifish have been found to survive passage through waterbird guts. A controlled feeding experiment was performed, where developing eggs of two cosmopolitan, invasive cyprinids (common carp, Prussian carp) were fed to captive mallards (Anas platyrhynchos). Live embryos of both species were retrieved from fresh feces and survived beyond hatching. This study identifies an overlooked dispersal mechanism in fish, providing evidence for bird-mediated dispersal ability of soft-membraned eggs undergoing active development. Only 0.2% of ingested eggs survived gut passage, yet, given the abundance, diet, and movements of ducks in nature, these results have major implications for biodiversity conservation and invasion dynamics in freshwater ecosystems. informacion[at]ebd.csic.es: Lovas-Kiss et al (2020) Experimental evidence of dispersal of cyprinid eggs inside migratory waterfowl. PNAS doi/10.1073/pnas.2004805117


https://www.pnas.org/content/early/2020/06/17/2004805117