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3. Genome size is positively correlated with extinction risk in herbaceous angiosperms.

4. Areas of global importance for conserving terrestrial biodiversity, carbon and water

5. The global distribution of angiosperm genome size is shaped by climate

9. Plant diversity darkspots for global collection priorities

10. Indigenous crop diversity maintained despite the introduction of major global crops in an African centre of agrobiodiversity

11. The likely extinction of hundreds of palm species threatens their contributions to people and ecosystems

12. Author Correction: Areas of global importance for conserving terrestrial biodiversity, carbon and water

13. Machine learning enhances prediction of plants as potential sources of antimalarials

14. Seasonal dynamics of Anopheles stephensi and its implications for mosquito detection and emergent malaria control in the Horn of Africa

17. Madagascar’s extraordinary biodiversity: Evolution, distribution, and use

18. Madagascar’s extraordinary biodiversity: Threats and opportunities

20. Seasonal Dynamics of Anopheles stephensi and its Implications for Mosquito Detection and Emergent Malaria Control in the Horn of Africa

24. Shifts in the abiotic and biotic environment of cultivated sunflower under future climate change☆

26. Introduced crops supplement rather than replace indigenous crops in an African center of agrobiodiversity

28. Supplementary Information - Additional Methods & Results from A novel statistical framework for exploring the population dynamics and seasonality of mosquito populations

36. Prioritising crop wild relatives to enhance agricultural resilience in sub‐Saharan Africa under climate change

37. Plant Diversity Conservation Challenges and Prospects—The Perspective of Botanic Gardens and the Millennium Seed Bank

40. Areas of global importance for conserving terrestrial biodiversity, carbon and water:[incl. correction]

41. Global mismatches between crop distributions and climate suitability

42. Species distribution models rarely predict the biology of real populations.

43. Prioritising crop wild relatives to enhance agricultural resilience in sub‐Saharan Africa under climate change.

45. The Ecological Structure of Mosquito Population Seasonal Dynamics

46. Weak support for the abundant niche-centre hypothesis in North American birds

47. Incorporating phylogeography for modelling the distribution of the carob tree (Ceratonia siliqua, Leguminosae) in future climate change

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