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Biology subjects

Weigand, A.

Publications and source records attributed to Weigand, A..

2 recordsLinked to original sources

Paleogene mass extinction and ongoing Neogene recolonization shape the tropical African flora

Tropical regions are known to host most of the global biodiversity, yet species richness varies drastically between continents. Tropical Africa has long been recognized as the "odd man out", exhibiting lower plant diversity compared to other tropical continents, but the underlying causes remain debated. Here, we use ferns as a model group to explore the processes responsible for the low diversity of African plants. We find that the current fern diversity in Africa, particularly in humid regions, is up to 84% lower than under similar climatic conditions in the Americas and Asia. Unlike on these continents, where 55-60% of extant fern diversity is the result of in-situ diversification of Gondwanan lineages, only 16% of African fern diversity originates from such lineages. This discrepancy points to significant African extinction periods during the Paleogene and mid-Miocene, likely driven by elevated temperatures and aridification. In contrast, 54% of the extant African fern diversity can be attributed to approximately 530 intercontinental dispersal events during the Neogene, indicating ongoing recolonization of Africa. Our findings provide unprecedented insight into the evolutionary forces shaping plant diversity in tropical Africa and highlight the potential risks posed by ongoing climate change to its botanical heritage.

ecology↗

Water diviners multiplied: cryptic diversity in the Niphargus aquilex species complex in Northern Europe

As for many other groups, patterns of biodiversity for subter-ranean crustaceans in Europe indicate larger morphospecies ranges at higher latitudes (the so-called Rapoport effect). However, this observed correlation may be artefactual if many of those high-latitude, widely distributed morphospecies are actually species complexes. To test this hypothesis, we looked for previously undetected species boundaries within Niphargus aquilex and Niphargus schellenbergi, two closely related morphospecies of groundwater amphipods widely distributed in northern Europe, by sequencing fragments of the mitochondrial cytochrome c oxidase subunit I gene (COI) and of the nuclear 28S ribosomal RNA gene of 198 individuals collected across their area of distribution. Distance-based and allele sharing-based species delimitation approaches were congruent in revealing the existence of at least eight species within N. aquilex and at least two species with N. schellenbergi. Our data demonstrate that these two common morphospecies with large ranges are actually complexes of species with narrower distributions, suggesting that the Rapoport effect might be the result of increased morphological stasis at high latitudes rather than actual differences in sizes of distribution ranges.

zoology↗