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  6. A Southern Hemisphere origin for campanulid angiosperms, with traces of the break-up of Gondwana
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A Southern Hemisphere origin for campanulid angiosperms, with traces of the break-up of Gondwana

Date Issued
April 8, 2013
Author(s)
Beaulieu, Jeremy M.  
Tank, David C.
Donoghue, Michael J.
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/48811
Abstract

Background


New powerful biogeographic methods have focused attention on long-standing hypotheses regarding the influence of the break-up of Gondwana on the biogeography of Southern Hemisphere plant groups. Studies to date have often concluded that these groups are too young to have been influenced by these ancient continental movements. Here we examine a much larger and older angiosperm clade, the Campanulidae, and infer its biogeographic history by combining Bayesian divergence time information with a likelihood-based biogeographic model focused on the Gondwanan landmasses.

Results

Our analyses imply that campanulids likely originated in the middle Albian (~105 Ma), and that a substantial portion of the early evolutionary history of campanulids took place in the Southern Hemisphere, despite their greater species richness in the Northern Hemisphere today. We also discovered several disjunctions that show biogeographic and temporal correspondence with the break-up of Gondwana.

Conclusions

While it is possible to discern traces of the break-up of Gondwana in clades that are old enough, it will generally be difficult to be confident in continental movement as the prime cause of geographic disjunctions. This follows from the need for the geographic disjunction, the inferred biogeographic scenario, and the dating of the lineage splitting events to be consistent with the causal hypothesis.

Subjects

Campanulidae

Campanulids

Biogeography

Gondwana

Southern Hemisphere

Vicariance

Disciplines
Mathematics
Recommended Citation
BMC Evolutionary Biology 2013, 13:80 doi:10.1186/1471-2148-13-80
Embargo Date
July 10, 2013
File(s)
Thumbnail Image
Name

1471_2148_13_80.pdf

Size

2.43 MB

Format

Adobe PDF

Checksum (MD5)

9105184f011d31a11a54775e594b60a9


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