Diversification, biogeographic pattern, and demographic history of Taiwanese Scutellaria species inferred from nuclear and chloroplast DNA

PLoS One. 2012;7(11):e50844. doi: 10.1371/journal.pone.0050844. Epub 2012 Nov 30.

Abstract

The ragged topography created by orogenesis generates diversified habitats for plants in Taiwan. In addition to colonization from nearby mainland China, high species diversity and endemism of plants is also present in Taiwan. Five of the seven Scutellaria species (Lamiaceae) in Taiwan, for example, are endemic to the island. Hypotheses of multiple sources or in situ radiation have arisen to explain the high endemism of Taiwanese species. In this study, phylogenetic analyses using both nuclear and chloroplast markers revealed the multiple sources of Taiwanese Scutellaria species and confirmed the rapid and recent speciation of endemic species, especially those of the "indica group" composed of S. indica, S. austrotaiwanensis, S. tashiroi, and S. playfairii. The common ancestors of the indica group colonized first in northern Taiwan and dispersed regionally southward and eastward. Climate changes during glacial/interglacial cycles led to gradual colonization and variance events in the ancestors of these species, resulting in the present distribution and genetic differentiation of extant populations. Population decline was also detected in S. indica, which might reflect a bottleneck effect from the glacials. In contrast, the recently speciated endemic members of the indica group have not had enough time to accumulate much genetic variation and are thus genetically insensitive to demographic fluctuations, but the extant lineages were spatially expanded in the coalescent process. This study integrated phylogenetic and population genetic analyses to illustrate the evolutionary history of Taiwanese Scutellaria of high endemism and may be indicative of the diversification mechanism of plants on continental islands.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Bayes Theorem
  • Cell Nucleus / genetics*
  • DNA, Chloroplast / genetics*
  • DNA, Plant / genetics*
  • Genetic Variation*
  • Haplotypes / genetics
  • Models, Genetic
  • Molecular Sequence Data
  • Phylogeny
  • Phylogeography*
  • Population Dynamics
  • Scutellaria / genetics*
  • Scutellaria / growth & development*
  • Species Specificity
  • Taiwan

Substances

  • DNA, Chloroplast
  • DNA, Plant

Associated data

  • GENBANK/JX981343
  • GENBANK/JX981344
  • GENBANK/JX981345
  • GENBANK/JX981346
  • GENBANK/JX981347
  • GENBANK/JX981348
  • GENBANK/JX981349
  • GENBANK/JX981350
  • GENBANK/JX981351
  • GENBANK/JX981352
  • GENBANK/JX981353
  • GENBANK/JX981354
  • GENBANK/JX981355
  • GENBANK/JX981356
  • GENBANK/JX981357
  • GENBANK/JX981358
  • GENBANK/JX981359
  • GENBANK/JX981360
  • GENBANK/JX981361
  • GENBANK/JX981362
  • GENBANK/JX981363
  • GENBANK/JX981364
  • GENBANK/JX981365
  • GENBANK/JX981366
  • GENBANK/JX981367
  • GENBANK/JX981368
  • GENBANK/JX981369
  • GENBANK/JX981370
  • GENBANK/JX981371
  • GENBANK/JX981372
  • GENBANK/JX981373
  • GENBANK/JX981374
  • GENBANK/JX981375
  • GENBANK/JX981376
  • GENBANK/JX981377
  • GENBANK/JX981378
  • GENBANK/JX981379
  • GENBANK/JX981380
  • GENBANK/JX981381
  • GENBANK/JX981382
  • GENBANK/JX981383
  • GENBANK/JX981384
  • GENBANK/JX981385
  • GENBANK/JX981386
  • GENBANK/JX981387
  • GENBANK/JX981388
  • GENBANK/JX981389
  • GENBANK/JX981390
  • GENBANK/JX981391
  • GENBANK/JX981392
  • GENBANK/JX981393
  • GENBANK/JX981394
  • GENBANK/JX981395
  • GENBANK/JX981396
  • GENBANK/JX981397
  • GENBANK/JX981398
  • GENBANK/JX981399
  • GENBANK/JX981400
  • GENBANK/JX981401
  • GENBANK/JX981402
  • GENBANK/JX981403
  • GENBANK/JX981404
  • GENBANK/JX981405
  • GENBANK/JX981406
  • GENBANK/JX981407
  • GENBANK/JX981408
  • GENBANK/JX981409
  • GENBANK/JX981410
  • GENBANK/JX981411
  • GENBANK/JX981412
  • GENBANK/JX981413
  • GENBANK/JX981414
  • GENBANK/JX981415
  • GENBANK/JX981416
  • GENBANK/JX981417
  • GENBANK/JX981418
  • GENBANK/JX981419
  • GENBANK/JX981420
  • GENBANK/JX981421
  • GENBANK/JX981422
  • GENBANK/JX981423
  • GENBANK/JX981424
  • GENBANK/JX981425
  • GENBANK/JX981426
  • GENBANK/JX981427
  • GENBANK/JX981428
  • GENBANK/JX981429
  • GENBANK/JX981430
  • GENBANK/JX981431
  • GENBANK/JX981432
  • GENBANK/JX981433
  • GENBANK/JX981434
  • GENBANK/JX981435
  • GENBANK/JX981436
  • GENBANK/JX981437
  • GENBANK/JX981438
  • GENBANK/JX981439
  • GENBANK/JX981440
  • GENBANK/JX981441
  • GENBANK/JX981442
  • GENBANK/JX981443
  • GENBANK/JX981444
  • GENBANK/JX981445
  • GENBANK/JX981446
  • GENBANK/JX985445
  • GENBANK/JX985446
  • GENBANK/JX985447
  • GENBANK/JX985448
  • GENBANK/JX985449
  • GENBANK/JX985450
  • GENBANK/JX985451
  • GENBANK/JX985452
  • GENBANK/JX985453
  • GENBANK/JX985454
  • GENBANK/JX985455
  • GENBANK/JX985456
  • GENBANK/JX985457

Grants and funding

Funding was provided by grants from the Forestry Bureau, Council of Agriculture (99AS-1.1.8-FB-e1) and the National Science Council, R.O.C (NSC 99-2621-B-020-001) to P-C Liao. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.