4.7 Article

Multigene phylogeny of the red algal subclass Nemaliophycidae

期刊

MOLECULAR PHYLOGENETICS AND EVOLUTION
卷 94, 期 -, 页码 730-736

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ympev.2015.10.015

关键词

Red algae; Tree of life; Freshwater macrophytes; Seaweeds; Simulation analysis; Hard polytomy

资金

  1. NSF DEB [0936855, 0936884]
  2. Discovery and Accelerator Grants from the Natural Sciences and Engineering Research Council of Canada
  3. Canada Research Chair Program
  4. Canada Foundation for Innovation
  5. New Brunswick Innovation Foundation
  6. Division Of Environmental Biology
  7. Direct For Biological Sciences [0936884, 0936855] Funding Source: National Science Foundation

向作者/读者索取更多资源

The red algae (Rhodophyta) are a lineage of primary endosymbionts whose ancestors represent some of the first photosynthetic eukaryotes on the planet. They primarily inhabit marine ecosystems, with only similar to 5% of species found in freshwater systems. The subclass Nemaliophycidae is very diverse in ecological and life history features and therefore a useful model to study these traits, but the phylogenetic relationships among the orders are, for the most part, poorly resolved. To elucidate the phylogeny of the Nemaliophycidae, we constructed a nine-gene dataset comprised of nuclear, plastid, and mitochondria( markers for 67 red algal specimens. The resulting maximum likelihood (ML) phylogeny confirmed the monophyly of all orders. The sister relationship of the Acrochaetiales and Palmariales received high support and the relationship of the Balliales with Balbianiales and Entwisleiales with Colaconematales was moderately supported. The Nemaliales, Entwisleiales, Colaconematales, Palmariales and Acrochaetiales formed a highly supported clade. Unfortunately, all other relationships among the orders had low boot-strap support. Although the ML analysis did not resolve many of the relationships, further analyses suggested that a resolution is possible. A Phycas analysis supported a dichotomously branching tree and Bayesian analysis showed a similar topology with all relationships highly supported. Simulations extrapolating the number of nucleotide characters beyond the current size of the dataset suggested that most nodes in the phylogeny would be resolved if more data become available. Phylogenomic approaches will be necessary to provide a well-supported phylogeny of this subclass with all relationships resolved such that the evolution of freshwater species from marine ancestors as well as reproductive traits can be explored. (C) 2015 Elsevier Inc. All rights reserved.

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