In today's article, we are going to talk about
Cetruminantia . This topic is of utmost importance in today's society, as it has a significant impact on various aspects of our daily lives. Over the years,
Cetruminantia has been the subject of debates, research and discussions, demonstrating its relevance in different areas. Therefore, it is essential to thoroughly understand what
Cetruminantia is and how it influences our daily lives. Through this article, we propose to analyze in detail the different facets of
Cetruminantia , its history, its impact on society and the possible solutions or proposals to address this issue.
Taxonomic clade
The Cetruminantia are a clade made up of the Cetancodontamorpha (or Whippomorpha ) and their closest living relatives, the Ruminantia .[ 1]
Cetruminantia's placement within Artiodactyla can be represented in the following cladogram :[ 2] [ 3] [ 4] [ 5] [ 6]
Classification
Order Artiodactyla (even-toed ungulates)
Tylopoda (camelids)
Artiofabula (ruminants , pigs , peccaries , whales , and dolphins )
Suina (pigs and peccaries)
Cetruminantia (ruminants , whales , and dolphins )
Suborder Ruminantia (antelope , buffalo, cattle , goats , sheep , deer , giraffes , and chevrotains )
Family Antilocapridae (pronghorn)
Family Bovidae , 135 species (antelope , bison , buffalo , cattle , goats , and sheep )
Family Cervidae , 55~94 species (deer , elk , and moose )
Family Giraffidae , 2 species (giraffes , okapis )
Family Moschidae , 4~7 species (musk deer)
Family Tragulidae , 6~10 species (chevrotains, or mouse deer)
Suborder Whippomorpha (aquatic or semi-aquatic even-toed ungulates)
References
^ A higher-level MRP supertree of placental mammals
^ Beck, N.R. (2006). "A higher-level MRP supertree of placental mammals" . BMC Evol Biol . 6 : 93. doi :10.1186/1471-2148-6-93 . PMC 1654192 . PMID 17101039 .
^ O'Leary, M.A.; Bloch, J.I.; Flynn, J.J.; Gaudin, T.J.; Giallombardo, A.; Giannini, N.P.; et al. (2013). "The placental mammal ancestor and the post-K-Pg radiation of placentals". Science . 339 (6120): 662– 667. doi :10.1126/science.1229237 . hdl :11336/7302 . PMID 23393258 . S2CID 206544776 .
^ Song, S.; Liu, L.; Edwards, S.V.; Wu, S. (2012). "Resolving conflict in eutherian mammal phylogeny using phylogenomics and the multispecies coalescent model" . Proceedings of the National Academy of Sciences . 109 (37): 14942– 14947. doi :10.1073/pnas.1211733109 . PMC 3443116 . PMID 22930817 .
^ dos Reis, M.; Inoue, J.; Hasegawa, M.; Asher, R.J.; Donoghue, P.C.J.; Yang, Z. (2012). "Phylogenomic datasets provide both precision and accuracy in estimating the timescale of placental mammal phylogeny" . Proceedings of the Royal Society B: Biological Sciences . 279 (1742): 3491– 3500. doi :10.1098/rspb.2012.0683 . PMC 3396900 . PMID 22628470 .
^ Upham, N.S.; Esselstyn, J.A.; Jetz, W. (2019). "Inferring the mammal tree: Species-level sets of phylogenies for questions in ecology, evolution, and conservation" . PLOS Biology . 17 (12): e3000494. doi :10.1371/journal.pbio.3000494 . PMC 6892540 . PMID 31800571 ; (see fig S10)