Literature DB >> 21665755

Urticalean rosids: circumscription, rosid ancestry, and phylogenetics based on rbcL, trnL-F, and ndhF sequences.

Kenneth J Sytsma1, Jeffery Morawetz, J Chris Pires, Molly Nepokroeff, Elena Conti, Michelle Zjhra, Jocelyn C Hall, Mark W Chase.   

Abstract

To address the composition of the urticalean rosids, the relationships of the component families (maximally Cannabaceae, Cecropiaceae, Celtidaceae, Moraceae, Ulmaceae, and Urticaceae) and analyze evolution of morphological characters, we analyzed sequence variation for a large sampling of these families and various rosid outgroups using rbcL, trnL-F, and ndhF plastid regions. Urticalean rosids are derived out of a lineage including Barbeyaceae, Dirachmaceae, Elaeagnaceae, and Rhamnaceae, with Rosaceae less closely related; thus, they are imbedded within Rosales. Ulmaceae are the sister to all remaining families. Cannabaceae are derived out of a subclade of Celtidaceae; this expanded family should be called Cannabaceae. Cecropiaceae are derived within Urticaceae and are polyphyletic with Poikilospermum derived elsewhere within Urticaceae; this expanded family should be called Urticaceae. Monophyletic Moraceae are sister to this expanded Urticaceae. Support for these relationships comes from a number of morphological characters (floral sexuality, presence or absence of hypanthium, stamen type and dehiscence, pollen pore number, ovule position, and embryo alignment) and chromosome numbers. Most fruit types, in terms of ecological dispersal, are derived independently multiple times and are strongly correlated with habitat.

Entities:  

Year:  2002        PMID: 21665755     DOI: 10.3732/ajb.89.9.1531

Source DB:  PubMed          Journal:  Am J Bot        ISSN: 0002-9122            Impact factor:   3.844


  16 in total

1.  60 million years of co-divergence in the fig-wasp symbiosis.

Authors:  Nina Rønsted; George D Weiblen; James M Cook; Nicolas Salamin; Carlos A Machado; Vincent Savolainen
Journal:  Proc Biol Sci       Date:  2005-12-22       Impact factor: 5.349

2.  Repeated evolution of net venation and fleshy fruits among monocots in shaded habitats confirms a priori predictions: evidence from an ndhF phylogeny.

Authors:  Thomas J Givnish; J Chris Pires; Sean W Graham; Marc A McPherson; Linda M Prince; Thomas B Patterson; Hardeep S Rai; Eric H Roalson; Timothy M Evans; William J Hahn; Kendra C Millam; Alan W Meerow; Mia Molvray; Paul J Kores; Heath E O'Brien; Jocelyn C Hall; W John Kress; Kenneth J Sytsma
Journal:  Proc Biol Sci       Date:  2005-07-22       Impact factor: 5.349

Review 3.  Evolutionary origin of rhizobium Nod factor signaling.

Authors:  Arend Streng; Rik op den Camp; Ton Bisseling; René Geurts
Journal:  Plant Signal Behav       Date:  2011-10-01

Review 4.  Biological nitrogen fixation in non-legume plants.

Authors:  Carole Santi; Didier Bogusz; Claudine Franche
Journal:  Ann Bot       Date:  2013-03-10       Impact factor: 4.357

5.  Evaluation of a 13-loci STR multiplex system for Cannabis sativa genetic identification.

Authors:  Rachel Houston; Matthew Birck; Sheree Hughes-Stamm; David Gangitano
Journal:  Int J Legal Med       Date:  2015-12-10       Impact factor: 2.686

Review 6.  Symbiotic Nitrogen Fixation and the Challenges to Its Extension to Nonlegumes.

Authors:  Florence Mus; Matthew B Crook; Kevin Garcia; Amaya Garcia Costas; Barney A Geddes; Evangelia D Kouri; Ponraj Paramasivan; Min-Hyung Ryu; Giles E D Oldroyd; Philip S Poole; Michael K Udvardi; Christopher A Voigt; Jean-Michel Ané; John W Peters
Journal:  Appl Environ Microbiol       Date:  2016-06-13       Impact factor: 4.792

7.  Nutritional, antioxidative, and antimicrobial analysis of the Mediterranean hackberry (Celtis australis L.).

Authors:  Ajda Ota; Ana Miklavčič Višnjevec; Rajko Vidrih; Željko Prgomet; Marijan Nečemer; Janez Hribar; Nina Gunde Cimerman; Sonja Smole Možina; Milena Bučar-Miklavčič; Nataša Poklar Ulrih
Journal:  Food Sci Nutr       Date:  2016-04-27       Impact factor: 2.863

8.  Phylogeny and biogeography of the amphi-Pacific genus Aphananthe.

Authors:  Mei-Qing Yang; De-Zhu Li; Jun Wen; Ting-Shuang Yi
Journal:  PLoS One       Date:  2017-02-07       Impact factor: 3.240

9.  Biogeographic Overview of Ulmaceae: Diversity, Distribution, Ecological Preferences, and Conservation Status.

Authors:  Yann Fragnière; Yi-Gang Song; Laurence Fazan; Steven R Manchester; Giuseppe Garfì; Gregor Kozlowski
Journal:  Plants (Basel)       Date:  2021-05-31

10.  Draft genome sequence of the mulberry tree Morus notabilis.

Authors:  Ningjia He; Chi Zhang; Xiwu Qi; Shancen Zhao; Yong Tao; Guojun Yang; Tae-Ho Lee; Xiyin Wang; Qingle Cai; Dong Li; Mengzhu Lu; Sentai Liao; Guoqing Luo; Rongjun He; Xu Tan; Yunmin Xu; Tian Li; Aichun Zhao; Ling Jia; Qiang Fu; Qiwei Zeng; Chuan Gao; Bi Ma; Jiubo Liang; Xiling Wang; Jingzhe Shang; Penghua Song; Haiyang Wu; Li Fan; Qing Wang; Qin Shuai; Juanjuan Zhu; Congjin Wei; Keyan Zhu-Salzman; Dianchuan Jin; Jinpeng Wang; Tao Liu; Maode Yu; Cuiming Tang; Zhenjiang Wang; Fanwei Dai; Jiafei Chen; Yan Liu; Shutang Zhao; Tianbao Lin; Shougong Zhang; Junyi Wang; Jian Wang; Huanming Yang; Guangwei Yang; Jun Wang; Andrew H Paterson; Qingyou Xia; Dongfeng Ji; Zhonghuai Xiang
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.