Literature DB >> 22180627

Different gene families in Arabidopsis thaliana transposed in different epochs and at different frequencies throughout the rosids.

Margaret R Woodhouse1, Haibao Tang, Michael Freeling.   

Abstract

Certain types of gene families, such as those encoding most families of transcription factors, maintain their chromosomal syntenic positions throughout angiosperm evolutionary time. Other nonsyntenic gene families are prone to deletion, tandem duplication, and transposition. Here, we describe the chromosomal positional history of all genes in Arabidopsis thaliana throughout the rosid superorder. We introduce a public database where researchers can look up the positional history of their favorite A. thaliana gene or gene family. Finally, we show that specific gene families transposed at specific points in evolutionary time, particularly after whole-genome duplication events in the Brassicales, and suggest that genes in mobile gene families are under different selection pressure than syntenic genes.

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Year:  2011        PMID: 22180627      PMCID: PMC3269863          DOI: 10.1105/tpc.111.093567

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  52 in total

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Review 4.  Consequences of genome duplication.

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5.  Rosid radiation and the rapid rise of angiosperm-dominated forests.

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7.  Many or most genes in Arabidopsis transposed after the origin of the order Brassicales.

Authors:  Michael Freeling; Eric Lyons; Brent Pedersen; Maqsudul Alam; Ray Ming; Damon Lisch
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10.  A mystery unveiled.

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  30 in total

1.  Gene Duplicability of Core Genes Is Highly Consistent across All Angiosperms.

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Journal:  Plant Cell       Date:  2016-01-07       Impact factor: 11.277

Review 2.  Parallelism and convergence in post-domestication adaptation in cereal grasses.

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3.  Genome-Wide Prediction of Metabolic Enzymes, Pathways, and Gene Clusters in Plants.

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4.  Genomic rearrangements and the evolution of clusters of locally adaptive loci.

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5.  The most deeply conserved noncoding sequences in plants serve similar functions to those in vertebrates despite large differences in evolutionary rates.

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6.  Ancestral and more recently acquired syntenic relationships of MADS-box genes uncovered by the Physcomitrella patens pseudochromosomal genome assembly.

Authors:  Elizabeth I Barker; Neil W Ashton
Journal:  Plant Cell Rep       Date:  2015-11-14       Impact factor: 4.570

7.  Fractionation, rearrangement and subgenome dominance.

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8.  The pineapple genome and the evolution of CAM photosynthesis.

Authors:  Ray Ming; Robert VanBuren; Ching Man Wai; Haibao Tang; Michael C Schatz; John E Bowers; Eric Lyons; Ming-Li Wang; Jung Chen; Eric Biggers; Jisen Zhang; Lixian Huang; Lingmao Zhang; Wenjing Miao; Jian Zhang; Zhangyao Ye; Chenyong Miao; Zhicong Lin; Hao Wang; Hongye Zhou; Won C Yim; Henry D Priest; Chunfang Zheng; Margaret Woodhouse; Patrick P Edger; Romain Guyot; Hao-Bo Guo; Hong Guo; Guangyong Zheng; Ratnesh Singh; Anupma Sharma; Xiangjia Min; Yun Zheng; Hayan Lee; James Gurtowski; Fritz J Sedlazeck; Alex Harkess; Michael R McKain; Zhenyang Liao; Jingping Fang; Juan Liu; Xiaodan Zhang; Qing Zhang; Weichang Hu; Yuan Qin; Kai Wang; Li-Yu Chen; Neil Shirley; Yann-Rong Lin; Li-Yu Liu; Alvaro G Hernandez; Chris L Wright; Vincent Bulone; Gerald A Tuskan; Katy Heath; Francis Zee; Paul H Moore; Ramanjulu Sunkar; James H Leebens-Mack; Todd Mockler; Jeffrey L Bennetzen; Michael Freeling; David Sankoff; Andrew H Paterson; Xinguang Zhu; Xiaohan Yang; J Andrew C Smith; John C Cushman; Robert E Paull; Qingyi Yu
Journal:  Nat Genet       Date:  2015-11-02       Impact factor: 38.330

9.  Evolution of the land plant exocyst complexes.

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10.  Intraspecific sequence variation and differential expression in starch synthase genes of Arabidopsis thaliana.

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Journal:  BMC Res Notes       Date:  2013-03-06
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