Literature DB >> 22303228

A molecular portrait of Arabidopsis meiosis.

Hong Ma1.   

Abstract

UNLABELLED: Meiosis is essential for eukaryotic sexual reproduction and important for genetic diversity among individuals. Efforts during the last decade in Arabidopsis have greatly expanded our understanding of the molecular basis of plant meiosis, which has traditionally provided much information about the cytological description of meiosis. Through both forward genetic analysis of mutants with reduced fertility and reverse genetic studies of homologs of known meiotic genes, we now have a basic knowledge about genes important for meiotic recombination and its relationship to pairing and synapsis, critical processes that ensure proper homolog segregation. In addition, several genes affecting meiotic progression, spindle assembly, chromosome separation, and meiotic cytokinesis have also been uncovered and characterized. It is worth noting that Arabidopsis molecular genetic studies are also revealing secrets of meiosis that have not yet been recognized elsewhere among eukaryotes, including gene functions that might be unique to plants and those that are potentially shared with animals and fungi. As we enter the post-genomics era of plant biology, there is no doubt that the next ten years will see an even greater number of discoveries in this important area of plant development and cell biology. ABBREVIATIONS: DAPI, 4',6-diamidino-2-phenylindole; DSB, double strand break; DSBR, double strand break repair; SC, synaptonemal complex; TEM, transmission electron microscopy.

Entities:  

Keywords:  crossover formation; interference; pairing; recombination; spindle assembly; synapsis

Year:  2006        PMID: 22303228      PMCID: PMC3243380          DOI: 10.1199/tab.0095

Source DB:  PubMed          Journal:  Arabidopsis Book        ISSN: 1543-8120


  289 in total

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Journal:  Chem Biol       Date:  1994-12

3.  The mouse Spo11 gene is required for meiotic chromosome synapsis.

Authors:  P J Romanienko; R D Camerini-Otero
Journal:  Mol Cell       Date:  2000-11       Impact factor: 17.970

Review 4.  recA-dependent DNA repair in UV-irradiated Escherichia coli.

Authors:  K C Smith; T V Wang; R C Sharma
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5.  A homologue of the yeast HOP1 gene is inactivated in the Arabidopsis meiotic mutant asy1.

Authors:  A P Caryl; S J Armstrong; G H Jones; F C Franklin
Journal:  Chromosoma       Date:  2000       Impact factor: 4.316

Review 6.  Meiotic cytology and chromosome behaviour in wild-type Arabidopsis thaliana.

Authors:  Susan J Armstrong; Gareth H Jones
Journal:  J Exp Bot       Date:  2003-01       Impact factor: 6.992

7.  Asy1, a protein required for meiotic chromosome synapsis, localizes to axis-associated chromatin in Arabidopsis and Brassica.

Authors:  Susan J Armstrong; Anthony P Caryl; Gareth H Jones; F Christopher H Franklin
Journal:  J Cell Sci       Date:  2002-09-15       Impact factor: 5.285

8.  Cloning and characterization of MS5 from Arabidopsis: a gene critical in male meiosis.

Authors:  J Glover; M Grelon; S Craig; A Chaudhury; E Dennis
Journal:  Plant J       Date:  1998-08       Impact factor: 6.417

9.  AtATM is essential for meiosis and the somatic response to DNA damage in plants.

Authors:  Valérie Garcia; Hugues Bruchet; Delphine Camescasse; Fabienne Granier; David Bouchez; Alain Tissier
Journal:  Plant Cell       Date:  2003-01       Impact factor: 11.277

10.  AHP2 is required for bivalent formation and for segregation of homologous chromosomes in Arabidopsis meiosis.

Authors:  Carla Schommer; Ali Beven; Tom Lawrenson; Peter Shaw; Robert Sablowski
Journal:  Plant J       Date:  2003-10       Impact factor: 6.417

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  20 in total

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Journal:  Nat Genet       Date:  2012-03-11       Impact factor: 38.330

2.  Comparative transcript profiling and cytological observation of the newly bred recessive genic male sterility non-heading Chinese cabbage (Brassica rapa ssp. chinensis) line WS24-3A.

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3.  DNA polymerase epsilon interacts with SUVH2/9 to repress the expression of genes associated with meiotic DSB hotspot in Arabidopsis.

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Journal:  Proc Natl Acad Sci U S A       Date:  2022-10-03       Impact factor: 12.779

4.  Conservation and Divergence in the Meiocyte sRNAomes of Arabidopsis, Soybean, and Cucumber.

Authors:  Jiyue Huang; Cong Wang; Xiang Li; Xiaolong Fang; Ning Huang; Ying Wang; Hong Ma; Yingxiang Wang; Gregory P Copenhaver
Journal:  Plant Physiol       Date:  2019-11-12       Impact factor: 8.340

5.  Characterization of a set of novel meiotically-active promoters in Arabidopsis.

Authors:  Junhua Li; Andrew D Farmer; Ingrid E Lindquist; Stefanie Dukowic-Schulze; Joann Mudge; Tao Li; Ernest F Retzel; Changbin Chen
Journal:  BMC Plant Biol       Date:  2012-07-09       Impact factor: 4.215

6.  Transcriptome database resource and gene expression atlas for the rose.

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Journal:  BMC Genomics       Date:  2012-11-20       Impact factor: 3.969

7.  Inferring the Brassica rapa Interactome Using Protein-Protein Interaction Data from Arabidopsis thaliana.

Authors:  Jianhua Yang; Kim Osman; Mudassar Iqbal; Dov J Stekel; Zewei Luo; Susan J Armstrong; F Chris H Franklin
Journal:  Front Plant Sci       Date:  2013-01-04       Impact factor: 5.753

Review 8.  Chromosome segregation in plant meiosis.

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Journal:  Front Plant Sci       Date:  2014-06-17       Impact factor: 5.753

9.  The R2R3 MYB transcription factors FOUR LIPS and MYB88 regulate female reproductive development.

Authors:  Srilakshmi Makkena; Eunkyoung Lee; Fred D Sack; Rebecca S Lamb
Journal:  J Exp Bot       Date:  2012-08-21       Impact factor: 6.992

Review 10.  Regulation of meiotic gene expression in plants.

Authors:  Adele Zhou; Wojciech P Pawlowski
Journal:  Front Plant Sci       Date:  2014-08-25       Impact factor: 5.753

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