Literature DB >> 31338526

Comparative genomic analyses of two segregating mutants reveal seven genes likely involved in resistance to Fusarium equiseti in soybean via whole genome re-sequencing.

Liuping Zhang1, Wenkun Huang1, Deliang Peng1, Shiming Liu2,3.   

Abstract

KEY MESSAGE: The candidate genes involved in resistance to Fusarium equiseti in soybean PI 437654 were identified through comparative genomic analyses of mutants via whole genome re-sequencing. The fungus Fusarium infects each stage of the growth and development of soybean and causes soybean (Glycine max (L.)) seed and root rot and seedling damping-off and wilt with a large quantity of annual yield loss worldwide. It is very important to identify the resistant genes in soybean to prevent and control this pathogen. One Fusarium equiseti isolate was previously identified to be incompatible with 'PI 437654' but compatible with a Chinese soybean cultivar 'Zhonghuang 13'. In this study, with the infection of this isolate on the seedling roots of developed PI 437654 mutants, 6 mutants were identified from 500 mutants to significantly alter their phenotypes to F. equiseti compared to wild-type PI 437654. Then, two identified segregating mutants were selected to directly perform whole genome re-sequencing. Finally, through comparative genomic analyses 7 genes including one cluster of 4 nucleotide binding site-leucine-rich repeat genes on one genomic region of chromosome 7, a 60S ribosomal protein L12 gene and 2 uncharacterized genes were identified to be likely involved in the resistance to F. equiseti. These genes will facilitate the breeding of resistant germplasm resources and the identification of resistance of soybean to Fusarium spp.

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Year:  2019        PMID: 31338526     DOI: 10.1007/s00122-019-03401-5

Source DB:  PubMed          Journal:  Theor Appl Genet        ISSN: 0040-5752            Impact factor:   5.699


  40 in total

1.  Genome sequencing reveals agronomically important loci in rice using MutMap.

Authors:  Akira Abe; Shunichi Kosugi; Kentaro Yoshida; Satoshi Natsume; Hiroki Takagi; Hiroyuki Kanzaki; Hideo Matsumura; Kakoto Yoshida; Chikako Mitsuoka; Muluneh Tamiru; Hideki Innan; Liliana Cano; Sophien Kamoun; Ryohei Terauchi
Journal:  Nat Biotechnol       Date:  2012-01-22       Impact factor: 54.908

2.  A program for annotating and predicting the effects of single nucleotide polymorphisms, SnpEff: SNPs in the genome of Drosophila melanogaster strain w1118; iso-2; iso-3.

Authors:  Pablo Cingolani; Adrian Platts; Le Lily Wang; Melissa Coon; Tung Nguyen; Luan Wang; Susan J Land; Xiangyi Lu; Douglas M Ruden
Journal:  Fly (Austin)       Date:  2012 Apr-Jun       Impact factor: 2.160

3.  Differential responses of molecular mechanisms and physiochemical characters in wild and cultivated soybeans against invasion by the pathogenic Fusarium oxysporum Schltdl.

Authors:  Chunling Chang; Lei Tian; Lina Ma; Weiqiang Li; Fahad Nasir; Xiujun Li; Lam-Son Phan Tran; Chunjie Tian
Journal:  Physiol Plant       Date:  2018-12-21       Impact factor: 4.500

4.  Recombination suppression at the dominant Rhg1/Rfs2 locus underlying soybean resistance to the cyst nematode.

Authors:  Ahmed J Afzal; Ali Srour; Navinder Saini; Naghmeh Hemmati; Hany A El Shemy; David A Lightfoot
Journal:  Theor Appl Genet       Date:  2011-12-27       Impact factor: 5.699

5.  Sudden-death syndrome of soybean is caused by two morphologically and phylogenetically distinct species within the Fusarium solani species complex--F. virguliforme in North America and F. tucumaniae in South America.

Authors:  Takayuki Aoki; Kerry O'Donnell; Yoshihisa Homma; Alfredo R Lattanzi
Journal:  Mycologia       Date:  2003 Jul-Aug       Impact factor: 2.696

6.  Genetic mapping and haplotype analysis of a locus for quantitative resistance to Fusarium graminearum in soybean accession PI 567516C.

Authors:  Peng Cheng; Cassidy R Gedling; Gunvant Patil; Tri D Vuong; J Grover Shannon; Anne E Dorrance; Henry T Nguyen
Journal:  Theor Appl Genet       Date:  2017-03-08       Impact factor: 5.699

7.  Identification and mapping of quantitative trait loci (QTL) conferring resistance to Fusarium graminearum from soybean PI 567301B.

Authors:  Bhupendra Acharya; Sungwoo Lee; M A Rouf Mian; Tae-Hwan Jun; Leah K McHale; Andrew P Michel; Anne E Dorrance
Journal:  Theor Appl Genet       Date:  2015-02-18       Impact factor: 5.699

8.  Quantitative trait loci underlying resistance to sudden death syndrome (SDS) in MD96-5722 by 'Spencer' recombinant inbred line population of soybean.

Authors:  J Anderson; M Akond; M A Kassem; K Meksem; S K Kantartzi
Journal:  3 Biotech       Date:  2014-04-30       Impact factor: 2.406

9.  fastp: an ultra-fast all-in-one FASTQ preprocessor.

Authors:  Shifu Chen; Yanqing Zhou; Yaru Chen; Jia Gu
Journal:  Bioinformatics       Date:  2018-09-01       Impact factor: 6.937

10.  Homo-dimerization and ligand binding by the leucine-rich repeat domain at RHG1/RFS2 underlying resistance to two soybean pathogens.

Authors:  Ahmed J Afzal; Ali Srour; Abhishek Goil; Sheeja Vasudaven; Tianyun Liu; Ram Samudrala; Navneet Dogra; Punit Kohli; Ayan Malakar; David A Lightfoot
Journal:  BMC Plant Biol       Date:  2013-03-15       Impact factor: 4.215

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