Literature DB >> 25070039

Identification and functional analysis of AG1-IA specific genes of Rhizoctonia solani.

Srayan Ghosh1, Santosh Kumar Gupta, Gopaljee Jha.   

Abstract

Rhizoctonia solani is an important necrotrophic fungal pathogen which causes disease on diverse plant species. It has been classified into 14 genetically distinct anastomosis groups (AGs), however, very little is known about their genomic diversity. AG1-IA causes sheath blight disease in rice and controlling this disease remains a challenge for sustainable rice cultivation. Recently the draft genome sequences of AG1-IA (rice isolate) and AG1-IB (lettuce isolate) had become publicly available. In this study, using comparative genomics, we report identification of 3,942 R. solani genes that are uniquely present in AG1-IA. Many of these genes encode important biological, molecular functions and exhibit dynamic expression during in-planta growth of the pathogen in rice. Based upon sequence similarity with genes that are required for plant and human/zoonotic diseases, we identified several putative virulence/pathogenicity determinants amongst AG1-IA specific genes. While studying the expression of 19 randomly selected genes, we identified three genes highly up-regulated during in-planta growth. The detailed in silico characterization of these genes and extent of their up-regulation in different rice genotypes, having variable degree of disease susceptibility, suggests their importance in rice-Rhizoctonia interactions. In summary, the present study reports identification, functional characterization of AG1-IA specific genes and predicts important virulence determinants that might enable the pathogen to grow inside hostile plant environment. Further characterization of these genes would shed useful insights about the pathogenicity mechanism of AG1-IA on rice.

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Year:  2014        PMID: 25070039     DOI: 10.1007/s00294-014-0438-x

Source DB:  PubMed          Journal:  Curr Genet        ISSN: 0172-8083            Impact factor:   3.886


  41 in total

1.  Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method.

Authors:  K J Livak; T D Schmittgen
Journal:  Methods       Date:  2001-12       Impact factor: 3.608

2.  Open source clustering software.

Authors:  M J L de Hoon; S Imoto; J Nolan; S Miyano
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Review 3.  Host-selective toxins, Ptr ToxA and Ptr ToxB, as necrotrophic effectors in the Pyrenophora tritici-repentis-wheat interaction.

Authors:  Lynda M Ciuffetti; Viola A Manning; Iovanna Pandelova; Melania Figueroa Betts; J Patrick Martinez
Journal:  New Phytol       Date:  2010-07-14       Impact factor: 10.151

4.  What it will take to feed 5.0 billion rice consumers in 2030.

Authors:  Gurdev S Khush
Journal:  Plant Mol Biol       Date:  2005-09       Impact factor: 4.076

Review 5.  Secondary metabolite toxins and nutrition of plant pathogenic fungi.

Authors:  Barbara J Howlett
Journal:  Curr Opin Plant Biol       Date:  2006-05-19       Impact factor: 7.834

6.  The Ess1 prolyl isomerase is required for growth and morphogenetic switching in Candida albicans.

Authors:  Gina Devasahayam; Vishnu Chaturvedi; Steven D Hanes
Journal:  Genetics       Date:  2002-01       Impact factor: 4.562

Review 7.  Trafficking vesicles: pro or contra pathogens?

Authors:  Nicolas Frei dit Frey; Silke Robatzek
Journal:  Curr Opin Plant Biol       Date:  2009-07-14       Impact factor: 7.834

8.  Cluster analysis and display of genome-wide expression patterns.

Authors:  M B Eisen; P T Spellman; P O Brown; D Botstein
Journal:  Proc Natl Acad Sci U S A       Date:  1998-12-08       Impact factor: 11.205

9.  Typing of anastomosis groups of Rhizoctonia solani by restriction analysis of ribosomal DNA.

Authors:  Cécile Guillemaut; Véronique Edel-Hermann; Pierre Camporota; Claude Alabouvette; Marc Richard-Molard; Christian Steinberg
Journal:  Can J Microbiol       Date:  2003-09       Impact factor: 2.419

10.  Characterization, Genetic Structure, and Pathogenicity of Rhizoctonia spp. Associated with Rice Sheath Diseases in India.

Authors:  Parissa Taheri; Sam Gnanamanickam; Monica Höfte
Journal:  Phytopathology       Date:  2007-03       Impact factor: 4.025

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  19 in total

1.  Identification and expression analysis of pathogenicity-related genes of Rhizoctonia solani anastomosis groups infecting rice.

Authors:  S T Prashantha; B M Bashyal; S Gopala Krishnan; Himanshu Dubey; Amolkumar U Solanke; G Prakash; Rashmi Aggarwal
Journal:  3 Biotech       Date:  2021-08-02       Impact factor: 2.893

2.  Rhizoctonia solani Kühn Pathophysiology: Status and Prospects of Sheath Blight Disease Management in Rice.

Authors:  Manoranjan Senapati; Ajit Tiwari; Neha Sharma; Priya Chandra; Bishnu Maya Bashyal; Ranjith Kumar Ellur; Prolay Kumar Bhowmick; Haritha Bollinedi; K K Vinod; Ashok Kumar Singh; S Gopala Krishnan
Journal:  Front Plant Sci       Date:  2022-05-03       Impact factor: 6.627

Review 3.  Understanding the direction of evolution in Burkholderia glumae through comparative genomics.

Authors:  Hyun-Hee Lee; Jungwook Park; Jinnyun Kim; Inmyoung Park; Young-Su Seo
Journal:  Curr Genet       Date:  2015-10-10       Impact factor: 3.886

4.  Identification of candidate pathogenicity determinants of Rhizoctonia solani AG1-IA, which causes sheath blight disease in rice.

Authors:  Srayan Ghosh; Poonam Kanwar; Gopaljee Jha
Journal:  Curr Genet       Date:  2017-12-01       Impact factor: 3.886

5.  Pectin induced transcriptome of a Rhizoctonia solani strain causing sheath blight disease in rice reveals insights on key genes and RNAi machinery for development of pathogen derived resistance.

Authors:  Talluri Bhaskar Rao; Ramakrishna Chopperla; Ramesh Methre; E Punniakotti; V Venkatesh; B Sailaja; M Raghurami Reddy; Arra Yugander; G S Laha; M Sheshu Madhav; R M Sundaram; D Ladhalakshmi; S M Balachandran; Satendra K Mangrauthia
Journal:  Plant Mol Biol       Date:  2019-02-22       Impact factor: 4.076

6.  Concurrent overexpression of rice G-protein β and γ subunits provide enhanced tolerance to sheath blight disease and abiotic stress in rice.

Authors:  Durga Madhab Swain; Ranjan Kumar Sahoo; Ravindra Kumar Chandan; Srayan Ghosh; Rahul Kumar; Gopaljee Jha; Narendra Tuteja
Journal:  Planta       Date:  2019-07-23       Impact factor: 4.540

7.  Development of a Rhizoctonia solani AG1-IB Specific Gene Model Enables Comparative Genome Analyses between Phytopathogenic R. solani AG1-IA, AG1-IB, AG3 and AG8 Isolates.

Authors:  Daniel Wibberg; Oliver Rupp; Jochen Blom; Lukas Jelonek; Magdalena Kröber; Bart Verwaaijen; Alexander Goesmann; Stefan Albaum; Rita Grosch; Alfred Pühler; Andreas Schlüter
Journal:  PLoS One       Date:  2015-12-21       Impact factor: 3.240

8.  The transcriptional landscape of Rhizoctonia solani AG1-IA during infection of soybean as defined by RNA-seq.

Authors:  Tanya R Copley; Raj Duggavathi; Suha Jabaji
Journal:  PLoS One       Date:  2017-09-06       Impact factor: 3.240

9.  Proteomic Analysis of Rhizoctonia solani Identifies Infection-specific, Redox Associated Proteins and Insight into Adaptation to Different Plant Hosts.

Authors:  Jonathan P Anderson; James K Hane; Thomas Stoll; Nicholas Pain; Marcus L Hastie; Parwinder Kaur; Christine Hoogland; Jeffrey J Gorman; Karam B Singh
Journal:  Mol Cell Proteomics       Date:  2016-01-25       Impact factor: 5.911

10.  Bacteria-fungal Confrontation and Fungal Growth Prevention Assay.

Authors:  Rahul Kumar; Durga Madhab Swain; Sunil Kumar Yadav; Isha Tyagi; Rajeev Kumar; Joyati Das; Srayan Ghosh; Gopaljee Jha
Journal:  Bio Protoc       Date:  2018-01-20
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