Literature DB >> 24401541

Disruption of Rpp1-mediated soybean rust immunity by virus-induced gene silencing.

Bret Cooper1, Kimberly B Campbell1, Michael B McMahon2, Douglas G Luster2.   

Abstract

Phakopsora pachyrhizi, a fungus that causes rust disease on soybean, has potential to impart significant yield loss and disrupt food security and animal feed production. Rpp1 is a soybean gene that confers immunity to soybean rust, and it is important to understand how it regulates the soybean defense system and to use this knowledge to protect commercial crops. It was previously discovered that some soybean proteins resembling transcription factors accumulate in the nucleus of Rpp1 soybeans. To determine if they contribute to immunity, Bean pod mottle virus was used to attenuate or silence the expression of their genes. Rpp1 plants subjected to virus-induced gene silencing exhibited reduced amounts of RNA for 5 of the tested genes, and the plants developed rust-like symptoms after subsequent inoculation with fungal spores. Symptoms were associated with the accumulation of rust fungal RNA and protein. Silenced plants also had reduced amounts of RNA for the soybean Myb84 transcription factor and soybean isoflavone O-methyltransferase, both of which are important to phenylpropanoid biosynthesis and lignin formation, crucial components of rust resistance. These results help resolve some of the genes that contribute to Rpp1-mediated immunity and improve upon the knowledge of the soybean defense system. It is possible that these genes could be manipulated to enhance rust resistance in otherwise susceptible soybean cultivars.

Entities:  

Keywords:  Rpp1; disease resistance; gene silencing; soybean rust; transcription factor

Mesh:

Substances:

Year:  2013        PMID: 24401541      PMCID: PMC4091232          DOI: 10.4161/psb.27543

Source DB:  PubMed          Journal:  Plant Signal Behav        ISSN: 1559-2316


  45 in total

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Journal:  Plant Cell       Date:  2000-12       Impact factor: 11.277

Review 2.  Contrasting mechanisms of defense against biotrophic and necrotrophic pathogens.

Authors:  Jane Glazebrook
Journal:  Annu Rev Phytopathol       Date:  2005       Impact factor: 13.078

3.  Direct protein interaction underlies gene-for-gene specificity and coevolution of the flax resistance genes and flax rust avirulence genes.

Authors:  Peter N Dodds; Gregory J Lawrence; Ann-Maree Catanzariti; Trazel Teh; Ching-I A Wang; Michael A Ayliffe; Bostjan Kobe; Jeffrey G Ellis
Journal:  Proc Natl Acad Sci U S A       Date:  2006-05-26       Impact factor: 11.205

Review 4.  The plant immune system.

Authors:  Jonathan D G Jones; Jeffery L Dangl
Journal:  Nature       Date:  2006-11-16       Impact factor: 49.962

5.  Shotgun identification of proteins from uredospores of the bean rust Uromyces appendiculatus.

Authors:  Bret Cooper; Wesley M Garrett; Kimberly B Campbell
Journal:  Proteomics       Date:  2006-04       Impact factor: 3.984

6.  The haustorial transcriptomes of Uromyces appendiculatus and Phakopsora pachyrhizi and their candidate effector families.

Authors:  Tobias I Link; Patrick Lang; Brian E Scheffler; Mary V Duke; Michelle A Graham; Bret Cooper; Mark L Tucker; Martijn van de Mortel; Ralf T Voegele; Kurt Mendgen; Thomas J Baum; Steven A Whitham
Journal:  Mol Plant Pathol       Date:  2013-12-17       Impact factor: 5.663

7.  Direct interaction between the Arabidopsis disease resistance signaling proteins, EDS1 and PAD4.

Authors:  B J Feys; L J Moisan; M A Newman; J E Parker
Journal:  EMBO J       Date:  2001-10-01       Impact factor: 11.598

8.  The Melampsora lini AvrL567 avirulence genes are expressed in haustoria and their products are recognized inside plant cells.

Authors:  Peter N Dodds; Gregory J Lawrence; Ann-Maree Catanzariti; Michael A Ayliffe; Jeffrey G Ellis
Journal:  Plant Cell       Date:  2004-02-18       Impact factor: 11.277

9.  Physical interaction between RRS1-R, a protein conferring resistance to bacterial wilt, and PopP2, a type III effector targeted to the plant nucleus.

Authors:  Laurent Deslandes; Jocelyne Olivier; Nemo Peeters; Dong Xin Feng; Manirath Khounlotham; Christian Boucher; Imre Somssich; Stephane Genin; Yves Marco
Journal:  Proc Natl Acad Sci U S A       Date:  2003-06-03       Impact factor: 11.205

10.  Haustorially expressed secreted proteins from flax rust are highly enriched for avirulence elicitors.

Authors:  Ann-Maree Catanzariti; Peter N Dodds; Gregory J Lawrence; Michael A Ayliffe; Jeffrey G Ellis
Journal:  Plant Cell       Date:  2005-12-02       Impact factor: 11.277

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  5 in total

1.  Bean pod mottle virus: a new powerful tool for functional genomics studies in Pisum sativum.

Authors:  Chouaib Meziadi; Sophie Blanchet; Manon M S Richard; Marie-Laure Pilet-Nayel; Valérie Geffroy; Stéphanie Pflieger
Journal:  Plant Biotechnol J       Date:  2016-02-20       Impact factor: 9.803

2.  The "one-step" Bean pod mottle virus (BPMV)-derived vector is a functional genomics tool for efficient overexpression of heterologous protein, virus-induced gene silencing and genetic mapping of BPMV R-gene in common bean (Phaseolus vulgaris L.).

Authors:  Stéphanie Pflieger; Sophie Blanchet; Chouaib Meziadi; Manon M S Richard; Vincent Thareau; Fanny Mary; Céline Mazoyer; Valérie Geffroy
Journal:  BMC Plant Biol       Date:  2014-08-29       Impact factor: 4.215

Review 3.  Fighting Asian Soybean Rust.

Authors:  Caspar Langenbach; Ruth Campe; Sebastian F Beyer; André N Mueller; Uwe Conrath
Journal:  Front Plant Sci       Date:  2016-06-07       Impact factor: 5.753

4.  Transcriptomic analysis reveals vacuolar Na+ (K+)/H+ antiporter gene contributing to growth, development, and defense in switchgrass (Panicum virgatum L.).

Authors:  Yanhua Huang; Xin Cui; Huifang Cen; Kehua Wang; Yunwei Zhang
Journal:  BMC Plant Biol       Date:  2018-04-10       Impact factor: 4.215

5.  Reduction of Phakopsora pachyrhizi infection on soybean through host- and spray-induced gene silencing.

Authors:  Dongfang Hu; Zhi-Yuan Chen; Chunquan Zhang; Mala Ganiger
Journal:  Mol Plant Pathol       Date:  2020-03-20       Impact factor: 5.663

  5 in total

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