Plasticity in plant-microbe interactions: a perspective based on the pitch canker pathosystem
What we know about the life history of fungi that cause disease in plants is commonly based on studies of the pathogen’s interaction with a susceptible host: how and when infection occurs, growth and reproduction within the host, and survival during the interval when a growing host is not available....
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Published in: | Phytoparasitica Vol. 45; no. 1; pp. 1 - 8 |
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Language: | English |
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Abstract | What we know about the life history of fungi that cause disease in plants is commonly based on studies of the pathogen’s interaction with a susceptible host: how and when infection occurs, growth and reproduction within the host, and survival during the interval when a growing host is not available. This focus is appropriate, given the need for information that will facilitate management of disease affecting an economically important crop, but it can limit recognition of the full range of resources that may be utilized by fungi that we classify as plant pathogens. This was certainly the case for
Fusarium circinatum
, which causes a destructive disease of pines known as pitch canker. Although
F. circinatum
was initially known only as a necrotrophic, wound-infecting pathogen of coniferous trees, recent research has revealed that an isolate of this fungus that will kill shoot tissue when inoculated into a wound can also have a biotrophic relationship with roots of pine seedlings, infect and grow within grasses without causing symptoms, and cause ear rot of corn. Thus, although
F. circinatum
became known to science because it induced visible symptoms on pines, it has the capacity for a much broader range of ecological activities than is captured by its designation as a necrotrophic pathogen. The physiological plasticity manifested by
F. circinatum
illustrates the challenge of obtaining a comprehensive understanding of the life history of a plant pathogenic fungus. |
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AbstractList | What we know about the life history of fungi that cause disease in plants is commonly based on studies of the pathogen’s interaction with a susceptible host: how and when infection occurs, growth and reproduction within the host, and survival during the interval when a growing host is not available. This focus is appropriate, given the need for information that will facilitate management of disease affecting an economically important crop, but it can limit recognition of the full range of resources that may be utilized by fungi that we classify as plant pathogens. This was certainly the case for
Fusarium circinatum
, which causes a destructive disease of pines known as pitch canker. Although
F. circinatum
was initially known only as a necrotrophic, wound-infecting pathogen of coniferous trees, recent research has revealed that an isolate of this fungus that will kill shoot tissue when inoculated into a wound can also have a biotrophic relationship with roots of pine seedlings, infect and grow within grasses without causing symptoms, and cause ear rot of corn. Thus, although
F. circinatum
became known to science because it induced visible symptoms on pines, it has the capacity for a much broader range of ecological activities than is captured by its designation as a necrotrophic pathogen. The physiological plasticity manifested by
F. circinatum
illustrates the challenge of obtaining a comprehensive understanding of the life history of a plant pathogenic fungus. What we know about the life history of fungi that cause disease in plants is commonly based on studies of the pathogen's interaction with a susceptible host: how and when infection occurs, growth and reproduction within the host, and survival during the interval when a growing host is not available. This focus is appropriate, given the need for information that will facilitate management of disease affecting an economically important crop, but it can limit recognition of the full range of resources that may be utilized by fungi that we classify as plant pathogens. This was certainly the case for Fusarium circinatum, which causes a destructive disease of pines known as pitch canker. Although F. circinatum was initially known only as a necrotrophic, wound-infecting pathogen of coniferous trees, recent research has revealed that an isolate of this fungus that will kill shoot tissue when inoculated into a wound can also have a biotrophic relationship with roots of pine seedlings, infect and grow within grasses without causing symptoms, and cause ear rot of corn. Thus, although F. circinatum became known to science because it induced visible symptoms on pines, it has the capacity for a much broader range of ecological activities than is captured by its designation as a necrotrophic pathogen. The physiological plasticity manifested by F. circinatum illustrates the challenge of obtaining a comprehensive understanding of the life history of a plant pathogenic fungus. |
Author | Gordon, T. R. Reynolds, G. J. |
Author_xml | – sequence: 1 givenname: T. R. surname: Gordon fullname: Gordon, T. R. email: trgordon@ucdavis.edu organization: Department of Plant Pathology, University of California – sequence: 2 givenname: G. J. surname: Reynolds fullname: Reynolds, G. J. organization: Animal and Plant Health Inspection Service, U.S. Department of Agriculture |
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Cites_doi | 10.1016/j.funeco.2014.09.003 10.1094/PHYTO-02-14-0027-R 10.1016/S0254-6299(15)31190-X 10.1016/S0953-7562(96)80033-5 10.1094/PDIS.2001.85.11.1128 10.1046/j.1439-0329.2001.00230.x 10.1111/j.1365-3059.2005.01310.x 10.1094/PDIS-02-12-0136-PDN 10.1007/s10530-008-9321-3 10.1016/j.pmpp.2004.02.002 10.1017/S0953756299002002 10.1111/ppa.12376 10.3390/f7010020 10.1046/j.1365-3059.1998.00288.x 10.2989/20702620.2014.916087 10.1016/j.mycres.2007.05.004 10.1111/j.1469-8137.2005.01436.x 10.2989/20702620.2014.916503 10.1094/Phyto-73-882 10.1146/annurev.phyto.35.1.111 10.1111/j.1462-2920.2007.01559.x 10.1094/PD-69-270 10.1139/b00-044 10.1094/PD-71-0161 10.1071/AP08036 10.1094/PD-77-0166 10.2307/3807741 10.3733/ca.v041n03p22 10.21273/HORTSCI.33.5.868 10.1111/ppa.12511 10.1111/j.1439-0329.2010.00678.x |
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Keywords | Fusarium circinatum Induced resistance Pitch canker |
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References | Gordon, Okamoto, Storer, Wood (CR15) 1998; 33 Swett, Gordon (CR34) 2015; 13 Gordon, Wikler, Clark, Okamoto, Storer, Bonello (CR14) 1998; 47 Jones, Ford, Light, Nadel, Greyling, Fourie, Wingfield, Morris (CR20) 2014; 76 McCain, Koehler, Tjosvold (CR24) 1987; 41 Swett, Kirkpatrick, Gordon (CR37) 2016; 99 CR18 Swett, Gordon (CR33) 2012; 96 CR17 Storer, Bonello, Gordon, Wood (CR32) 1999; 45 Franceschi, Krokene, Christiansen, Krekling (CR8) 2005; 167 CR35 CR12 CR30 Martín-Rodrigues, Sanchez-Zabala, Salcedo, Majada, González-Murua, Duñabeitia (CR23) 2015; 64 Anagnostakis (CR1) 1987; 79 Gordon, Storer, Wood (CR16) 2001; 85 Gordon, Alves-Santos, Diez (CR10) 2011 Kuhlman (CR21) 1987; 71 Pruzzo, Vezzulli, Colwell (CR25) 2008; 10 Reynolds, Gordon, McRoberts (CR26) 2016; 7 Sakamoto, Gordon (CR28) 2006; 55 Britz, Coutinho, Gordon, Wingfield (CR5) 2001; 67 Loo (CR22) 2009; 11 Bonello, Blodgett (CR3) 2003; 63 Barrows-Broaddus, Dwinell (CR2) 1983; 73 Gordon, Storer, Okamoto (CR13) 1996; 100 Bonello, Gordon, Storer (CR4) 2001; 31 Swett, Porter, Fourie, Steenkamp, Gordon, Wingfield (CR36) 2014; 76 Gordon, Martyn (CR11) 1997; 35 Wikler, Gordon (CR38) 2000; 78 Runion, Cade, Bruck (CR27) 1993; 77 Storer, Gordon, Clark (CR31) 1998; 47 Hepting, Roth (CR19) 1946; 44 Friel, Desjardins, Kirkpatrick, Gordon (CR9) 2007; 111 Slinski, Zakharov, Gordon (CR29) 2015; 105 Dwinell, Barrows-Broaddus, Kuhlman (CR7) 1985; 69 Wingfield, Hammerbacher, Ganley, Steenkamp, Gordon, Wingfield, Coutinho (CR39) 2008; 37 Desjardins, Plattner, Gordon (CR6) 2000; 104 JB Barrows-Broaddus (558_CR2) 1983; 73 JM Sakamoto (558_CR28) 2006; 55 P Bonello (558_CR4) 2001; 31 VR Franceschi (558_CR8) 2005; 167 MJ Wingfield (558_CR39) 2008; 37 AJ Storer (558_CR32) 1999; 45 CJ Friel (558_CR9) 2007; 111 KR Wikler (558_CR38) 2000; 78 GJ Reynolds (558_CR26) 2016; 7 LD Dwinell (558_CR7) 1985; 69 AE Desjardins (558_CR6) 2000; 104 JA Loo (558_CR22) 2009; 11 TR Gordon (558_CR10) 2011 AJ Storer (558_CR31) 1998; 47 NB Jones (558_CR20) 2014; 76 P Bonello (558_CR3) 2003; 63 558_CR30 CL Swett (558_CR33) 2012; 96 H Britz (558_CR5) 2001; 67 TR Gordon (558_CR11) 1997; 35 558_CR12 CL Swett (558_CR37) 2016; 99 558_CR35 AH McCain (558_CR24) 1987; 41 C Pruzzo (558_CR25) 2008; 10 558_CR17 558_CR18 EG Kuhlman (558_CR21) 1987; 71 SL Anagnostakis (558_CR1) 1987; 79 TR Gordon (558_CR14) 1998; 47 N Martín-Rodrigues (558_CR23) 2015; 64 TR Gordon (558_CR15) 1998; 33 CL Swett (558_CR34) 2015; 13 GB Runion (558_CR27) 1993; 77 GH Hepting (558_CR19) 1946; 44 SL Slinski (558_CR29) 2015; 105 C Swett (558_CR36) 2014; 76 TR Gordon (558_CR13) 1996; 100 TR Gordon (558_CR16) 2001; 85 |
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Snippet | What we know about the life history of fungi that cause disease in plants is commonly based on studies of the pathogen’s interaction with a susceptible host:... What we know about the life history of fungi that cause disease in plants is commonly based on studies of the pathogen's interaction with a susceptible host:... |
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SubjectTerms | Agriculture Biomedical and Life Sciences Coniferous trees Ecology Economic importance Fungi Fusarium circinatum Life history Life Sciences Pathogens Plant diseases Plant Pathology Plant Sciences Plasticity Seedlings Trees |
Title | Plasticity in plant-microbe interactions: a perspective based on the pitch canker pathosystem |
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