Please use this identifier to cite or link to this item:
https://hdl.handle.net/1959.11/4236
Title: | Pathogen population structure and epidemiology are keys to wheat crown rot and Fusarium head blight management | Contributor(s): | Chakraborty, S (author); Liu, C J (author); Mitter, V (author); Scott, J B (author); Akinsanmi, O A (author); Ali, S (author); Dill-Macky, R (author); Nicol, J (author); Backhouse, David (author) ; Simpfendorfer, S (author) | Publication Date: | 2006 | DOI: | 10.1071/AP06068 | Handle Link: | https://hdl.handle.net/1959.11/4236 | Abstract: | This paper summarises the key findings from recent research on the population genetics and epidemiology of 'Fusarium' pathogens causing head blight and crown rot of wheat in Australia and how this information has enabled the screening and selection of wheat germplasm with improved resistance to 'Fusarium'. By relating new findings to the current state of knowledge, the paper serves as a timely and critical review of the international literature. In Australia, both 'Fusarium pseudograminearum' and 'F. graminearum' can cause both crown rot and Fusarium head blight under artificial inoculation. However, the former species is more widespread and is predominantly associated with crown rot whereas 'F. graminearum' is mainly associated with Fusarium head blight, with limited geographical distribution in and around the Liverpool Plains in northern New South Wales. Studies of population structure and genetics have revealed that both species are genotypically diverse with similar levels of genetic recombination despite 'Gibberella zeae', the teleomorph of 'F. graminearum', being homothallic and 'G. coronicola', the teleomorph of 'F. pseudograminearum', being heterothallic. A high-throughput and reliable crown rot bioassay has been developed and used to screen over 1500 wheat germplasms to select 17 lines with putative crown rot resistance. Key differences in pathogen biology and epidemiology between Australia and the USA have emerged from other recent collaborative studies, which show that macroconidia constitute the bulk of aerial Fusarium head blight inoculum in Australia, whereas ascospores are the dominant primary inoculum for Fusarium head blight worldwide. The limited spread of splash-dispersed macroconidia of 'F. graminearum' probably explains the restricted geographical distribution of this species in Australia. Other research collaboration has compared the aggressiveness, mycotoxin production and genotypic polymorphisms of the pathogen population from Australia and the USA. These and other differences in pathogen adaptation emphasise that research outcomes from elsewhere must be tested for relevance before applying them to Australian farming systems. | Publication Type: | Journal Article | Source of Publication: | Australasian Plant Pathology, 35(6), p. 643-655 | Publisher: | CSIRO Publishing | Place of Publication: | Australia | ISSN: | 1448-6032 0815-3191 |
Fields of Research (FoR) 2008: | 070308 Crop and Pasture Protection (Pests, Diseases and Weeds) | Socio-Economic Objective (SEO) 2008: | 820507 Wheat | Peer Reviewed: | Yes | HERDC Category Description: | C1 Refereed Article in a Scholarly Journal |
---|---|
Appears in Collections: | Journal Article |
Files in This Item:
File | Description | Size | Format |
---|
SCOPUSTM
Citations
112
checked on Nov 2, 2024
Page view(s)
1,208
checked on Nov 17, 2024
Download(s)
2
checked on Nov 17, 2024
Items in Research UNE are protected by copyright, with all rights reserved, unless otherwise indicated.