Thompson, J.P. and Seymour, N.P. (2011) Inheritance of resistance to root-lesion nematode (Pratylenchus thornei) in wheat landraces and cultivars from the West Asia and North Africa (WANA) region. Crop & Pasture Science, 62 (1). pp. 82-93.
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Article Link(s): http://dx.doi.org/10.1071/CP10309
Publisher URL: http://www.publish.csiro.au
The root-lesion nematode Pratylenchus thornei causes substantial loss to bread wheat production in the northern grain region of Australia and other parts of the world. West Asia and North Africa (WANA) wheat accessions with partial resistance to P. thornei were analysed for mode of inheritance in a half-diallel crossing design of F1 hybrids (10 parents) and F2 populations (7 parents). General combining ability was more important than specific combining ability as indicated by components of variance ratios of 0.93 and 0.95 in diallel ANOVA of the F1 and F2 generations, respectively. General combining ability values of the 'resistant' parents were predictive of the mean nematode numbers of their progeny in crosses with the susceptible Australian cv. Janz at the F1 (R populations showed relatively continuous distributions. Heritability was 0.68 for F2 populations in the half-diallel of resistant parents and 0.82-0.92 for 5 'resistant' parent/Janz doubled-haploid populations (narrow-sense heritability on a line mean basis). The results indicate polygenic inheritance of P. thornei resistance with a minimum of from 2 to 6 genes involved in individual F populations of 5 resistant parents crossed with Janz. Morocco 426 and Iraq 43 appear to be the best of the parents tested for breeding for resistance to P. thornei. None of the P. thornei-resistant WANA accessions was resistant to Pratylenchus neglectus.
|Business groups:||Agri-Science, Crop and Food Science|
|Additional Information:||© State of Queensland, Department of Employment, Economic Development and Innovation.|
|Keywords:||Pratylenchus neglectus; transgressive segregants; analysis of variance; cultivars; diallel analysis; general combining ability; genes; heritability; hybrids; inheritance; landraces; pest resistance; plant parasitic nematodes; plant pests; specific combining ability; wheat.|
|Subjects:||Agriculture > Plant pests and diseases > Pest control and treatment of diseases. Plant protection > Organic plant protection. Biological control|
Plant pests and diseases > Pest control and treatment of diseases. Plant protection > Organic plant protection. Biological control
Agriculture > Plant pests and diseases > Individual or types of plants or trees > Wheat
Plant pests and diseases > Individual or types of plants or trees > Wheat
|Deposited On:||22 Feb 2011 06:01|
|Last Modified:||26 Oct 2011 05:43|
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