Data from: Maize leaf epiphytic bacteria diversity patterns are genetically correlated with resistance to fungal pathogen infection

Balint-Kurti P, Simmons SJ, Blum JE, Ballaré CL, Stapleton AE

Date Published: July 6, 2012

DOI: http://dx.doi.org/10.5061/dryad.67jg8

 

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Title Copy of MPMI-23-4-0473E1
Downloaded 41 times
Description A detailed report for ChromoScan significant regions for significant and suggestive quantitative trait loci (QTL) and complete table of QTL Network results.
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Title Copy of MPMI-23-4-0473E2
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Description Shows the Simpson diversity index, evenness, and number of ribotypes (taxa) for each sample in the quantitative trait loci experiment.
Download Copy of MPMI-23-4-0473E2.xls (26.11 Kb)
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Title Copy of MPMI-23-4-0473E3
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Description Shows examples of chromosome region crossover maps for the recombinant inbred line set used in this study.
Download Copy of MPMI-23-4-0473E3.xls (299.5 Kb)
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Title MPMI-23-4-0473E4
Downloaded 52 times
Description Provides experimental design and quantitative trait loci analysis details.
Download MPMI-23-4-0473E4.pdf (30.06 Kb)
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When using this data, please cite the original publication:

Balint-Kurti P, Simmons SJ, Blum JE, Ballaré CL, Stapleton AE (2010) Maize leaf epiphytic bacteria diversity patterns are genetically correlated with resistance to fungal pathogen infection. Molecular Plant-Microbe Interactions 23(4): 473-484. http://dx.doi.org/10.1094/MPMI-23-4-0473

Additionally, please cite the Dryad data package:

Balint-Kurti P, Simmons SJ, Blum JE, Ballaré CL, Stapleton AE (2010) Data from: Maize leaf epiphytic bacteria diversity patterns are genetically correlated with resistance to fungal pathogen infection. Dryad Digital Repository. http://dx.doi.org/10.5061/dryad.67jg8
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