Comparative genome-wide transcriptome analysis of Vitis vinifera responses to adapted and non-adapted strains of two-spotted spider mite, Tetranyhus urticae View Full Text


Ontology type: schema:ScholarlyArticle      Open Access: True


Article Info

DATE

2016-12

AUTHORS

Jose Díaz-Riquelme, Vladimir Zhurov, Cristina Rioja, Ignacio Pérez-Moreno, Rafael Torres-Pérez, Jérôme Grimplet, Pablo Carbonell-Bejerano, Sabina Bajda, Thomas Van Leeuwen, José Miguel Martínez-Zapater, Miodrag Grbic, Vojislava Grbic

ABSTRACT

BACKGROUND: The two-spotted spider mite, Tetranychus urticae, is an extreme generalist plant pest. Even though mites can feed on many plant species, local mite populations form host races that do not perform equally well on all potential hosts. An acquisition of the ability to evade plant defenses is fundamental for mite's ability to use a particular plant as a host. Thus, understanding the interactions between the plant and mites with different host adaptation status allows the identification of functional plant defenses and ways mites can evolve to avoid them. RESULTS: The grapevine genome-wide transcriptional responses to spider mite strains that are non-adapted and adapted to grapevine as a host were examined. Comparative transcriptome analysis of grapevine responses to these mite strains identified the existence of weak responses induced by the feeding of the non-adapted strain. In contrast, strong but ineffective induced defenses were triggered upon feeding of the adapted strain. A comparative meta-analysis of Arabidopsis, tomato and grapevine responses to mite feeding identified a core of 36 highly conserved genes involved in the perception, regulation and metabolism that were commonly induced in all three species by mite herbivory. CONCLUSIONS: This study describes the genome-wide grapevine transcriptional responses to herbivory of mite strains that differ in their ability to use grapevine as a host. It raises hypotheses whose testing will lead to our understanding of grapevine defenses and mite adaptations to them. More... »

PAGES

74

References to SciGraph publications

Identifiers

URI

http://scigraph.springernature.com/pub.10.1186/s12864-016-2401-3

DOI

http://dx.doi.org/10.1186/s12864-016-2401-3

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1007627397

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/26801623


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