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Review
. 2017 Jul 29;9(5):plx035.
doi: 10.1093/aobpla/plx035. eCollection 2017 Sep.

Perspectives on non-target site mechanisms of herbicide resistance in weedy plant species using evolutionary physiology

Affiliations
Review

Perspectives on non-target site mechanisms of herbicide resistance in weedy plant species using evolutionary physiology

Hossein Ghanizadeh et al. AoB Plants. .

Abstract

Evolutionary physiology merges the disciplines of evolution and physiology, and it is a research approach that has not received much attention for studying the development of herbicide resistance. This paper makes a case for using evolutionary physiology more frequently when studying herbicide resistance, and illustrates this using three areas where more work would be useful: (i) the interaction among major and minor alleles over many generations during the evolution of physiological responses that lead to specific mechanisms of resistance; (ii) the role of epigenetic factors, especially at an early stage of evolution, on the physiological modifications that result in phenotypes that become insensitive to herbicides; and (iii) the interaction between fitness and physiological performance over time, with emphasis on understanding mechanisms that improve the fitness of herbicide-resistant phenotypes during selection.

Keywords: Evolution; herbicide resistance; mechanism of resistance; physiology; weeds.

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References

    1. Bass C, Field LM. 2011. Gene amplification and insecticide resistance. Pest Management Science 67:886–890. - PubMed
    1. Boyko A, Kovalchuk I. 2008. Epigenetic control of plant stress response. Environmental and Molecular Mutagenesis 49:61–72. - PubMed
    1. Busi R, Neve P, Powles S. 2013. Evolved polygenic herbicide resistance in Lolium rigidum by low-dose herbicide selection within standing genetic variation. Evolutionary Applications 6:231–242. - PMC - PubMed
    1. Busi R, Vila-Aiub MM, Powles SB. 2011. Genetic control of a cytochrome P450 metabolism-based herbicide resistance mechanism in Lolium rigidum. Heredity 106:817–824. - PMC - PubMed
    1. Busi R, Powles SB. 2009. Evolution of glyphosate resistance in a Lolium rigidum population by glyphosate selection at sublethal doses. Heredity 103:318–325. - PubMed

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