2011
DOI: 10.1002/ps.2230
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Quinclorac resistance: a concerted hormonal and enzymatic effort in Echinochloa phyllopogon

Abstract: Resistance to quinclorac in R E. phyllopogon involved at least two mechanisms: (a) insensitivity along the response pathway whereby quinclorac induces ethylene production; (b) enhanced β-CAS activity, which should enable greater HCN detoxification following quinclorac stimulation of ethylene biosynthesis. This unveils new resistance mechanisms for this multiple-resistant biotype widely spread throughout California rice fields.

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Cited by 62 publications
(106 citation statements)
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“…For example, in the resistance to aryloxyphenoxy-propionate herbicides, significant contributions of glutathione and Cys conjugation seem to be involved (Ruiz-Santaella et al, 2006;Bakkali et al, 2007). In quinclorac resistance, insensitivity of ethylene synthesis pathways that usually respond to quinclorac and enhanced activity of b-cyanoalanine synthase were suggested (Yasuor et al, 2012). In bispyribac-sodium resistance, bispyribac-sodium-induced P450s appear involved (Yun et al, 2005), and slightly increased expression of two P450 genes (not CYP81A21 or CYP81A21) has been reported under bispyribacsodium stress (Iwakami et al, 2014a).…”
Section: Discussionmentioning
confidence: 99%
See 1 more Smart Citation
“…For example, in the resistance to aryloxyphenoxy-propionate herbicides, significant contributions of glutathione and Cys conjugation seem to be involved (Ruiz-Santaella et al, 2006;Bakkali et al, 2007). In quinclorac resistance, insensitivity of ethylene synthesis pathways that usually respond to quinclorac and enhanced activity of b-cyanoalanine synthase were suggested (Yasuor et al, 2012). In bispyribac-sodium resistance, bispyribac-sodium-induced P450s appear involved (Yun et al, 2005), and slightly increased expression of two P450 genes (not CYP81A21 or CYP81A21) has been reported under bispyribacsodium stress (Iwakami et al, 2014a).…”
Section: Discussionmentioning
confidence: 99%
“…R plants exhibited resistance to at least nine herbicides from seven different chemical groups: sulfonylurea, triazolopyrimidine, pyrimidinyl carboxy herbicides, aryloxyphenoxypropionate, thiocarbamate, quinclorac, and clomazone (Fischer et al, 2000b;Osuna et al, 2002;Ruiz-Santaella et al, 2006;Bakkali et al, 2007;Yasuor et al, 2009Yasuor et al, , 2010Yasuor et al, , 2012. Today, there seems to be only one herbicide left to control this weed in California (Yasuor et al, 2012). Thus, elucidating the molecular mechanism of resistance is urgently required.…”
mentioning
confidence: 99%
“…D. ischaemum plants resistant to quinclorac showed high β-CAS levels, in relation to the susceptible biotypes (Abdallah et al, 2006). Spraying malation associated with quinclorac on E. phyllopogon plants decreased the resistance factor from 17 to 3, in contrast to quinclorac alone (Yasuor et al, 2011). This result suggests that malation was able to inhibit the β-CAS activity on resistant E. phyllopogon plants, thus, inhibiting one of the main detoxification mechanisms of HCN (Yasuor et al, 2011).…”
Section: Auxinic Effect (Including the Production Of Cyanate)mentioning
confidence: 94%
“…E. phyllopogon biotypes that showed high β-CAS levels were resistant to the effects of cyanate, triggered after spraying quinclorac (Yasuor et al, 2011). D. ischaemum plants resistant to quinclorac showed high β-CAS levels, in relation to the susceptible biotypes (Abdallah et al, 2006).…”
Section: Auxinic Effect (Including the Production Of Cyanate)mentioning
confidence: 97%
“…and Galium spp.) neither increase ethylene and cyanide production, nor overproduce ROS in response to quinclorac treatment (Grossmann, 2000;Kwiatkowski, 1993, 2000;Van Eerd et al, 2005;Abdallah et al, 2006;Sunohara et al, 2010Sunohara et al, , 2011Yasuor et al, 2012).…”
Section: Introductionmentioning
confidence: 99%