2010
DOI: 10.1002/ps.2062
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The impact of uptake, translocation and metabolism on the differential selectivity between blackgrass and wheat for the herbicide pyroxsulam

Abstract: The selectivity of pyroxsulam to wheat relative to blackgrass was connected primarily with differences in the rate of metabolism and generation of an inactive metabolite. Metabolism in wheat restricted subsequent movement of radioactivity out of the treated leaf. The rapid metabolism in wheat was increased by the addition of cloquintocet-mexyl.

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Cited by 33 publications
(24 citation statements)
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“…Em culturas tolerantes, a detoxificação dos herbicidas inibidores da acetolacto sintase (ALS) é considerado o principal mecanismo envolvido (Yu e Powles, 2014). Para o piroxsulam, a seletividade no trigo ocorre por absorção e translocação diferencial, além de rápido metabolismo pela P450 através de O-dealquilação do anel aromático na posição 5 do carbono (DeBoer et al, 2011).…”
Section: Resultsunclassified
“…Em culturas tolerantes, a detoxificação dos herbicidas inibidores da acetolacto sintase (ALS) é considerado o principal mecanismo envolvido (Yu e Powles, 2014). Para o piroxsulam, a seletividade no trigo ocorre por absorção e translocação diferencial, além de rápido metabolismo pela P450 através de O-dealquilação do anel aromático na posição 5 do carbono (DeBoer et al, 2011).…”
Section: Resultsunclassified
“…Slight variations have been observed in the group-classification system in scientific publications but those are of minor concern. The mechanism of the action of herbicides for killing a weed is well understood and requires that, in order for it to be effective, the herbicide must undergo the following processes, in the sequential order, listed below [51] and also as illustrated in Figure 2:…”
Section: Introductionmentioning
confidence: 99%
“…When chlorpyrifos and pyroxsulam were applied on the same day, wheat chlorosis was greatest at 7 DAHT (16%) and 14 DAHT (10 to 18%); 2 to 10 times higher compared to pyroxsulam alone. Wheat usually metabolizes pyroxsulam rapidly to a less active O-dealkylation product (5). However, organophosphate insecticides are known to inhibit herbicide metabolism in crops (3,10,11), thus causing greater concentration of active herbicide in the plant tissue for longer than normal, resulting in crop injury.…”
Section: Leaf Injurymentioning
confidence: 99%