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首页> 外文期刊>Weed Technology: A journal of the Weed Science Society of America >Quinclorac absorption and translocation characteristics in quinclorac- and propanil-resistant and -susceptible barnyardgrass (Echinochloa crus-galli) biotypes.
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Quinclorac absorption and translocation characteristics in quinclorac- and propanil-resistant and -susceptible barnyardgrass (Echinochloa crus-galli) biotypes.

机译:在对喹氯吡喃和丙氨酸耐药的bar(Echinochloa crus-galli)生物型中,喹氯吡喹的吸收和转运特性。

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Studies were initiated to evaluate absorption, translocation, and distribution of 14C-quinclorac in propanil- and quinclorac-resistant (R-BYG) and -susceptible (S-BYG) barnyardgrass (Echinochloa crus-galli). No differential absorption of 14C-quinclorac was observed between R-BYG and S-BYG, but more 14C remained in the treated leaf of S-BYG (57% of total absorbed) compared with the R-BYG leaf (34% of total absorbed) at 72 h after treatment (HAT). After 12 HAT, 20 and 15% of the amount absorbed had been translocated basipetally by R-BYG and S-BYG, respectively. At 72 HAT, 27 and 17% of the total absorbed 14C had been translocated acropetally by R-BYG and S-BYG, respectively. The levels of 14C above the treated leaf continued to increase throughout the duration of the experiment in R-BYG while levels of 14C above the treated leaf in S-BYG remained relatively constant. Seven percent more of the total absorbed 14C was exuded from roots of R-BYG than S-BYG at 72 HAT. Although differential translocation was observed between R-BYG and S-BYG, it is unclear whether this difference is a cause of quinclorac resistance or an effect of some other physiological process. Further research is needed to determine if differential translocation is due to metabolism or other physiological factors.
机译:开始进行研究以评估14C-喹克洛拉克在对丙醇和奎尼克拉克抗药性(R-BYG)和易感性(S-BYG)n草(Echinochloa crus-galli)中的吸收,易位和分布。在R-BYG和S-BYG之间未观察到14C-喹诺拉克的吸收差异,但是与R-BYG叶片(占总吸收量的34%)相比,处理过的S-BYG叶片中保留了更多的14C(占吸收量的57%) )在治疗后72小时(HAT)。在进行了12次HAT处理后,分别被R-BYG和S-BYG基本转移了吸收量的20%和15%。在72 HAT,R-BYG和S-BYG分别对吸收的14C中的27%和17%进行了顶棚移位。在整个实验过程中,在R-BYG中,处理过的叶片上方14C的水平持续增加,而在S-BYG中,在处理过的叶片上方14C的水平保持相对恒定。在72 HAT时,R-BYG的根部比S-BYG的根部吸收的总14C含量高出7%。尽管在R-BYG和S-BYG之间观察到差异易位,但尚不清楚该差异是引起喹氯拉克抗药性的原因还是其他生理过程的影响。需要进一步研究以确定差异转运是否是由于代谢或其他生理因素引起的。

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