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On the Mechanism of Resistance to Paraquat in Hordeum glaucum and H. leporinum1: Delayed Inhibition of Photosynthetic O2 Evolution after Paraquat Application

机译:大麦和H. leporinum1对百草枯的抗性机制:施用百草枯后对光合O2进化的延迟抑制

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摘要

The mechanism of resistance to paraquat was investigated in biotypes of Hordeum glaucum Steud. and H. leporinum Link. with high levels of resistance. Inhibition of photosynthetic O2 evolution after herbicide application was used to monitor the presence of paraquat at the active site. Inhibition of photosynthetic O2 evolution after paraquat application was delayed in both resistant biotypes compared with the susceptible biotypes; however, this differential was more pronounced in the case of H. glaucum than in H. leporinum. Similar results could be obtained with the related herbicide diquat. Examination of the concentration dependence of paraquat-induced inhibition of O2 evolution showed that the resistant H. glaucum biotype was less affected by herbicide compared with the susceptible biotype 3 h after treatment at most rates. The resistant H. leporinum biotype, in contrast, was as inhibited as the susceptible biotype except at the higher rates. In all cases photosynthetic O2 evolution was dramatically inhibited 24 h after treatment. Measurement of the amount of paraquat transported to the young tissue of these plants 24 h after treatment showed 57% and 53% reductions in the amount of herbicide transported in the case of the resistant H. glaucum and H. leporinum biotypes, respectively, compared with the susceptible biotypes. This was associated with 62% and 66% decreases in photosynthetic O2 evolution of young leaves in the susceptible H. glaucum and H. leporinum biotypes, respectively, a 39% decrease in activity for the resistant H. leporinum biotype, but no change in the resistant H. glaucum biotype. Photosynthetic O2 evolution of leaf slices from resistant H. glaucum was not as inhibited by paraquat compared with the susceptible biotype; however, those of resistant and susceptible biotypes of H. leporinum were equally inhibited by paraquat. Paraquat resistance in these two biotypes appears to be a consequence of reduced movement of the herbicide in the resistant plants; however, the mechanism involved is not the same in H. glaucum as in H. leporinum.
机译:在大麦大麦的生物型中研究了对百草枯的抗性机理。和H. leporinum Link。具有很高的抵抗力。除草剂施用后对光合作用O2的抑制作用被用来监测百草枯在活性部位的存在。与易感生物型相比,百草枯施用后对两种抗性生物型的光合作用O2进化的抑制均被延迟。然而,与青霉菌相比,这种区别在青霉菌的情况下更为明显。用相关的除草剂敌草快可得到类似的结果。对百草枯诱导的O2释放抑制作用的浓度依赖性研究表明,与治疗后3小时的易感生​​物型相比,抗性青枯菌生物型受除草剂的影响较小。相比之下,耐药性麻风杆菌的生物型与易感生物型一样受到抑制,只是速率较高。在所有情况下,处理后24 h光合作用的O2的释放均受到显着抑制。处理后24小时,百草枯向这些植物的年轻组织的运输量的测量结果表明,与抗性青霉和麻风树生物型相比,百草枯的除草剂运输量分别减少了57%和53%易感生物型。这分别与易感的青霉菌和麻风菌的生物型幼叶的光合作用O2进化降低62%和66%有关,抗性麻风菌生物型的活性降低39%,但抗性麻风菌型没有变化。抗青霉菌的生物型。与易感生物型相比,百草枯对抗性青霉菌叶片的光合作用O2的释放没有抑制作用。然而,百草枯同样抑制了具有抗性和易感生物型的H. leporinum。这两种生物型的百草枯抗性似乎是由于抗性植物中除草剂运动减少的结果。但是,涉及的机制在青霉菌中与在麻风菌中不同。

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