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黑麦草杂草物种对非选择性草甘膦、草铵膦和乙氧氟草醚除草剂多重抗性的向前选择。

Forward selection for multiple resistance across the non-selective glyphosate, glufosinate and oxyfluorfen herbicides in Lolium weed species.

作者信息

Fernández Pablo, Alcántara Ricardo, Osuna María D, Vila-Aiub Martin M, Prado Rafael De

机构信息

Departamento de Química Agrícola y Edafología, Universidad de Córdoba, Córdoba, Spain.

Centro de Investigaciones Científicas y Tecnológicas de Extremadura (CICYTEX), Guadajira-Badajoz, Spain.

出版信息

Pest Manag Sci. 2017 May;73(5):936-944. doi: 10.1002/ps.4368. Epub 2016 Sep 7.

Abstract

BACKGROUND

In the Mediterranean area, Lolium species have evolved resistance to glyphosate after decades of continual use without other alternative chemicals in perennial crops (olive, citrus and vineyards). In recent years, oxyfluorfen alone or mixed with glyphosate and glufosinate has been introduced as a chemical option to control dicot and grass weeds.

RESULTS

Dose-response studies confirmed that three glyphosate-resistant Lolium weed species (L. rigidum, L. perenne, L. multiflorum) collected from perennial crops in the Iberian Peninsula have also evolved resistance to glufosinate and oxyfluorfen herbicides, despite their recent introduction. Based on the LD resistance parameter, the resistance factor was similar among Lolium species and ranged from 14- to 21-fold and from ten- to 12-fold for oxyfluorfen and glufosinate respectively. Similarly, about 14-fold resistance to both oxyfluorfen and glufosinate was estimated on average for the three Lolium species when growth reduction (GR ) was assessed. This study identified oxyfluorfen resistance in a grass species for the first time.

CONCLUSION

A major threat to sustainability of perennial crops in the Iberian Peninsula is evident, as multiple resistance to non-selective glyphosate, glufosinate and oxyfluorfen herbicides has evolved in L. rigidum, L. perenne and L. multiflorum weeds. © 2016 Society of Chemical Industry.

摘要

背景

在地中海地区,黑麦草属植物在多年生作物(橄榄、柑橘和葡萄园)中持续数十年使用草甘膦且无其他替代化学品的情况下,已进化出对草甘膦的抗性。近年来,乙氧氟草醚单独使用或与草甘膦和草铵膦混合使用已被引入作为控制双子叶杂草和禾本科杂草的化学选择。

结果

剂量反应研究证实,从伊比利亚半岛多年生作物中采集的三种抗草甘膦黑麦草杂草物种(硬直黑麦草、多年生黑麦草、多花黑麦草),尽管乙氧氟草醚和草铵膦除草剂是最近才引入的,但也已进化出对它们的抗性。基于LD抗性参数,黑麦草属物种之间的抗性因子相似,乙氧氟草醚和草铵膦的抗性因子分别为14至21倍和10至12倍。同样,当评估生长抑制(GR)时,三种黑麦草属物种对乙氧氟草醚和草铵膦的抗性平均估计约为14倍。本研究首次在一种禾本科杂草中鉴定出对乙氧氟草醚的抗性。

结论

伊比利亚半岛多年生作物可持续性面临的一个重大威胁显而易见,因为硬直黑麦草、多年生黑麦草和多花黑麦草杂草已进化出对非选择性草甘膦、草铵膦和乙氧氟草醚除草剂的多重抗性。©2016化学工业协会。

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