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小麦种植系统中抗除草剂管理:借鉴澳大利亚的经验。

Management of herbicide resistance in wheat cropping systems: learning from the Australian experience.

作者信息

Walsh Michael J, Powles Stephen B

机构信息

Australian Herbicide Resistance Initiative, School of Plant Biology, University of Western Australia, Perth, WA, Australia.

出版信息

Pest Manag Sci. 2014 Sep;70(9):1324-8. doi: 10.1002/ps.3704. Epub 2014 Jan 20.

DOI:10.1002/ps.3704
PMID:24318955
Abstract

Herbicide resistance continues to escalate in weed populations infesting global wheat (Triticum aestivum L.) crops, threatening grain production and thereby food supply. Conservation wheat production systems are reliant on the use of efficient herbicides providing low-cost, selective weed control in intensive cropping systems. The resistance-driven loss of herbicide resources combined with limited potential for new herbicide molecules means greater emphasis must be placed on preserving existing herbicides. For more than two decades, since the initial recognition of the dramatic consequences of herbicide resistance, the challenge of introducing additional weed control strategies into herbicide-based weed management programmes has been formidable. Throughout this period, herbicide resistance has expanded unabated across the world's wheat production regions. However, in Australia, where herbicide resources have become desperately depleted, the adoption of harvest weed seed control is evidence, at last, of a successful approach to sustainable weed management in wheat production systems. Growers routinely including strategies to target weed seeds during crop harvest, as part of herbicide-based weed management programmes, are now realising significant weed control and crop production benefits. When combined with an attitude of zero weed tolerance, there is evidence of a sustainable weed control future for wheat production systems. The hard-learned lessons of Australian growers can now be viewed by global wheat producers as an example of how to stop the continual loss of herbicide resources in productive cropping systems.

摘要

在侵扰全球小麦(Triticum aestivum L.)作物的杂草种群中,除草剂抗性持续增强,这对粮食生产乃至食物供应构成了威胁。保护性小麦生产系统依赖于高效除草剂的使用,以便在集约化种植系统中实现低成本、选择性的杂草控制。除草剂抗性导致的除草剂资源流失,加上新除草剂分子的开发潜力有限,这意味着必须更加重视保护现有的除草剂。自最初认识到除草剂抗性的严重后果以来,二十多年间,在以除草剂为基础的杂草管理计划中引入额外杂草控制策略一直是一项艰巨的挑战。在此期间,除草剂抗性在全球小麦产区持续蔓延。然而,在澳大利亚,除草剂资源已极度匮乏,收获期杂草种子控制措施的采用,终于证明了在小麦生产系统中实现可持续杂草管理的一种成功方法。种植者在基于除草剂的杂草管理计划中,常规性地纳入在作物收获期间针对杂草种子的策略,如今已实现了显著的杂草控制效果,并提高了作物产量。当与零杂草容忍态度相结合时,有证据表明小麦生产系统拥有可持续杂草控制的未来。澳大利亚种植者惨痛的经验教训,现在可以被全球小麦生产者视为如何在高产种植系统中阻止除草剂资源持续流失的范例。

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