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棉花中线虫管理的未来。

The future of nematode management in cotton.

作者信息

Starr J L, Koenning S R, Kirkpatrick T L, Robinson A F, Roberts P A, Nichols R L

机构信息

Department of Plant Pathology and Microbiology, Texas A&M University, College Station, TX 77843 Department of Plant Pathology, NC State University, Raleigh, NC 27695 Southwest Research and Extension Center, Hope, AR 71801 USDA-ARS, 2765 F&B, College Station, TX 77845 Department of Nematology, University of California, Riverside, CA 92521 Cotton Incorporated, Cary, NC 27513.

出版信息

J Nematol. 2007 Dec;39(4):283-94.

Abstract

The importance of plant-parasitic nematodes as yield-limiting pathogens of cotton has received increased recognition and attention in the United States in the recent past. This paper summarizes the remarks made during a symposium of the same title that was held in July 2007 at the joint meeting of the Society of Nematologists and the American Phytopathological Society in San Diego, California. Although several cultural practices, including crop rotation, can be effective in suppressing the populations of the important nematode pathogens of cotton, the economic realities of cotton production limit their use. The use of nematicides is also limited by issues of efficacy and economics. There is a need for development of chemistries that will address these limitations. Also needed are systems that would enable precise nematicide application in terms of rate and placement only in areas where nematode population densities warrant application. Substantial progress is being made in the identification, characterization and mapping of loci for resistance to Meloidogyne incognita and Rotylenchulus reniformis. These data will lead to efficient marker-assisted selection systems that will likely result in development and release of nematode-resistant cotton cultivars with superior yield potential and high fiber quality.

摘要

近年来,植物寄生线虫作为棉花产量限制性病原体的重要性在美国得到了越来越多的认识和关注。本文总结了2007年7月在加利福尼亚州圣地亚哥举行的线虫学家协会和美国植物病理学会联合会议上,一场同名研讨会期间的发言内容。尽管包括轮作在内的几种栽培措施可有效抑制棉花重要线虫病原体的种群数量,但棉花生产的经济现实限制了这些措施的使用。杀线虫剂的使用也受到功效和经济问题的限制。需要开发能够解决这些限制的化学药剂。还需要能够仅在线虫种群密度需要施用的区域,就施用量和施用位置实现精确施用杀线虫剂的系统。在抗南方根结线虫和肾形肾状线虫基因座的鉴定、表征和定位方面正在取得实质性进展。这些数据将促成高效的标记辅助选择系统,这可能会导致开发和推出具有优异产量潜力和高纤维品质的抗线虫棉花品种。

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