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麦草畏抗性:扩大并保留基于生物技术的杂草管理策略。

Dicamba resistance: enlarging and preserving biotechnology-based weed management strategies.

作者信息

Behrens Mark R, Mutlu Nedim, Chakraborty Sarbani, Dumitru Razvan, Jiang Wen Zhi, Lavallee Bradley J, Herman Patricia L, Clemente Thomas E, Weeks Donald P

机构信息

Department of Biochemistry, University of Nebraska, Lincoln, NE 68588, USA.

出版信息

Science. 2007 May 25;316(5828):1185-8. doi: 10.1126/science.1141596.

Abstract

The advent of biotechnology-derived, herbicide-resistant crops has revolutionized farming practices in many countries. Facile, highly effective, environmentally sound, and profitable weed control methods have been rapidly adopted by crop producers who value the benefits associated with biotechnology-derived weed management traits. But a rapid rise in the populations of several troublesome weeds that are tolerant or resistant to herbicides currently used in conjunction with herbicide-resistant crops may signify that the useful lifetime of these economically important weed management traits will be cut short. We describe the development of soybean and other broadleaf plant species resistant to dicamba, a widely used, inexpensive, and environmentally safe herbicide. The dicamba resistance technology will augment current herbicide resistance technologies and extend their effective lifetime. Attributes of both nuclear- and chloroplast-encoded dicamba resistance genes that affect the potency and expected durability of the herbicide resistance trait are examined.

摘要

生物技术衍生的抗除草剂作物的出现,彻底改变了许多国家的农业生产方式。简便、高效、环保且有利可图的杂草控制方法已被重视生物技术衍生杂草管理特性相关益处的作物生产者迅速采用。但是,目前与抗除草剂作物一起使用的几种麻烦杂草对除草剂具有耐受性或抗性,其种群数量迅速增加,这可能意味着这些具有经济重要性的杂草管理特性的有效使用期限将被缩短。我们描述了对麦草畏(一种广泛使用、价格低廉且环境安全的除草剂)具有抗性的大豆及其他阔叶植物品种的培育情况。麦草畏抗性技术将增强现有的除草剂抗性技术,并延长其有效使用期限。我们研究了影响除草剂抗性特性效力和预期持久性的核编码和叶绿体编码麦草畏抗性基因的特性。

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