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Development of enzymes for robust aryloxyphenoxypropionate and synthetic auxin herbicide tolerance traits in maize and soybean crops

机译:玉米和大豆作物肥胖芳基氧基苯氧基丙酸盐和合成毒素除草剂耐受性状的酶的发展

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BACKGROUND Effective management of weedy species in agricultural fields is essential for maintaining favorable growing conditions and crop yields. The introduction of genetically modified crops containing herbicide tolerance traits has been a successful additional tool available to farmers to better control weeds. However, weed resistance challenges present a need for additional herbicide tolerance trait options. RESULTS To help meet this challenge, a new trait that provides tolerance to an aryloxyphenoxypropionate (FOP) herbicide and members of the synthetic auxin herbicide family, such as 2,4-dichlorophenoxyacetic acid (2,4-D), was developed. Development of this herbicide tolerance trait employed an enzyme engineered with robust and specific enzymatic activity for these two herbicide families. This engineering effort utilized a microbial-sourced dioxygenase scaffold to generate variants with improved enzymatic parameters. Additional optimization to enhance in-plant stability of the enzyme enabled an efficacious trait that can withstand the higher temperature conditions often found in field environments. CONCLUSION Optimized herbicide tolerance enzyme variants with enhanced enzymatic and temperature stability parameters enabled robust herbicide tolerance for two herbicide families in transgenic maize and soybeans. This herbicide tolerance trait for FOP and synthetic auxin herbicides such as 2,4-D could be useful in weed management systems, providing additional tools for farmers to control weeds. (c) 2019 Society of Chemical Industry
机译:背景技术农业领域中杂草物种的有效管理对于维持有利的生长条件和作物产量至关重要。含有除草剂公差特征的转基因作物引入是农民可用的成功额外工具,以更好地控制杂草。然而,杂草抵抗挑战表达了需要额外的除草剂耐受性特征选择。结果有助于满足这一挑战,开发了一种为芳氧基苯氧基己酸(FOP)除草剂(例如2,4-二氯苯乙酸(2,4-D)提供芳氧基苯氧基己酰上(FOP)除草剂(FOP)除草剂(2,4-二氯苯乙酸(2,4-D)提供耐受性的新特征。这种除草剂耐受性的发展使用具有稳健和特异性酶活性的酶,用于这两个除草剂家族。该工程努力利用微生物源性二恶英酶支架,产生具有改善的酶促参数的变体。提高酶的植物稳定性的额外优化使能有效特性,可以承受通常在现场环境中发现的更高的温度条件。结论具有增强的酶促稳定性参数的优化除草剂耐受性酶变体,使两种除草剂家族在转基因玉米和大豆中的两种除草剂耐受性具有鲁棒的除草剂耐受性。这种除草剂耐受性具有FOP和合成的植物蛋白除草剂如2,4-D可以用于杂草管理系统,为农民提供额外的工具来控制杂草。 (c)2019年化学工业协会

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