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Evolution of Target-Site Resistance to Glyphosate in an Amaranthus palmeri Population from Argentina and Its Expression at Different Plant Growth Temperatures

机译:阿根廷an菜种群对草甘膦的抗性位点演变及其在不同植物生长温度下的表达

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摘要

The mechanism and expression of resistance to glyphosate at different plant growing temperatures was investigated in an population (VM1) from a soybean field in Vicuña Mackenna, Cordoba, Argentina. Resistance was not due to reduced glyphosate translocation to the meristem or to duplication, as reported for most US samples. In contrast, a proline 106 to serine target-site mutation acting additively with over-expression (1.8-fold increase) was respectively a major and minor contributor to glyphosate resistance in VM1. Resistance indices based on LD values generated using progenies from a cross between 52 PS106 VM1 individuals were estimated at 7.1 for homozygous SS106 and 4.3 for heterozygous PS106 compared with homozygous wild PP106 plants grown at a medium temperature of 24 °C day/18 °C night. A larger proportion of wild and mutant progenies survived a single commonly employed glyphosate rate when maintained at 30 °C day/26 °C night compared with 20 °C day/16 night in a subsequent experiment. Interestingly, the P106S mutation was not identified in any of the 920 plants analysed from 115 US populations, thereby potentially reflecting the difference in control practices in Argentina and USA.
机译:在阿根廷科尔多瓦比丘纳·麦肯纳(VicuñaMackenna)的一个大豆田中,研究了在不同植物生长温度下草甘膦抗性的机制和表达(VM1)。如大多数美国样品报道的,抗药性不是由于草甘膦向分生组织的转运减少或重复引起的。相反,脯氨酸106对丝氨酸靶位点突变的累加作用与过表达(增加1.8倍)分别是VM1中草甘膦抗性的主要和次要因素。与在24°C白天/ 18°C晚上的中等温度下生长的纯合野生PP106植物相比,基于52个PS106 VM1个体之间的后代产生的LD值产生的抗性指数估计为纯合SS106为7.1,杂合PS106为4.3。 。当维持在30°C / 26°C晚上时,较大比例的野生和突变后代在单一的常用草甘膦速率下存活,而随后的实验中则为20°C / 16晚。有趣的是,在从115位美国人群中分析的920株植物中,没有发现P106S突变,因此有可能反映了阿根廷和美国控制措施的差异。

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