Department of Plant Sciences, University of California, Davis, CA, USA.
Department of Horticulture, Oregon State University, Corvallis, OR, USA.
Pest Manag Sci. 2018 Dec;74(12):2747-2753. doi: 10.1002/ps.5061. Epub 2018 Jul 6.
In California specialty cropping systems such as vineyards and orchards, Echinochloa colona is present as a summer annual weed. It is able to germinate throughout the growing season whenever favorable conditions are present, and management relies heavily on glyphosate applications. Glyphosate-resistant (GR) E. colona biotypes are present in the state, but the levels of resistance observed suggest that there may be differences in mechanisms of resistance among populations.
Echinochloa colona lines collected from different regions of California's Central Valley presented resistance levels ranging from 1.4 to 4.3-fold compared to susceptible lines. No differences in the absorption and translocation of [ C]-glyphosate were observed among lines. Resistant lines accumulated eight-fold less shikimic acid after treatment with 435 and 870 g a.e. ha glyphosate compared to the most susceptible line. Sequencing of a region of the EPSPS gene revealed three single nucleotide changes leading to amino acid substitutions at Proline 106, including Pro106Leu, Pro106Thr and Pro106Ser.
These results indicate that an altered target site in EPSPS is contributing to resistance in these lines and resistance has evolved independently, multiple times in the Central Valley of California. Additional research is needed to further understand the genomic contributions of resistance loci in this polyploid weed species. © 2018 Society of Chemical Industry.
在加利福尼亚的特种作物种植系统(如葡萄园和果园)中,稗草是一种夏季一年生杂草。只要条件适宜,它就能在整个生长季节发芽,而管理则严重依赖草甘膦的应用。该州存在抗草甘膦(GR)稗草生物型,但观察到的抗性水平表明,不同种群的抗性机制可能存在差异。
从加利福尼亚州中央谷不同地区采集的稗草品系与敏感系相比,其抗性水平分别为 1.4 至 4.3 倍。不同品系之间对[C]草甘膦的吸收和转运没有差异。与最敏感的系相比,用 435 和 870 g a.e. ha 草甘膦处理后,抗性系积累的莽草酸少 8 倍。对 EPSPS 基因的一个区域进行测序显示,有三个单核苷酸变化导致脯氨酸 106 发生氨基酸取代,包括 Pro106Leu、Pro106Thr 和 Pro106Ser。
这些结果表明,EPSPS 中靶标位点的改变导致了这些品系的抗性,并且抗性在加利福尼亚州中央谷已经独立进化了多次。需要进一步研究以进一步了解该多倍体杂草物种中抗性基因座的基因组贡献。© 2018 化学工业学会。