期刊论文详细信息
Crop Science
Physiological Basis for Glyphosate Tolerance in Hard Fescue and Perennial Ryegrass Cultivars
McCullough, Patrick E.1  Shilling, Donn G.1  Yu, Jialin1  Czarnota, Mark A.1 
[1] Dep. of Crop and Soil Sciences, Univ. of Georgia, Griffin, GA 30223$$
关键词: Facial Expression;    FACS;    Fuzzy Inference System;    Feature Extraction;    HCI.;   
DOI  :  10.2135/cropsci2015.01.0035
学科分类:农业科学(综合)
来源: Crop Science
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【 摘 要 】

Glyphosate effectively controls susceptible biotypes of numerous weed species, but applications are often injurious to turfgrass. ‘Aurora Gold’ hard fescue (Festuca longifolia Thuill.) and ‘JS-501’ perennial ryegrass (Lolium perenne L.) have enhanced tolerance to glyphosate compared with traditional varieties, but the mechanisms that convey tolerance are not well understood. The objectives of this research were to investigate the physiological basis for glyphosate tolerance in Aurora Gold hard fescue and JS-501 perennial ryegrass. In greenhouse experiments, the estimated glyphosate rate required to reduce dry shoot mass 50% from the nontreated shoots at 4 wk after treatment measured >3360, >3360, 1850, and 1310 g acid equivalent (a.e.) ha−1 for Aurora Gold, JS-501, ‘Manhattan V’ perennial ryegrass, and ‘Stonehenge’ hard fescue, respectively. Absorption of 14C-glyphosate was similar between hard fescue cultivars and averaged 5% of the applied radioactivity. However, Aurora Gold accumulated 20% less shikimate than Stonehenge when incubated at ≥250 μM of glyphosate in leaf disk assays. JS-501 perennial ryegrass absorbed less 14C-glyphosate than Manhattan V (13 vs. 22% of the applied) and accumulated ∼50% less shikimate. All cultivars translocated the majority of absorbed radioactivity out of the treated leaf. Based on these findings, glyphosate has less target-site inhibition in Aurora Gold compared with a more susceptible hard fescue cultivar. The glyphosate tolerance of JS-501 perennial ryegrass involves two mechanisms including less absorption and target-site inhibition from a more susceptible cultivar.

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