Role of absorption and translocation in the mechanism of glyphosate resistance in horseweed (Conyza canadensis)

被引:118
作者
Koger, CH [1 ]
Reddy, KN [1 ]
机构
[1] USDA ARS, So Weed Sci Res Unit, Stoneville, MS 38776 USA
关键词
bioassay; cuticle; epicuticular wax; glyphosate; glyphosate resistance; herbicide efficacy; weed resistance;
D O I
10.1614/WS-04-102R
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Greenhouse and laboratory experiments were conducted to investigate mechanisms of glyphosate resistance in horseweed populations from Mississippi, Arkansas, Delaware, and Tennessee. A nondestructive leaf-dip bioassay was developed to confirm resistance and susceptibility in individual test plants. A single leaf was excised from each plant, and the petiole and bottom one-fourth of leaf was dipped in a 600 mg ae L-1 glyphosate solution for 2 d followed by visually estimating the injury on a scale of 0 to 10. Plants were classified as resistant (R) if the score was 2 to 3 and susceptible (S) if the score was 5 to 6. C-14-glyphosate solution was applied on the adaxial surface of a fully expanded leaf of the second whorl of four-whorl rosette plants. Plants were harvested 48 h after treatment and radioactivity was determined in treated leaf, other leaves, crown, and roots. Absorption of C-14-glyphosate was similar (47 to 54%) between R and S plants from within and among the four states, suggesting absorption is not involved in glyphosate resistance. The amount of radioactivity translocated from the treated leaf was reduced in R plants compared with S plants. The reduction in translocation of 14C-glyphosate ranged from 28% in Mississippi-R biotype to 48% in Delaware-R biotype compared with their respective S biocypes. Epicuticular wax mass ranged from 6 to 80 mug cm(-2) among horseweed biotypes, with no differences between R and S biotypes within each state. Treating two leaves with glyphosate solution at the field use rate (0.84 kg ae ha(-1)) killed S plants but not R plants (38 to 58% control) regardless of state origin. These results suggest that a simple bioassay can be used to screen biotypes for suspected resistance and that reduced translocation of glyphosate plays a major role in glyphosate resistance in R biotypes of horseweed.
引用
收藏
页码:84 / 89
页数:6
相关论文
共 23 条
[1]  
Baerson SR, 2002, WEED SCI, V50, P721, DOI 10.1614/0043-1745(2002)050[0721:ITMOGR]2.0.CO
[2]  
2
[3]   ABSORPTION, TRANSLOCATION, AND ACTIVITY OF CGA-136872, DPX-V9360, AND GLYPHOSATE IN RHIZOME JOHNSONGRASS (SORGHUM-HALEPENSE) [J].
CAMACHO, RF ;
MOSHIER, LJ .
WEED SCIENCE, 1991, 39 (03) :354-357
[4]  
Chachalis D, 2001, WEED SCI, V49, P628, DOI 10.1614/0043-1745(2001)049[0628:HELSAS]2.0.CO
[5]  
2
[6]  
Duke S.O., 1988, HERBICIDES CHEM DEGR, VVolume 3, P1
[7]   Resistance to glyphosate in Lolium rigidum.: II.: Uptake, translocation, and metabolism [J].
Feng, PCC ;
Pratley, JE ;
Bohn, JA .
WEED SCIENCE, 1999, 47 (04) :412-415
[8]   Investigations into glyphosate-resistant horseweed (Conyza canadensis):: retention, uptake, translocation, and metabolism [J].
Feng, PCC ;
Tran, M ;
Chiu, T ;
Sammons, RD ;
Heck, GR ;
CaJacob, CA .
WEED SCIENCE, 2004, 52 (04) :498-505
[9]  
Ferreira JFS, 2000, WEED SCI, V48, P193, DOI 10.1614/0043-1745(2000)048[0193:AATOGI]2.0.CO
[10]  
2