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Preemergence and Postemergence Control of Triazine-Resistant Common Lambsquarters (Chenopodium album) in No-Till Corn (Zea mays)1

机译:免耕玉米(Zea mays)中耐三嗪的普通小羔羊(Chenopodium album)的出苗前和出苗后控制 1

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摘要

Field studies were conducted from 1997 to 1999 in Westminster, MD, to evaluate a variety of preemergence (PRE) and postemergence (POST) herbicide programs on crop injury and control of triazine-resistant common lambsquarters (TR-CHEAL) in no-till corn. In 1997 PRE studies, combinations of metolachlor with flumetsulam or halosulfuron and high rates of rimsulfuron + thifensulfuron (0.02 + 0.009 kg ai/ha) injured corn most 4 weeks after treatment (WAT), averaging 11 to 15%. In 1998 and 1999, metolachlor plus a high rate of halosulfuron (0.07 kg/ha) injured corn most 4 WAT, averaging 13 and 10%, respectively. High rates of rimsulfuron + thifensulfuron also provided a higher level of corn injury in 1998 and 1999 in comparison with many of the other treatments. However, for all three years of the study, no injury was observed from any PRE treatment 8 WAT. In 1997 and 1998, at 8 WAT, combinations of metolachlor with flumetsulam or halosulfuron provided greater TR-CHEAL control than many of the other treatments, averaging 98 and 100%, respectively. In 1999, however, control of TR-CHEAL with these same treatments did not vary in comparison with most of the other treatments. At 8 WAT, there was a trend for increased TR-CHEAL control as the rates of RPA-201772 and rimsulfuron + thifensulfuron increased. Control of TR-CHEAL with metolachlor + atrazine + pendimethalin varied across years 8 WAT. Similar observations were made 16 WAT. In 1997, POST applications of dicamba, SAN 1269H at 0.3 lb ai/ha, primisulfuron + dicamba, and primisulfuron + CGA 152005 + dicamba provided the highest level of TR-CHEAL control 8 WAT, averaging 93, 93, 95, and 93%, respectively. In 1998, with the exception of carfentrazone + atrazine, all POST treatments provided 90% control of TR-CHEAL or better 8 WAT. In 1999, POST applications of SAN 1269H at 0.3 kg/ha, pyridate + atrazine, and primisulfuron + CGA 152005 + pyridate provided the highest level of TR-CHEAL control, averaging 80, 90, and 96%, respectively, 8 WAT. With the exception of carfentrazone + atrazine, control of TR-CHEAL with the other POST treatments varied in 1999 from 60 to 74% 8 WAT. Carfentrazone + atrazine applied POST provided the lowest level of TR-CHEAL control 8 WAT averaging 28, 37, and 17% for 1997 to 1999, respectively.
机译:1997年至1999年在马里兰州威斯敏斯特市进行了田间研究,以评估各种免耕玉米免耕玉米除草剂方案(PRE)和出苗后(POST),这些方案对作物的伤害和对三嗪抗性普通羔羊的控制(TR-CHEAL) 。在1997年的PRE研究中,将甲草胺与氟美沙仑或氟磺隆合用,以及高剂量的环嘧磺隆和噻吩磺隆(0.02 + 0.009 kg ai / ha)的组合在处理(WAT)后的4周内对玉米的伤害最大,平均为11%至15%。在1998年和1999年,异丙甲草胺加高剂量的氟磺隆(0.07千克/公顷)对玉米造成的伤害最多为4个WAT,分别平均为13%和10%。与许多其他治疗方法相比,1998年和1999年高剂量的rimsulfuron + thifensulfuron还提供了更高水平的玉米伤害。但是,在整个研究的三年中,任何PRE治疗8 WAT均未观察到损伤。在1997年和1998年,WAT为8时,异丙甲草胺与氟美沙仑或卤代磺隆的组合提供的TR-CHEAL控制效果比其他许多处理方法更高,分别为98%和100%。然而,在1999年,与大多数其他治疗相比,使用这些相同治疗对TR-CHEAL的控制没有变化。在第8个WAT时,随着RPA-201772和rimsulfuron + thifensulfuron的比率增加,TR-CHEAL控制存在增加的趋势。在第8年的WAT中,异丙甲草胺+阿特拉津+二甲戊灵对TR-CHEAL的控制有所不同。 16 WAT也有类似的观察。 1997年,使用麦草畏,SAN 1269H在0.3 lb ai / ha,primisulfuron +麦草畏和primisulfuron + CGA 152005 + dicamba的POST应用提供了最高水平的TR-CHEAL控制8 WAT,平均93、93、95和93% , 分别。 1998年,除克芬特拉酮+阿特拉津外,所有POST处理均提供90%的TR-CHEAL或更好的8 WAT控制。 1999年,SAN 1269H的0.3 kg / ha,吡啶盐+阿特拉津和primisulfuron + CGA 152005 +吡啶的POST应用提供了最高水平的TR-CHEAL控制,分别为8,WAT,80、90和96%。除克芬曲酮+阿特拉津外,1999年其他WAT对TR-CHEAL的控制与其他POST处理的差异从60%到74%不等。 Carfentrazone +阿特拉津应用POST提供的TR-CHEAL对照8 WAT最低水平,在1997年至1999年分别为28%,37%和17%。

著录项

  • 来源
    《Weed Technology》 |2001年第4期|p.879-884|共6页
  • 作者

    RONALD L. RITTER;

  • 作者单位

    Associate Professor and Agricultural Research Technician, Department of Natural Resource Sciences and Landscape Architecture, University of Maryland, College Park, MD 20742-5821. Corresponding author's E-mail: rr24@umail.umd.edu.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Herbicide-resistant weeds.;

    机译:抗除草剂杂草。;

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