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Preemergence Herbicide Effects on Hybrid Bermudagrass Root Architecture and Establishment

机译:对杂交烧杯根系结构和建立的备注除草剂影响

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摘要

Preemergence herbicides generally have a negative effect on hybrid bermudagrass [Cynodon dactylon (L.) Pers. x C. transvaalensis Burtt-Davy] establishment. However, little is known about the effect they have on root architecture and development. Research was conducted to determine the effects of commonly used preemergence herbicides on 'Latitude 36' hybrid bermudagrass root architecture and establishment. The experiment was conducted in a climate-controlled greenhouse maintained at 26 degrees C day/night temperature at Mississippi State University in Starkville, MS, from Apr. 2016 to June 2016 and repeated from July 2016 to Sept. 2016. Hybrid bermudagrass plugs (31.6 cm(2)) were planted in 126-cm(2) pots (1120 cm(3)) and preemergence herbicide treatments were applied 1 d after planting at the recommended labeled rate for each herbicide. Preemergence herbicide treatments included atrazine, atrazine + S-metolachlor, dithiopyr, flumioxazin, indaziflam, liquid and granular applied oxadiazon, S-metolachlor, pendimethalin, prodiamine, and simazine. Treatments were arranged in a completely randomized design with four replications. Plugs treated with indaziflam and liquid applied oxadiazon failed to achieve 50% hybrid bermudagrass cover by the end of the experiment. Of the remaining herbicide treatments, all herbicides other than granular applied oxadiazon and atrazine increased the number of days required to reach 50% cover (Days(50)). In addition, all herbicide treatments reduced root mass when harvested 6 weeks after treatment (WAT) relative to the nontreated. By 10 WAT, all treatments reduced root mass in run 1, but during run 2, only prodiamine, pendimethalin, simazine, atrazine + S-metolachlor, liquid applied oxadiazon, and indaziflam reduced dry root mass compared with the nontreated. At 4 WAT, all treatments other than simazine and granular applied oxadiazon reduced root length when compared with the nontreated. By 10 WAT, only dithiopyr, S-metolachlor alone, and indaziflam reduced root length when compared with the nontreated. No differences were detected in the total amounts of nonstarch nonstructural carbohydrates (TNSC) within the roots in either run of the experiment. Results suggest that indaziflam, dithiopyr, and S-metolachlor are not safe on newly established hybrid bermudagrass and should be avoided during establishment. For all other treatments, hybrid bermudagrass roots were able to recover from initial herbicidal injury by 10 WAT; however, future research should evaluate tensile strength of treated sod.
机译:备注除草剂通常对杂交百慕大草具有负面影响[Cynodon Dactelton(L.)pers。 X C. Transvaalensis Burtt-Davy]建立。然而,对根系结构和发展的影响很少。进行了研究以确定常用的养生除草剂对“纬度36”杂交百慕大根系结构和建立的影响。该实验在气候控制的温室中进行,在Mississippi州立大学的26摄氏度,Mis,Ms,MS于2016年4月至2016年6月,2016年7月至2016年7月重复。混合百慕大塞(31.6将Cm(2))种植在126厘米(2)罐(1120cm(3))中,并在为每种除草剂的推荐标记的速率下种植后,施用备注除草剂处理。额外的除草剂治疗包括亚唑嗪,阿特拉津+ S-MetOlachlor,Dithiopyr,Flumioxazin,Indaziflam,液体和颗粒化的oxadiazon,S-MetOlachlor,Pendimethalin,Prodiamine和Simazine。治疗以完全随机化设计排列,具有四种复制。用吲唑林和液体施加的塞子施用的塞子未能在实验结束时达到50%的杂交烧杯覆盖物。在剩余的除草剂治疗中,除粒子外施加的氧代氮和阿特拉津的所有除草剂增加了达到50%覆盖所需的天数(天(50))。此外,所有除草剂治疗在处理(Wat)相对于非生成后6周收获时减少了根肿块。通过10 Wat,所有治疗在跑步中减少了根系,但在运行2期间,仅在运行金属,Pendimethalin,Simazine,atrazine + S-原料,液体施加的恶作剧,与非生物相比,吲唑和吲唑.减少干根质。在4 Wat,与非生物相比,Simazine和颗粒的所有治疗均涂层施加的物质施加了根长度。通过10 Wat,只有二噻吩,单独的S-MetOlachlor,与非处理相比,吲唑纤维减少了根长。在根系中,在根部内的非淀粉非结构碳水化合物(TNSC)的总量中没有检测到差异。结果表明,在新建立的杂交百慕大数据上,吲唑胺,二噻虫和S-塞洛勒斯对新建立的杂交百慕大不安全,应在建立期间避免。对于所有其他治疗,杂交百慕大根系能够从初始除草损伤恢复10 Wat;然而,未来的研究应评估治疗草皮的拉伸强度。

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  • 来源
    《HortScience》 |2018年第4期|共6页
  • 作者单位

    Mississippi State Univ Dept Plant &

    Soil Sci Starkville MS 39762 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Starkville MS 39762 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Starkville MS 39762 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Starkville MS 39762 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Starkville MS 39762 USA;

    Scotts Miracle Gro Co Marysville OH 43040 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Starkville MS 39762 USA;

    Mississippi State Univ Dept Biochem Mol Biol Entomol &

    Plant Pathol Starkville MS 39762 USA;

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

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