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首页> 外文期刊>Weed Technology: A journal of the Weed Science Society of America >Growth, reproductive potential, and control strategies for deeproot sedge (Cyperus entrerianus).
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Growth, reproductive potential, and control strategies for deeproot sedge (Cyperus entrerianus).

机译:深层莎草的生长,繁殖潜能和控制策略( Cyperus entrerianus )。

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Greenhouse, growth chamber, and field studies were conducted at Stoneville, MS, in 2000 to 2008, to determine the growth rate, reproductive and overwintering potential, and control of deeproot sedge. In growth chamber studies, deeproot sedge growth rate (ht) and plant dry wt were greatest at 25/35 C (night/day temperatures), when compared with regimes of 5/15, 15/25, and 20/30 C. Based on the average number of scales (fruiting sites per spikelet), spikelets per inflorescence, and culms per plant, deeproot sedge reproductive potential was 2.6-, 6.2-, and 17.4-fold greater than Surinam, green, and knob sedges, respectively. A single deeproot sedge plant produced an average of 85,500 achenes annually. Mowing at 15-cm ht weekly prevented achene production but did not kill deeproot sedge plants. The average number of inflorescences produced on mowed plants was 1.2 to 4 times greater in 2- and 1-yr-old deeproot sedge plants, respectively, when compared with unmowed plants. Mature deeproot sedge achenes were produced between monthly mowings. In a 3-yr field study, glyphosate, glufosinate, hexazinone, and MSMA provided more than 85% control of deeproot sedge, and above the soil, live deeproot sedge plant dry wt was reduced by 50, 64, 68, 72, 86, and 93% by dicamba, halosulfuron-methyl, MSMA, hexazinone, glufosinate, and glyphosate, respectively. All (100%) deeproot sedge plants 1 yr old or older overwintered at Stoneville, MS, at 33 degrees N latitude.
机译:在2000年至2008年间,在密苏里州的斯通维尔进行了温室,生长室和田间研究,以确定生长速度,繁殖和越冬的潜力以及对深root的控制。在生长室研究中,与5 / 15、15 / 25和20/30 C的制度相比,深根莎草的生长速率(ht)和植物干重在25/35 C(夜/日温度)下最大。在平均鳞片数(每个小穗的果实位点),每个花序的小穗和每株茎的平均数上,深根莎草的繁殖潜力分别比苏里南,绿色和knob莎草高2.6-,6.2-和17.4倍。单个深根莎草植物平均每年可产生85,500瘦果。每周以15厘米ht的高高进行割草可以阻止瘦果的产生,但不会杀死深根的莎草。与未割草的植物相比,割草的植物产生的平均花序数分别为2岁和1岁深莎草植物的1.2至4倍。在每月割草之间产生成熟的深根莎草瘦果。在一项为期3年的田间研究中,草甘膦,草铵膦,己嗪酮和MSMA提供了对深根莎草的85%以上的控制,在土壤上方,活的深根莎草的植物干重减少了50、64、68、72、86,麦草畏,甲基氟磺隆,MSMA,己嗪酮,草铵膦和草甘膦分别占93%和93%。所有(100%)1岁或更老的深根莎草在北纬33度在密苏里州斯通维尔越冬。

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