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首页> 外文期刊>Weed Research >Consequences of narrow crop row spacing and delayed Echinochloa colona and Trianthema portulacastrum emergence for weed growth and crop yield loss in maize
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Consequences of narrow crop row spacing and delayed Echinochloa colona and Trianthema portulacastrum emergence for weed growth and crop yield loss in maize

机译:作物行距狭窄和棘轮E虫和马齿an的出现对玉米杂草生长和农作物减产的影响

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摘要

Echinochloa colona and Trianthema portulacastrum are weeds of maize that cause significant yield losses in the Indo-Gangetic Plains. Field experiments were conducted in 2009 and 2010 to determine the influence of row spacing (15, 25 and 35cm) and emergence time of E.colona and T.portulacastrum (0, 15, 25, 35, 45 and 55days after maize emergence; DAME) on weed growth and productivity of maize. A season-long weed-free treatment and a weedy control were also used to estimate maize yield and weed seed production. Crop row spacing as well as weed emergence time had a significant influence on plant height, shoot biomass and seed production of both weed species and grain yield of maize in both years. Delay in emergence of weeds resulted in less plant height, shoot biomass and seed production. However, increase in productivity of maize was observed by delay in weed emergence. Likewise, growth of both weed species was less in narrow row spacing (15cm) of maize, as compared with wider rows (25 and 35cm). Maximum seed production of both weeds was observed in weedy control plots, where there was no competition with maize crop and weeds were in rows 35cm apart. Nevertheless, maximum plant height, shoot biomass and seed production of both weed species were observed in 35cm rows, when weeds emerged simultaneously with maize. Both weed species produced only 3-5 seeds per plant, when they were emerged at 55 DAME in crop rows spaced at 15cm. Infestation of both weeds at every stage of crop led to significant crop yield loss in maize. Our results suggested that narrow row spacing and delay in weed emergence led to reduced weed growth and seed production and enhanced maize grain yield and therefore could be significant constituents of integrated weed management strategies in maize.
机译:棘叶colon和Trianthema portulacastrum是玉米的杂草,它们在印度恒河平原造成严重的产量损失。在2009年和2010年进行了田间试验,以确定行距(15、25和35cm)的影响以及大肠杆菌(E.colona)和门氏梭菌(T.portulacastrum)的出苗时间(玉米出苗后0、15、25、35、45和55天)的影响; DAME )杂草的生长和玉米的生产力。还使用了一个四季无杂草处理和杂草控制来估算玉米产量和杂草种子产量。在这两年中,作物行距和杂草出苗时间对杂草种类的株高,枝条生物量和种子产量以及玉米的籽粒产量都有重要影响。杂草出现的延迟导致植物高度,苗生物量和种子产量的降低。然而,通过杂草出苗的延迟观察到了玉米生产率的提高。同样,与窄行距(25和35cm)相比,两种杂草在玉米窄行距(15cm)中的生长都较少。在杂草防治区观察到两种杂草的最大种子产量,在这些地方没有与玉米作物竞争,杂草排成35cm。然而,当杂草与玉米同时出现时,在35cm行中观察到了两种杂草的最大株高,茎生物量和种子产量。当这两种杂草物种在55 DAME处以15cm的距离排成一排时,每棵植物仅产生3-5种种子。在作物的每个阶段,两种杂草都受到侵害,导致玉米的单产大幅下降。我们的结果表明,狭窄的行距和杂草出苗的延迟导致杂草生长和种子产量降低,玉米籽粒产量提高,因此可能是玉米综合杂草管理策略的重要组成部分。

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