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Tillage, crop establishment, residue management and herbicide applications for effective weed control in direct seeded rice of eastern Indo-Gangetic Plains of South Asia

机译:南亚东部印度突发平原直接稻米有效杂草控制的耕作,作物建立,残留管理和除草剂应用

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Weeds are the major production constraint in direct seeded rice (DSR) due to the concurrent emergence of competitive weeds and absence of water at initial growth stages to smother weed growth, leading to decreased crop yield. DSR has emerged as an alternative to the conventional water, labour and energy-intensive puddled transplanted rice (PTPR) in the eastern Indo-Gangetic Plains (IGP) of India. Hence, three field experiments were conducted (2008-2010) to evaluate integrated weed management options that included transplanted rice under puddled and unpuddled conditions, zero till DSR with or without residue retention and cover crops, zero till transplanted rice (ZTTPR) (experiment I); different combination of herbicides with or without cover crops (experiment II and III). Results revealed that during 1st year of study, zero-till direct seeded rice (ZTDSR) with (ZTDSR + R) or without (ZTDSR-R) residue retention and ZTDSR after the cover crops of sesbania [Sesbania aculeata (Willd.) Pers.] (ZTDSR + SB) or cowpea [Vigna unguiculata (L.) Walp.] (ZTDSR + CP) had greater weed density and dry matter accumulation than puddled transplanted rice (PTPR). However, in the 2nd and 3rd years, similar or lower weed density and dry matter accumulation was recorded in zero-tilled (ZT) plots. In 3rd year, plots under ZTDSR-R, ZTDSR + R, ZTDSR + SB, and ZTDSR + CP accumulated 14.3, 33.3, 23.1, and 60%, respectively, less weed dry matter over PTPR. Plots under ZTDSR produced almost similar or more grain yield to PTPR in all the three years of experimentation. On the basis of 3 years average data, the highest grain yield was recorded in plots under ZTDSR + R or R followed by ZTTPR and ZTDSR + CP. While in experiment II, mungbean [Vigna radiata (L.) R. Wilczek] as cover crop fb bispyribac-Na at 25 g ha(-1) resulted in the highest grain yield in 2008; but in 2009, weed free plots were superior-most. With regard to herbicides, pre-emergence application of pendimethalin EC at 1000 g ha(-1); effectively controlled aerobic grassy weeds such as Eragrostis tenella var. japonica (Thunb.) Roem. & Schult. but was ineffective against Echinochloa colona (L.) Link. Similarly, bispyribac-Na at 25 g ha(-1) was most effective for control of E. colona and Commelina benghalensis L., but incompetent against E. tenella. Overall, from the weed management viewpoint, this study recommends combination of pendimethalin at 1000 g ha(-1) fb bispyribac-Na at 25 g ha(-1) for effective control of diverse weed flora encountered in DSR.
机译:由于竞争性杂草的同时出现和初始增长阶段的缺乏缺乏杂草增长,杂草是直接播种稻(DSR)的主要生产限制,以扼杀杂草增长,导致作物产量下降。 DSR已成为印度东部难潮平原(IGP)中的传统水,劳动和能量密集泥浆移植稻(PTPR)的替代品。因此,进行了三种现场实验(2008-2010),以评估综合杂草管理选择,包括移植的水稻在挤压和无水条件下,零直到DSR,有或没有残留的保留和覆盖作物,零直到移植稻米(ZTTPR)(实验I );除覆盖作物(实验II和III)的除草剂不同的除草剂组合。结果表明,在第1年的研究期间,零下去的直接播种稻(ZTDSR)或没有(ZTDSR-R)残留物保留和ZTDSR在萨斯巴尼亚覆盖作物[索斯巴尼亚Aculeata(Willd。)。 ](ZTDSR + Sb)或豇豆[Vigna Unguiculata(L.)沃尔普](ZTDSR + CP)具有比挤渣的移植水稻(PTPR)更大的杂草密度和干物质积累。然而,在第2岁和第3岁处,在零耕(ZT)地块中,将类似或更低的杂草密度和干物质积累记录。在第三年,ZTDSR-R,ZTDSR + R,ZTDSR + SB和ZTDSR + CP下的图分别累积了14.3,33.3,23.1和60%,缺乏PTPR的干物质。在ZTDSR下的情节在实验的所有三年内产生了几乎与PTPR的谷物产量。在3年的平均数据的基础上,最高谷物产量在ZTDSR + R或R下的图中记录,其次是ZTTPR和ZTDSR + CP。在实验II中,Mungbean [Vigna radiata(L.)R.Wilczek]作为覆盖作物FB Bispyribac-Na(-1),导致2008年的谷物产量最高;但在2009年,杂草的免费情节最优。关于除草剂,在1000g ha(-1)中的PENDIMETHALIN EC的出苗前施用;有效地控制了Eragrostis tenella var等有氧的草杂草。 japonica(Thunb。)ROEM。 &舒勒。但对Echinochloa Colona(L.)联系无效。类似地,25g Ha(-1)的Bispyribac-Na最有效地对E. Colona和Commelina Benghalensis L的控制最有效,但对E. Tenella的无称阻。总的来说,从杂草管理观点来看,本研究建议在25g HA(-1)下的5000g HA(-1)FB(-1)的PENDIMETHALIN在25g HA(-1)中组合,以便有效控制DSR中遇到的不同杂草植物。

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