首页> 外文期刊>Communications in Soil Science and Plant Analysis >Dry Matter, Nitrogen, Phosphorous, and Potassium Partitioning, Accumulation, and Use Efficiency in Transgenic Cotton-Based Cropping Systems
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Dry Matter, Nitrogen, Phosphorous, and Potassium Partitioning, Accumulation, and Use Efficiency in Transgenic Cotton-Based Cropping Systems

机译:转基因棉花种植系统中的干物质,氮,磷和钾分配,积累和利用效率

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A better understanding of the fate of nutrients in transgenic cotton (Gossypium hirsutum L.) fields will improve nutrient efficiencies, will optimize crop growth and development, and may help to enhance soil quality. A study was made to evaluate and quantify the effect of cropping system [sole cotton and groundnut (Arachis hypogaea) intercropping with transgenic cotton] and nitrogen (N) management [control (0N), 100% recommended dose of nitrogen (RDN) through urea, substitution of 25% RDN through farmyard manure (FYM), and substitution of 50% RDN through FYM] on dry matter (DM) and nutrient partitioning and accumulation by transgenic cotton and groundnut at New Delhi during 2006-2007. Soil and plant samples were collected and analyzed at 60, 90, and 120 days after sowing and at harvest. Results revealed that intercropping of groundnut with cotton did not significantly affect DM and nutrient partitioning in cotton, but residual soil fertility in terms of potassium permanganate (KMnO4) N showed an improvement in contrast to Olsen's P and ammonium acetate (NH4OAc)-exchangeable K over sole cotton. At harvest, of total DM assimilated, leaves constituted 10-20%, stem 50%, and reproductive parts of cotton accounted for the rest. For each kilogram of seed cotton produced, the crop assimilated 61 g of N, of which 23 g was partitioned to harvested seed cotton. Substitution of 25% RDN through FYM, being on par with 100% RDN through urea, recorded greater DM, nutrient uptake in different parts of cotton, agronomic N-use efficiency (9.5 kg seed cotton kg N−1), and apparent N recovery (83.3%) over 50% RDN substitution through FYM and control. The control, being on par with 50% RDN substitution through FYM, recorded significantly greater DM and nutrient uptake by intercropped groundnut over other treatments. Apparent N and potassium (K) balance at the end of study was negative in all treatments; however, the actual change in KMnO4 N was positive in all the treatments except control. Our study suggests that intercropping of groundnut with transgenic cotton and substitution of 25% dose of N through FYM is sustainable in tropical countries.View full textDownload full textKeywordsApparent balance, dry matter, FYM, groundnut, nitrogen, organic carbon, transgenic cottonRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00103624.2012.716125
机译:更好地了解转基因棉花(陆地棉)田间养分的命运将提高养分效率,优化作物的生长和发育,并可能有助于提高土壤质量。进行了一项研究,以评估和量化种植系统的效果[单株棉花和花生(花生)与转基因棉花的间作]和氮(N)管理[对照(0N),通过尿素的100%建议氮(RDN)剂量,在2006-2007年间通过转基因棉花和花生在干物质(DM)上以及通过转基因棉花和花生对25%RDN的替代(通过农家肥(FYM)的替代,以及通过FYM的50%RDN的替代)。在播种后60天,90天和120天以及收获时收集土壤和植物样品并进行分析。结果表明,花生与棉花间作不会显着影响棉花的DM和养分分配,但残留土壤肥力方面的高锰酸钾(KMnO 4 )与Olsen的P和铵相比有所改善唯一棉上可与乙酸根(NH 4 OAc)交换的K。收获时,DM吸收的总DM中,叶子占10-20%,茎占50%,其余部分是棉花的生殖部分。每生产一公斤籽棉,农作物就会吸收61克氮,其中23克分配给收获的籽棉。通过FYM替代25%RDN,与通过尿素100%RDN相同,这表明更高的DM,棉花不同部分的养分吸收,农艺氮的利用效率(9.5千克籽棉千克N â1 ),并且通过FYM和对照在50%的RDN取代下,表观氮的回收率(83.3%)。与通过FYM替代50%RDN的对照组相比,间作花生对DM和养分的吸收显着高于其他处理。在研究结束时,所有治疗的表观氮和钾(K)平衡均为阴性。然而,除对照外,所有处理中KMnO 4 N的实际变化均为阳性。我们的研究表明,在热带国家,花生与转基因棉花的间作和通过FYM替代25%剂量的N是可持续的。查看全文下载全文关键词表观平衡,干物质,FYM,花生,氮,有机碳,转基因棉花相关的var addthis_config = {ui_cobrand:“ Taylor&Francis Online”,servicescompact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00103624.2012.716125

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