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首页> 外文期刊>PLoS One >Can silicon applied to correct soil acidity in combination with Azospirillum brasilense inoculation improve nitrogen use efficiency in maize?
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Can silicon applied to correct soil acidity in combination with Azospirillum brasilense inoculation improve nitrogen use efficiency in maize?

机译:硅是否可以施加纠正土壤酸度与azospirillum brasilense接种,提高玉米中的氮气使用效率?

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Alternative management practices are needed to minimize the need for chemical fertilizer use in non-leguminous cropping systems. The use of biological agents that can fix atmospheric N has shown potential to improve nutrient availability in grass crops. This research was developed to investigate if inoculation with Azospirillum brasilense in combination with silicon (Si) can enhance N use efficiency (NUE) in maize. The study was set up in a Rhodic Hapludox under a no-till system, in a completely randomized block design with four replicates. Treatments were tested in a full factorial design and included: i) five side dress N rates (0 to 200 kg ha -1 ); ii) two liming sources (Ca and Mg silicate and dolomitic limestone); and iii) with and without seed inoculation with A . brasilense . Inoculation with A . brasilense was found to increase grain yield by 15% when N was omitted and up to 10% when N was applied. Inoculation also increased N accumulation in plant tissue. Inoculation and limestone application were found to increase leaf chlorophyll index, number of grains per ear, harvest index, and NUE. Inoculation increased harvest index and NUE by 9.5 and 19.3%, respectively, compared with non-inoculated plots. Silicon application increased leaf chlorophyll index and N-leaf concentration. The combination of Si and inoculation provided greater Si-shoot accumulation. This study showed positive improvements in maize growth production parameters as a result of inoculation, but the potential benefits of Si use were less evident. Further research should be conducted under growing conditions that provide some level of biotic or abiotic stress to study the true potential of Si application.
机译:需要替代管理实践以最大限度地减少在非豆科作物系统中使用化学肥料的需求。使用可以固定大气N的生物制剂已经显示出可提高草作物中养分可用性的可能性。开发了该研究以调查与氧化氮氧化锆的与硅(Si)的接种,可以增强玉米中的N使用效率(NUE)。该研究在一个rhodic Hapludox中设置在一个无直接系统下,在完全随机的块设计中,四个重复。治疗在完整的因子设计中进行了测试,包括:i)五侧连衣裙n率(0至200 kg ha -1); ii)两个拟林来源(Ca和Mg硅酸盐和白云石石灰石);和III),没有种子接种。巴西州。接种一个。当省略N时,发现谷物产量增加了15%的颗粒产量增加了15%。接种也增加了植物组织中的n积累。发现接种和石灰石申请增加了叶片叶绿素指数,每只耳朵,收获指数和NUE的谷物数量。与非接种图相比,接种收获指数和9.5%的9.5%和19.3%。硅施用增加了叶片叶绿素指数和N-叶浓度。 Si和接种的组合提供了更大的Si-射击积累。该研究表明,由于接种而言,玉米生长生产参数的阳性改善,但Si使用的潜在益处不太明显。进一步的研究应在生长条件下进行,以提供一定程度的生物或非生物胁迫,以研究Si应用的真实潜力。

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