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首页> 外文期刊>Journal of the Indian Society of Soil Science >Phosphorus Management in Maize-Onion Cropping Sequence under Rainfed Temperate Conditions of Inceptisol
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Phosphorus Management in Maize-Onion Cropping Sequence under Rainfed Temperate Conditions of Inceptisol

机译:氮磷钾温育条件下玉米-洋葱种植中的磷素管理

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摘要

A field experiment was conducted during 2003-04 and 2004-05 to evaluate the direct effect of phosphorus (P) levels and their solubilizers on maize and residual effect on succeeding onion under rainfed temperate conditions of Kashmir valley. Yield andP uptake of maize were significantly increased with increasing levels of P up to 13.1 kg ha(-1) whereas post-harvest soil available P increased significantly up to 19.7 kg P ha~(-1). Significantly higher root colonization, vesicular arbuseular mycorrhizal (VAM) spore density and viable counts of Pseudomonas striata were recorded with the application of 6.6 kg P ha~(-1) over rest of the treatments but significantly decreased with increasing levels of P from 6.6 to 19.7 kg ha~(-1). Co-inoculation of VAM+phosphate solubilizing bacteria (PSB) significantly enhanced the maize yield, P uptake by grains and stover, root colonization, VAM spore density and Pseudomonas striata population over sole inoculation of VAM and PSB. Interaction P_(6.6) X (VAM+PSB) wassuperior to all the combinations in respect of colonization, VAM spores and Pseudomonas striata counts whereas P_(13.1) X VAM+PSB recorded maximum increase in yield and P uptake of maize. Highest residual effect on bulb yield of onion and available P after onion was recorded under 19.7 kg P ha~(-1) followed by 13.1 kg P ha~(-1) which increased the onion yield by 15.7 and 17.3% and available P by 21.9 and 39.8% over no-P during 2003-04 and 2004-05, respectively. Application of 13.1 kg P ha~(-1) along with VAM+PSB was adequate for sustaining crop productivity and maintaining soil health in maize-onion cropping sequence under temperate rainfed Inceptisol.
机译:在2003-04年和2004-05年之间进行了田间试验,以评估在克什米尔河谷的雨水温和条件下磷(P)水平及其增溶剂对玉米的直接影响以及对后续洋葱的残留影响。玉米的产量和磷素吸收量随着磷素水平的增加而显着增加,达到13.1 kg ha(-1),而收获后土壤中的有效磷显着增加,达到19.7 kg Pha〜(-1)。在其余处理中,施用6.6 kg P ha〜(-1)时,记录到较高的根定植,水泡状海绵状菌根(VAM)孢子密度和条纹状假单胞菌的活菌计数,但随着P从6.6升高至19.7公斤ha〜(-1)。与单独接种VAM和PSB相比,共同接种VAM +磷酸盐增溶细菌(PSB)显着提高了玉米产量,谷物和秸秆的P吸收,根定植,VAM孢子密度和假单胞菌种群。在定植,VAM孢子和假单胞菌计数方面,相互作用P_(6.6)X(VAM + PSB)优于所有组合,而P_(13.1)X VAM + PSB记录的玉米产量和P吸收量最大。在19.7 kg P ha〜(-1)之后,对洋葱和洋葱中有效磷的鳞茎产量的最大残留效应记录为,其次是13.1 kg P ha〜(-1),这使洋葱的产量分别增加了15.7和17.3%,有效磷为在2003-04年和2004-05年间,分别比无P值高21.9%和39.8%。在温带雨水的Inceptisol条件下,在玉米洋葱种植顺序中施用13.1 kg P ha〜(-1)和VAM + PSB足以维持作物生产力并维持土壤健康。

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