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首页> 外文期刊>Acta Horticulturae >Effect of inoculation with phosphate-bacteria, sawdust compost and nitrogen sources on okra yield and some properties of calcareous soil
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Effect of inoculation with phosphate-bacteria, sawdust compost and nitrogen sources on okra yield and some properties of calcareous soil

机译:磷酸盐细菌,木屑堆肥和氮源接种对秋葵产量和石灰性土壤某些特性的影响

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摘要

Two pot experiments were carried out during the seasons of 1999 and 2000 at Agricultural Research Center in Giza using a calcareous soil media to investigate the effect of phosphate dissolving bacteria (PDB) inoculation, sawdust compost and different nitrogen sources on growth and yield of okra plants. Moreover, the changes in some biological and chemical properties of the used soil after 175 days of planting were also recorded. Bacillus megatherium var phosphaticum was used as inoculum at the time of planting. While, two rates from sawdust compost were used, i.e. 2.5% and 5% in addition to the control treatment. The nitrogen fertilizer was added at four sources namely, (B) nitric acid solution (0.1 (N) under bar), (C) nitric acid- calcium nitrate (1:1) mixture, (D) calcium nitrate solution and (E) urea solution on nitrogen basis compared with no mineral nitrogen application (A). The obtained results indicate that, inoculation of okra plants with PDB and addition of sawdust compost significantly increased plant growth, fruits yield and nutrients uptake. The highest increments of this parameter were achieved under used higher compost rate (5%) than 2.5%. The obtained results show also that, nitrogen fertilization was very important to okra plants in such soil regardless the form of added nitrogen. On the other hand, the completely and partially acidic nitrogen form induced a positive effect on the availability of nutrients such as P and K which is reflected on uptake by plant fruits. Viable microbial counts, phosphate dissolving bacteria and dehydrogenase activity in the soil as well as the availability of mineral N, P and K were enhanced by organic manuring and inoculation with PDB. Moreover, the addition of organic manure increased the organic matter percentage in the soil and lead to a slight decrease in its pH value. Therefore, adding sawdust compost to a calcareous soil in presence of acidic nitrogen fertilizer form as well as PDB inoculation could be recommended to obtain the best results for okra fruits yield and favorable nutrients uptake.
机译:在1999年和2000年的季节中,在吉萨的农业研究中心进行了两次盆栽试验,使用钙质土壤介质研究了溶解磷的细菌(PDB)接种,木屑堆肥和不同氮源对秋葵植物生长和产量的影响。 。此外,还记录了种植175天后所用土壤的某些生物学和化学性质的变化。种植时使用巨大芽孢杆菌var phosphaticum作为接种物。同时,使用了来自木屑堆肥的两种比率,即除对照处理外的比率为2.5%和5%。在以下四个来源处添加了氮肥,即(B)硝酸溶液(0.1 bar下的N),(C)硝酸-硝酸钙(1:1)的混合物,(D)硝酸钙溶液和(E)尿素溶液(以氮为基础)与不施用矿物质氮相比(A)。获得的结果表明,用PDB接种秋葵植物并添加木屑堆肥显着提高了植物的生长,果实产量和养分吸收。在使用高于2.5%的堆肥率(5%)的情况下,可以达到该参数的最高增量。获得的结果还表明,无论添加氮的形式如何,氮肥对于这种土壤中的秋葵植物都非常重要。另一方面,完全和部分酸性的氮形式对诸如磷和钾的养分的利用率产生积极影响,这反映在植物果实的吸收上。通过有机肥和接种PDB可以提高土壤中可行的微生物数量,溶解磷酸盐的细菌和脱氢酶的活性以及土壤中N,P和K的利用率。此外,有机肥的添加增加了土壤中有机质的百分比,并导致其pH值略有下降。因此,建议在酸性氮肥存在下向钙质土壤中添加木屑堆肥以及接种PDB,以获得最佳的秋葵果实产量和有利的养分吸收效果。

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