首页> 美国卫生研究院文献>Brazilian Journal of Microbiology >Combined application of bio-organic phosphate and phosphorus solubilizing bacteria (Bacillus strain MWT 14) improve the performance of bread wheat with low fertilizer input under an arid climate
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Combined application of bio-organic phosphate and phosphorus solubilizing bacteria (Bacillus strain MWT 14) improve the performance of bread wheat with low fertilizer input under an arid climate

机译:生物有机磷酸盐和磷增溶细菌(芽孢杆菌MWT 14)的组合施用可改善干旱气候下低施肥量的面包小麦的性能

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摘要

This study was aimed to investigate the effect of bio-organic phosphate either alone or in combination with phosphorus solubilizing bacteria strain (Bacillus MWT-14) on the growth and productivity of two wheat cultivars (Galaxy-2013 and Punjab-2011) along with recommended (150–100 NP kg ha−1) and half dose (75–50 NP kg ha−1) of fertilizers. The combined application of bio-organic phosphate and the phosphorous solubilizing bacteria strain at either fertilizer level significantly improved the growth, yield parameters and productivity of both wheat cultivars compared to non-inoculated control treatments. The cultivar Punjab-2011 produced the higher chlorophyll contents, crop growth rate, and the straw yield at half dose of NP fertilizer; while Galaxy-2013, with the combined application of bio-organic phosphate and phosphorous solubilizing bacteria under recommended NP fertilizer dose. Combined over both NP fertilizer levels, the combined use of bio-organic phosphate and phosphorous solubilizing bacteria enhanced the grain yield of cultivar Galaxy-2013 by 54.3% and that of cultivar Punjab-2011 by 83.3%. The combined application of bio-organic phosphate and phosphorous solubilizing bacteria also increased the population of phosphorous solubilizing bacteria, the soil organic matter and phosphorous contents in the soil. In conclusion, the combined application of bio-organic phosphate and phosphorous solubilizing bacteria offers an eco-friendly option to harvest the better wheat yield with low fertilizer input under arid climate.
机译:这项研究旨在研究生物有机磷酸盐单独或与磷增溶细菌菌株(MWT-14芽孢杆菌组合)对两种小麦品种(Galaxy-2013和Punjab-2011)的生长和生产力的影响,以及推荐的方法。肥料(150–100 NP kg·ha -1 )和半剂量(75–50 NP·kg ha -1 )。与未接种的对照处理相比,将生物有机磷酸盐和磷增溶细菌菌株在任一肥料水平下的组合施用均显着改善了两个小麦品种的生长,产量参数和生产力。 Punjab-2011品种在半剂量的NP肥料中产生了较高的叶绿素含量,作物生长速率和秸秆产量;而Galaxy-2013,则在推荐的NP肥料剂量下,结合了生物有机磷酸盐和磷增溶细菌的应用。结合氮磷肥水平,生物有机磷酸盐和磷增溶细菌的组合使用可使Galaxy-2013品种的谷物产量提高54.3%,旁遮普邦2011品种的谷物产量提高83.3%。生物有机磷酸盐和磷增溶细菌的联合应用也增加了磷增溶细菌的数量,土壤有机质和土壤中的磷含量。总之,在干旱气候下,生物有机磷酸盐和磷增溶细菌的组合应用提供了一种生态友好的选择,可以以较低的肥料投入获得更好的小麦产量。

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