首页> 外文期刊>Archives of Agronomy and Soil Science >Effect of phosphorus management on production and phosphorus balance in a rice (Oriza sativa L.)-wheat (Triticum aestivum) cropping system.
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Effect of phosphorus management on production and phosphorus balance in a rice (Oriza sativa L.)-wheat (Triticum aestivum) cropping system.

机译:磷肥对水稻(小麦)-小麦(Triticum aestivum )种植系统中产量和磷平衡的影响。

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The present study was carried out at the Indian Agricultural Research Institute, New Delhi, for three crop years (2000-2001 to 2003-2004) to find out the effect of rates and sources of phosphorus on production and phosphorus balance in a rice-wheat system. Phosphorus application significantly increased productivity and P uptake of rice-wheat cropping system and resulted in an increase in extractable P (0.5 M NaHCO3) content in soil. Mussoorie rock phosphate with phosphorus solubilizing bacteria inoculation (MRP+PSB) at 35 and 52.5 kg P ha-1 was similar to 17.5 and 35 kg P ha-1, respectively, as diammonium phosphate (DAP) in terms of productivity and P uptake of rice-wheat cropping system but significantly superior in terms of PSB population and CO2 evolution in soil. The P balance was generally more positive for MRP+PSB than for DAP and the highest P balance was observed with the application of 52.5 kg P ha-1 as MRP+PSB. At the end of three cycles of rice-wheat cropping system,net change in extractable P content in soil increased with increasing rate of P application and was highest with the application of 52.5 kg P ha-1 as MRP+PSB to each crop of every year of the three years of study. The present study, thus, indicates that P requirement of a rice-wheat cropping system can be met with 35-52 kg P ha-1 as MRP to each crop with PSB inoculation.
机译:本研究是在新德里的印度农业研究所进行的三个作物年度(2000-2001年至2003-2004年)中进行的研究,以了解磷的比率和来源对稻麦生产和磷平衡的影响。系统。施用磷显着提高了稻麦系统的生产力和磷吸收,并导致土壤中可提取的P(0.5 M NaHCO 3 )含量增加。在35和52.5 kg P ha -1 接种磷增溶菌的Mussoorie磷酸岩分别类似于17.5和35 kg P ha -1 ,水稻-小麦种植系统在生产力和磷吸收方面均以磷酸二铵(DAP)的形式存在,但在土壤中的PSB数量和CO 2 的演化方面则明显优于磷酸二铵。通常,MRP + PSB的P平衡比DAP更为阳性,在施用52.5 kg P ha -1 作为MRP + PSB时,P平衡最高。在稻麦种植系统的三个周期结束时,土壤中可提取磷含量的净变化随着施磷量的增加而增加,并以52.5 kg P ha -1 作为MRP施用量最高。在三年研究的每一年中,每种作物的+ PSB。因此,本研究表明,以PSB接种每株作物的MRP为35-52 kg P ha -1 即可满足稻麦系统的磷需求。

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