Biozote-P Application under Zero Tillage Drill Wheat Planting Influenced Yield and Phosphorus use Efficiency of Wheat Crop

Ghulam Muhammad, Shahinshah Khan, Mustajab A. Khan, Javed Anjum, Nazeer Ahmed Alizai, Kamran Anjum, Abdul Ghafoor, Hidayatullah Kakar
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引用次数: 1

Abstract

The availability of phosphorus is limited in calcareous soil because of the chemical reaction between calcium and phosphorus byconvertingit into calcium phosphate.The application of phosphorus solubilizing bacteria as biofertilizer might help in the availability of phosphorus in soil. So, this study was aimed to enhance phosphorus use efficiency (PUE), growth,and yield of wheatplanted by zero tillage drill after rice harvestusing biozote-P as a microbial inoculant. Three treatments (T1= Traditional wheat planting (control), T2= Zero-tillage Drill wheat planting,and T3= Zero-tillage Drill wheat planting + Biozote-P) were tested in the rice harvested field at UstaMuhammad, Balochistan during 2019-20. Each treatment was comprised of one acreand the collected data weresubjected todescriptive statistics included minimum, maximum,mean, standard deviation,and standard error. The pre soil properties revealed that thesoil was clayey, alkaline (pH>8.0) with low soil organic matter, total nitrogen,and available phosphoruscontents. However, post soil properties showed increase in soil organic matterwith marginal level reduction insoil pHalong with improvement in the availability of total nitrogen(0.051%) and phosphorus(4.31 mg kg-1) in T3. The ZT and ZT+Biozote-P increased grain yield by 32.09 and 36.94% over traditional wheat planting. So, phosphorus use efficiency (PUE) was increased by 41.77 and 29.22% in T3. It means that Biozote-P application under zero tillage drill improved PUE by 9.71% in comparison to sole zero tillage drill wheat planting.Subsequently, it is inferredthat biozote-P (microbial inoculant)can be included in ZT wheat planting in rice-wheat cropping zone of Balochistan
免耕播麦下施用生物磷肥对小麦产量和磷素利用效率的影响
在钙质土壤中,磷的有效性受到限制,因为钙和磷之间发生化学反应,将其转化为磷酸钙。溶磷菌作为生物肥料的应用可能有助于提高土壤中磷的有效性。因此,本研究旨在提高水稻收获后免耕播种机对磷的利用效率(PUE),提高小麦的生长和产量。2019- 2020年,在俾路支省UstaMuhammad水稻收获田试验了3个处理(T1=传统小麦种植(对照)、T2=免耕播麦和T3=免耕播麦+ Biozote-P)。每个处理由一英亩组成,收集的数据进行描述性统计,包括最小值、最大值、平均值、标准差和标准误差。土壤性状分析表明,土壤呈粘质、碱性(pH>8.0),有机质、全氮和速效磷含量较低。但后期土壤性状表现为有机质增加,土壤ph值边际降低,全氮有效性(0.051%)和全磷有效性(4.31 mg kg-1)在T3处理下均有提高。ZT和ZT+Biozote-P比传统小麦增产32.9%和36.94%。结果表明,T3处理的磷利用效率分别提高了41.77%和29.22%。说明免耕免播下施用Biozote-P比单免耕免耕小麦PUE提高了9.71%。由此推断,在俾路支省稻麦混作区,微生物接种剂可用于ZT小麦种植
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