Qamar Rafi, Hussain Abid, Sardar Hassan, Sarwar Naeem, Javeed Hafiz Muhammad Rashad, Maqbool Amir, Hussain Mubshar
Department of Agronomy, Bahauddin Zakariya University, Multan, Punjab, Pakistan.
Department of Agronomy, College of Agriculture, University of Sargodha, Sargodha, Punjab, Pakistan.
PLoS One. 2020 Aug 6;15(8):e0231805. doi: 10.1371/journal.pone.0231805. eCollection 2020.
Boron (B) is required during all growth stages of cotton crop, especially during boll formation. However, Typic Haplocambid soils of cotton growing belt in Pakistan are B-deficient, which results in low yield and economic returns. Foliar application of B improves cotton productivity; however, information is limited on the role of soil applied B in improving cotton growth and yield. The current study investigated the role of soil applied B in improving growth, yield and fiber quality of cotton crop. Five different B doses (i.e., 0.00, 2.60, 5.52, 7.78 and 10.04 mg kg-1 of soil) and two cotton cultivars (i.e., CIM-600 and CIM-616) were included in the study. Soil applied B (2.60 mg kg-1) significantly improved growth, yield, physiological parameters and fiber quality, while 10.04 mg kg-1 application improved B distribution in roots, seeds, leaves and stalks. Significant improvement was noted in plant height (12%), leaf area (3%), number of bolls (48%), boll size (59%), boll weight (52%), seed cotton yield (52%), photosynthesis (50%), transpiration rate (10%), stomatal conductance (37%) and water use efficiency (44%) of CIM-600 with 2.60 mg kg-1 compared to control treatment of CIM-616. Similarly, B accumulation in roots, seeds, leaves and stalk of CIM-600 was improved by 76, 41, 86 and 70%, respectively compared to control treatment. The application of 2.60 mg kg-1 significantly improved ginning out turn (6%), staple length (3.5%), fiber fineness (17%) and fiber strength (5%) than no B application. The results indicated that cultivar CIM-600 had higher ginning out turn (1.5%), staple length (5.4%), fiber fineness (15.5%) and fiber strength (1.8%) than CIM-616. In crux, 2.60 mg kg-1 soil B application improved growth, yield, physiological and fiber quality traits of cotton cultivar CIM-600. Therefore, cultivar CIM-600 and 2.60 mg kg-1 soil B application is recommended for higher yield and productivity.
硼(B)在棉花作物的所有生长阶段都不可或缺,尤其是在棉铃形成期。然而,巴基斯坦棉花种植带的典型简育湿润雏形土缺硼,导致产量和经济效益低下。叶面喷施硼可提高棉花产量;然而,关于土壤施用硼对棉花生长和产量影响的信息有限。本研究调查了土壤施用硼对棉花作物生长、产量和纤维品质的作用。研究包括五种不同的硼施用量(即土壤中硼含量为0.00、2.60、5.52、7.78和10.04毫克/千克)以及两个棉花品种(即CIM - 600和CIM - 616)。土壤施用硼(2.60毫克/千克)显著改善了棉花的生长、产量、生理参数和纤维品质,而施用10.04毫克/千克的硼提高了硼在根、种子、叶片和茎中的分布。与CIM - 616的对照处理相比,施用2.60毫克/千克硼的CIM - 600在株高(提高12%)、叶面积(提高3%)、棉铃数(提高48%)、棉铃大小(提高59%)、单铃重(提高52%)、籽棉产量(提高52%)、光合作用(提高50%)、蒸腾速率(提高10%)、气孔导度(提高37%)和水分利用效率(提高44%)方面有显著改善。同样,与对照处理相比,CIM - 600根、种子、叶片和茎中硼的积累分别提高了76%、41%、86%和70%。与不施硼相比,施用2.60毫克/千克硼显著提高了轧花率(提高6%)、绒长(提高3.5%)、纤维细度(提高17%)和纤维强度(提高5%)。结果表明,CIM - 600品种的轧花率(高1.5%)、绒长(长5.4%)、纤维细度(高15.5%)和纤维强度(高1.8%)均高于CIM - 616。关键在于,土壤施用2.60毫克/千克硼可改善棉花品种CIM - 600的生长、产量、生理和纤维品质性状。因此,为实现更高产量和生产力,推荐种植CIM - 600品种并施用2.60毫克/千克的土壤硼。