Author:
Imran Asma,Sardar Fozia,Khaliq Zabish,Nawaz Muhammad Shoib,Shehzad Atif,Ahmad Muhammad,Yasmin Sumera,Hakim Sughra,Mirza Babur S.,Mubeen Fathia,Mirza Muhammad Sajjad
Abstract
An extensive use of chemical fertilizers has posed a serious impact on food and environmental quality and sustainability. As the organic and biofertilizers can satisfactorily fulfill the crop’s nutritional requirement, the plants require less chemical fertilizer application; hence, the food is low in chemical residues and environment is less polluted. The agriculture crop residues, being a rich source of nutrients, can be used to feed the soil and crops after composting and is a practicable approach to sustainable waste management and organic agriculture instead of open-field burning of crop residues. This study demonstrates a feasible strategy to convert the wheat and rice plant residues into composted organic fertilizer and subsequent enrichment with plant-beneficial bacteria. The bioactive compost was then tested in a series of in vitro and in vivo experiments for validating its role in growing organic vegetables. The compost was enriched with a blend of micronutrients, such as zinc, magnesium, and iron, and a multi-trait bacterial consortium AAP (Azospirillum, Arthrobacter, and Pseudomonas spp.). The bacterial consortium AAP showed survival up to 180 days post-inoculation while maintaining their PGP traits. Field emission scanning electron microscopic analysis and fluorescence in situ hybridization (FISH) of bioactive compost further elaborated the morphology and confirmed the PGPR survival and distribution. Plant inoculation of this bioactive compost showed significant improvement in the growth and yield of chilies and tomato without any additional chemical fertilizer yielding a high value to cost ratio. An increase of ≈35% in chlorophyll contents, ≈25% in biomass, and ≈75% in yield was observed in chilies and tomatoes. The increase in N was 18.7 and 25%, while in P contents were 18.5 and 19% in chilies and tomatoes, respectively. The application of bioactive compost significantly stimulated the bacterial population as well as the phosphatase and dehydrogenase activities of soil. These results suggest that bioactive compost can serve as a source of bioorganic fertilizer to get maximum benefits regarding vegetable yield, soil quality, and fertilizer saving with the anticipated application for other food crops. It is a possible win-win situation for environmental sustainability and food security.
Funder
Higher Education Commision, Pakistan
Subject
Biomedical Engineering,Histology,Bioengineering,Biotechnology
Reference101 articles.
1. A Quantitative Analysis and Comparison of Nitrogen, Potassium and Phosphorus in rice Husk and Wheat Bran Samples;Abbas;Pab,2012
2. The Physical Properties of Compost;Agnew;Compost. Sci. Utilization,2003
3. Response of Vegetative and Reproductive Components of Chili to Inorganic and Organic Mulches;Ahmad;Pakistan J. Agric. Sci.,2011
4. Role of Plant Growth Promoting Rhizobacteria Applied in Combination with Compost and mineral Fertilizers to Improve Growth and Yield of Wheat (Triticum aestivum L.);Akhtar;Pakistan J. Bot.,2009
5. Most‐probable‐number Method for Microbial Populations;Alexander;Methods Soil Anal. Part 2 Chem. Microbiol. Properties,1965
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