Papers by Dr Wajid Hasan, PhD., PDF
International Journal of Agricultural and Applied Sciences (IJAAS), Jun 20, 2024
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REDSHINE Publication eBooks, Oct 10, 2020
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Phytochemistry reviews, Apr 4, 2024
The review comprehensively explores factors influencing enzyme activities in insects and their im... more The review comprehensively explores factors influencing enzyme activities in insects and their implications in defense against toxicants. It encompasses a diverse array of enzymes involved in metabolizing synthetic chemicals, emphasizing their dynamic regulation. Key factors affecting enzyme activities, such as
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International journal of plant and soil science, Feb 17, 2024
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International Journal of Plant and Soil Science, Dec 10, 2023
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Scientific reports, Feb 28, 2024
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6th International Conference , 24
Pleased to invite you to attend the 6th International Conference on “Cutting-Edge Solutions in Sc... more Pleased to invite you to attend the 6th International Conference on “Cutting-Edge Solutions in Science- Agriculture, Technology, Engineering and Humanities” (CSATEH-2024) that will be jointly organized by
Department of Geography, D. S. B. Campus, Kumaun University, Nainital, Uttarakhand
Agricultural & Environmental Technology Development Society (AETDS), U.S. Nagar, Uttarakhand, India;
University of Agricultural Sciences, GKVK, Bangalore, Karnataka (India)
Dr YSR Horticultural University, Venkataramanagudem, Andhra Pradesh (India)
Faculty of Agriculture (FOA), Agriculture and Forestry University, Chitwan, Nepal;
Sher-e-Bangla Agricultural University, Dhaka, Bangladesh
Mid-West University, Surkhet, Nepal;
CSB-Central Tasar Research and Training Institute, Ranchi, Jharkhand;
Herbal Research and Development Institute, Chamoli, Uttarakhand
CSB-Basic Tasar Silkworm Seed Organization, Bilaspur, Chhattisgarh
Venue: UGC-HRDC Hall, Kumaun University, Nainital, Uttarakhand, India
during August 24-26, 2024.
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Journal of Plant Biota, 2023
Plant diseases pose a signi icant threat to global agriculture and food security. The ongoing bat... more Plant diseases pose a signi icant threat to global agriculture and food security. The ongoing battle between pathogens and plants has spurred continuous research efforts to develop effective strategies for enhancing plant disease resistance. This comprehensive review aims to shed light on the latest insights from the ield of Molecular Plant Pathology and its contributions to the development of innovative strategies for bolstering plant immunity against a myriad of pathogens. Our review encompasses a thorough examination of the molecular mechanisms underlying plant-pathogen interactions, emphasizing key concepts such as the gene-forgene hypothesis, effector-triggered immunity, and systemic acquired resistance. Furthermore, we delve into the realm of genetic engineering, showcasing examples of successful genome modi ications that have conferred enhanced resistance to diseases in various crop species. In addition to genetic engineering, we explore the remarkable role of plant-associated microbiomes in bolstering disease resistance. We examine the intricate symbiotic relationships that exist between plants and bene icial microbes and discuss how harnessing these interactions holds immense promise for sustainable agriculture.
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Phytochemistry, 2024
The review comprehensively explores factors influencing enzyme activities in insects and their im... more The review comprehensively explores factors influencing enzyme activities in insects and their implications in defense against toxicants. It encompasses a diverse array of enzymes involved in metabolizing synthetic chemicals, emphasizing their dynamic regulation. Key factors affecting enzyme activities, such as
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Agriculture Archives, 2024
Pesticides play a crucial role in modern agricultural practices, yet their extensive use poses si... more Pesticides play a crucial role in modern agricultural practices, yet their extensive use poses signi icant environmental challenges, particularly concerning soil and water quality. This abstract offers a comprehensive overview of the physicochemical behavior of pesticides in soil and water systems, essential for effective pesticide management and environmental protection. Factors in luencing pesticide fate and transport, including soil properties, pesticide characteristics, environmental conditions, and management practices, are meticulously examined. Key physicochemical processes such as sorption, degradation, volatilization, and leaching govern pesticide behavior, profoundly impacting their persistence and potential environmental risks. Strategies for minimizing pesticide contamination and promoting sustainable agriculture are highlighted, underscoring the importance of integrated pest management and conservation practices. Through collaborative efforts and informed decision-making, we can mitigate pesticide pollution, preserve natural resources, and safeguard ecosystem health.
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Journal of Experimental Agriculture International, 2024
The RNA interference (RNAi) has emerged as a promising approach for targeted and eco-friendly ins... more The RNA interference (RNAi) has emerged as a promising approach for targeted and eco-friendly insect pest management in sustainable agriculture. The RNAi involves the silencing of specific genes through the introduction of double-stranded RNA (dsRNA), leading to the degradation of complementary mRNA and subsequent reduction in the expression of targeted proteins. This chapter provides a comprehensive overview of the current state and future prospects of RNAibased strategies for insect pest control. We discuss the molecular mechanisms underlying RNAi, delivery methods for dsRNA, and the design and selection of effective target genes. The application of RNAi in controlling various insect pests, including lepidopterans, coleopterans, and hemipterans is extensively reviewed. also highlight the potential challenges and limitations associated with RNAi-based pest management, such as off-target effects, variable efficacy across insect species, and the development of resistance. Strategies to overcome these challenges, including the use of nanoparticle-based delivery systems and the combination of RNAi with other pest control methods, are explored. Furthermore, discuss the environmental and ecological considerations surrounding the use of RNAi in agriculture, emphasizing the importance of assessing non-target effects and the need for appropriate risk assessment frameworks. The chapter concludes by outlining future research directions and the potential for RNAi to revolutionize insect pest management, contributing to the development of sustainable and resilient agricultural systems.
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African Journal of Biological Sciences, 2024
Modern agriculture faces the challenge of producing more food to meet the demands of a growing gl... more Modern agriculture faces the challenge of producing more food to meet the demands of a growing global population while minimizing its impact on the environment. To achieve this, precision agriculture has emerged as a transformative approach, harnessing cutting-edge technologies to optimize farming practices. Among these technologies, modern optical sensing has garnered significant attention due to its versatility, non-destructive nature, and high-resolution capabilities. This review explores the latest developments in optical sensing technologies and their wide-ranging applications in agriculture. We delve into the principles behind these sensors, their advantages, and their potential to revolutionize various aspects of farming, including crop monitoring, disease detection, soil analysis, and nutrient management. Additionally, we discuss challenges and opportunities for the widespread adoption of optical sensing in agriculture, highlighting the need for data integration, technological standardization, and farmer awareness. Through a
comprehensive examination of the current state-of-the-art and future prospects, this review aims to demonstrate how modern optical sensing technologies have the potential to drive sustainable and efficient agriculture.
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Global Agri Vision, 2024
Biopesticides have emerged as a promising alternative to synthetic pesticides, offering an eco-fr... more Biopesticides have emerged as a promising alternative to synthetic pesticides, offering an eco-friendly and sustainable approach to pest management. These naturally derived substances, including microorganisms, plant extracts, and semiochemicals, have gained significant attention due to their reduced environmental impact and potential to mitigate the adverse effects associated with conventional pesticides. This article provides a comprehensive overview of biopesticides, discussing their types, modes of action, advantages, and challenges. It explores the current state of biopesticide research, highlighting recent advancements and future prospects. The article also examines the regulatory framework governing biopesticide development and commercialization, as well as the role of integrated pest management (IPM) strategies in promoting the adoption of biopesticides. Finally, it emphasizes the importance of continued research and development efforts to unlock the full potential of biopesticides in sustainable agriculture.
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IOP Conference Series: Earth and Environmental Science, 2021
Coagulation and flocculation are an essential component of both the treatment of drinking water a... more Coagulation and flocculation are an essential component of both the treatment of drinking water and the treatment of wastewater. The coagulant is one of the materials or substances that is added to the water to remove, stabilizes and causes colloidal particles to settle. Chemical coagulants such as aluminum sulphate (alum), ferric chloride, and synthetic polymers are the most commonly used coagulants in the industry due to their efficacy in turbidity removal. However, the use of chemical-based coagulants has had some negative impacts on human health and the environment, such as Alzheimer’s disease, and has produced a high volume of toxic sludge. In order to reduce negative impacts, this led to the discovery of an alternative to the natural coagulant (plant-based) for drinking water treatment. The coagulant used in this study is a combination of fruit waste containing citrus microcarpa peels and papaya seed with a ratio of 80:20 and 40:60. In addition to determining the potential of ...
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Scientific Reports, 2024
The agroforestry system is the best option to achieve the net zero carbon emissions target for In... more The agroforestry system is the best option to achieve the net zero carbon emissions target for India. Keeping this view, carbon sequestration and credit potential of gamhar based agroforestry system has been assessed. The experiment was carried out in randomized block design in seven different treatments with five replications. Gamhar tree biomass accumulation was higher in gamhar based agroforestry system compared to sole gamhar. Among different tree components, stem contributed a maximum to total gamhar tree biomass followed by roots, leaves and branches. The average contributions of stems, roots, leaves and branches in total tree biomass in two annual cycles (2016-17 and 2017-18) varied between 50 and 60, 19.8 and 20, 19.2 and 20, and 10.7 and 12.7 percent, respectively. In case of crops, above ground, below ground and total biomass was significantly higher in sole intercrops than gamhar based agroforestry system. Total (Tree + interrops + Soil) carbon stock, carbon sequestration, carbon credit and carbon price were significantly affected by treatments, and was maximum in Sole Greengram-Mustard. Net carbon emission was also recorded lowest in Sole Greengram-Mustard for which the values were 811.55% and 725.24% and 760.69% lower than Sole Gamhar in 2016-17, 2017-18 and in pooled data, respectively.
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Trends in Biosciences, 2009
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International Journal of Agricultural and Applied Sciences
The climate change has been intensified the risk of climate dependent crop production. Increase i... more The climate change has been intensified the risk of climate dependent crop production. Increase in temperature can reduce crop duration, increase crop respiration rates, alter photosynthesis process and affect the survival and proliferation of pest populations. The importance of climate and weather events to the distribution of insects and their population dynamics has long been recognized. Insects are poikilothermic in nature and are directly under the control of temperature for their growth. The duration of insect life cycle is altered under increased temperature and elevated carbon dioxide concentrations resulting in variable number of generations per year. The elevated carbon dioxide concentrations are mediated through enhanced photosynthesis in plants for phytophagous insects’ growth and development. Several insect pests, that were important in the past or the minor pests are likely to become more devastating with global warming and climate change. Insect pests cause an estimat...
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Biologia
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International Journal of Agricultural and Applied Sciences, 2023
The present communication deals with the Skipper butterflies (Hesperiidae: Lepidoptera) common to... more The present communication deals with the Skipper butterflies (Hesperiidae: Lepidoptera) common to Sulawesi (Indonesia) and India with their common names, host plants and updating.
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Papers by Dr Wajid Hasan, PhD., PDF
Department of Geography, D. S. B. Campus, Kumaun University, Nainital, Uttarakhand
Agricultural & Environmental Technology Development Society (AETDS), U.S. Nagar, Uttarakhand, India;
University of Agricultural Sciences, GKVK, Bangalore, Karnataka (India)
Dr YSR Horticultural University, Venkataramanagudem, Andhra Pradesh (India)
Faculty of Agriculture (FOA), Agriculture and Forestry University, Chitwan, Nepal;
Sher-e-Bangla Agricultural University, Dhaka, Bangladesh
Mid-West University, Surkhet, Nepal;
CSB-Central Tasar Research and Training Institute, Ranchi, Jharkhand;
Herbal Research and Development Institute, Chamoli, Uttarakhand
CSB-Basic Tasar Silkworm Seed Organization, Bilaspur, Chhattisgarh
Venue: UGC-HRDC Hall, Kumaun University, Nainital, Uttarakhand, India
during August 24-26, 2024.
comprehensive examination of the current state-of-the-art and future prospects, this review aims to demonstrate how modern optical sensing technologies have the potential to drive sustainable and efficient agriculture.
Department of Geography, D. S. B. Campus, Kumaun University, Nainital, Uttarakhand
Agricultural & Environmental Technology Development Society (AETDS), U.S. Nagar, Uttarakhand, India;
University of Agricultural Sciences, GKVK, Bangalore, Karnataka (India)
Dr YSR Horticultural University, Venkataramanagudem, Andhra Pradesh (India)
Faculty of Agriculture (FOA), Agriculture and Forestry University, Chitwan, Nepal;
Sher-e-Bangla Agricultural University, Dhaka, Bangladesh
Mid-West University, Surkhet, Nepal;
CSB-Central Tasar Research and Training Institute, Ranchi, Jharkhand;
Herbal Research and Development Institute, Chamoli, Uttarakhand
CSB-Basic Tasar Silkworm Seed Organization, Bilaspur, Chhattisgarh
Venue: UGC-HRDC Hall, Kumaun University, Nainital, Uttarakhand, India
during August 24-26, 2024.
comprehensive examination of the current state-of-the-art and future prospects, this review aims to demonstrate how modern optical sensing technologies have the potential to drive sustainable and efficient agriculture.
imagery is revolutionizing farm management. These technologies provide farmers with precise data on crop health, soil conditions, and weather patterns, enabling them to make informed decisions that enhance
productivity and sustainability. Technology is not only transforming agriculture but also redefining the way we approach environmental sustainability. The integration of renewable energy sources, such as solar and wind power, into agricultural practices is reducing reliance on fossil fuels and lowering greenhouse gas emissions. These technological advancements are critical for creating a circular economy that supports both economic growth and environmental protection. Engineering is at the forefront of creating resilient infrastructure that supports modern agricultural practices. These engineering solutions are vital for building
a robust agricultural supply chain that can withstand the challenges posed by climate change. The role of the humanities in these advancements cannot be understated. As we develop and implement new technologies,
it is essential to consider the social and ethical implications of these innovations. The humanities offer critical perspectives on issues such as food sovereignty, land rights, and the impact of technology on rural
communities. By integrating these perspectives into the development process, we can ensure that agricultural innovations are not only effective but also socially responsible. This holistic approach is essential for creating a sustainable and equitable future.
I wish all participants a rewarding and insightful experience at the Cutting-Edge Solutions in ScienceAgriculture, Technology, Engineering, and Humanities (CASTEH-2024) conference. Over the next three
days, I trust that the rich scientific sessions and collaborative dialogues will foster groundbreaking ideas and strategies. I am confident that the outcomes of this conference will leave a lasting impact on our efforts to
combat climate change and its many challenges.