Publications by authors named "Jay Verma"

Per- and polyfluoroalkyl substances (PFAS) are a group of recalcitrant anthropogenic compounds that are extensively utilized for numerous industrial applications globally. Despite such vast utilization, PFAS accumulation in the soils and sediments with further uptake, toxicity and translocation to the plants, microbes and microhabitats has led a serious concern. The present review primarily focuses on the speciation, mobilization and toxicity of PFAS in the soil-microbe-plant system and bioremediation strategies.

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Drought is the most important abiotic stress that restricts the genetically predetermined yield potential of the crops. In the present study, four tomato varieties: Kashi Vishesh, Kashi Aman, Kashi Abhiman, and Kashi Amrit, were used to study the effect of PGPMs (plant growth-promoting microorganisms). PGPM strains, BHUPSB14, BHUPSB06, BHUPSB01, BHUPSB0, BHUPSB17, and , were used as the consortium.

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We report a complete genome of BHUJPV-SS7 isolated from soil which contains 4,299 predicted genes and 4,012 predicted protein-coding genes within its chromosome (4,115,399 bp), and has 43.51% G + C content and a predicted beta-1,4-glucanase (EC 3.2.

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In recent years, research into the complex interactions and crosstalk between plants and their associated microbiota, collectively known as the plant microbiome has revealed the pivotal role of microbial communities for promoting plant growth and health. Plants have evolved intricate relationships with a diverse array of microorganisms inhabiting their roots, leaves, and other plant tissues. This microbiota mainly includes bacteria, archaea, fungi, protozoans, and viruses, forming a dynamic and interconnected network within and around the plant.

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Chickpeas ( L.) are used as a good source of proteins and energy in the diets of various organisms including humans and animals. Chickpea straws can serve as an alternative option for forage for different ruminants.

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  • Rice is a vital food source for approximately two billion people, but its cultivation is challenged by diseases like rice blast and environmental concerns from synthetic chemicals.
  • This study focuses on the effect of bacterial volatiles (BVCs) on rice seedling growth and defense, selecting six beneficial bacterial strains known for promoting plant growth.
  • Results indicate that BVCs reduce rice blast fungus growth significantly and enhance various defense enzymes and growth traits, demonstrating their potential as a sustainable method to boost rice productivity and resilience against stress.
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 Hereditary cardiomyopathies are commonly occurring myocardial conditions affecting heart structure and function with a genetic or familial association, but the etiology is often unknown. Cardiomyopathies are linked to significant mortality, requiring robust risk stratification with genetic testing and early diagnosis.  We hypothesized that health care disparities exist in genetic testing for hereditary cardiomyopathies within clinical practice and research studies.

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  • The study aimed to assess social media usage among members of the Arthroscopy Association of North America (AANA) and identify differences based on joint-specific specializations.
  • A survey of 2,573 U.S. orthopaedic surgeons found that 64.7% had active social media accounts, with knee, shoulder, and wrist specialists showing the highest usage scores, while foot & ankle specialists showed lower engagement.
  • Results indicated that geographic location also influenced social media presence, with surgeons in the West having a stronger online presence compared to those in the Northeast and South.
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Problem: The determinants of COVID-19 vaccine acceptance, hesitancy, and refusal remain poorly understood. We assessed the general population of Pune after visiting tertiary care hospital for their willingness to accept the vaccine and the reason for their hesitancy and refusal.

Methodology: A six-month descriptive cross-sectional study with 386 community members over the age of 18 who visited the Tertiary Hospital OPD was conducted.

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Soil contamination is one of the main threats to ecosystem health and sustainability. Yet little is known about the extent to which soil contaminants differ between urban greenspaces and natural ecosystems. Here we show that urban greenspaces and adjacent natural areas (i.

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The rhizosphere microbes play a key role in plant nutrition and health. However, the interaction of beneficial microbes and (lobia) production remains poorly understood. Thus, we aimed to isolate and characterize the soil microbes from the rhizosphere and develop novel microbial consortia for enhancing lobia production.

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While the contribution of biodiversity to supporting multiple ecosystem functions is well established in natural ecosystems, the relationship of the above- and below-ground diversity with ecosystem multifunctionality remains virtually unknown in urban greenspaces. Here we conducted a standardized survey of urban greenspaces from 56 municipalities across six continents, aiming to investigate the relationships of plant and soil biodiversity (diversity of bacteria, fungi, protists and invertebrates, and metagenomics-based functional diversity) with 18 surrogates of ecosystem functions from nine ecosystem services. We found that soil biodiversity across biomes was significantly and positively correlated with multiple dimensions of ecosystem functions, and contributed to key ecosystem services such as microbially driven carbon pools, organic matter decomposition, plant productivity, nutrient cycling, water regulation, plant-soil mutualism, plant pathogen control and antibiotic resistance regulation.

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Background: Little is known about the global distribution and environmental drivers of key microbial functional traits such as antibiotic resistance genes (ARGs). Soils are one of Earth's largest reservoirs of ARGs, which are integral for soil microbial competition, and have potential implications for plant and human health. Yet, their diversity and global patterns remain poorly described.

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Tomato production is severely affected by abiotic stresses (drought, flood, heat, and salt) and causes approximately 70% loss in yield depending on severity and duration of the stress. Drought is the most destructive abiotic stress and tomato is very sensitive to the drought stress, as cultivated tomato lack novel gene(s) for drought stress tolerance. Only 20% of agricultural land worldwide is irrigated, and only 14.

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Soils are the foundation of all terrestrial ecosystems. However, unlike for plants and animals, a global assessment of hotspots for soil nature conservation is still lacking. This hampers our ability to establish nature conservation priorities for the multiple dimensions that support the soil system: from soil biodiversity to ecosystem services.

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Article Synopsis
  • Plant core microbiomes contain important microbes that help plants function, but these can be disrupted by stresses such as diseases.
  • The study investigated the impact of a specific cotton fungus, Fusarium oxysporum, on the soil and plant microbiomes, showing that the pathogen changes the rhizosphere microbiome, but biocontrol agents can help protect it.
  • By analyzing the networks of microbial interactions, the research identified key microbes within the pathobiome that can offer protection against plant infections, offering new strategies for managing plant diseases in agriculture.
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Mutation in ATP7B gene causes Wilson disease (WD) that is characterized by severe hepatic and neurological symptoms. ATP7B localizes at the trans-Golgi Network (TGN) transporting copper to copper-dependent enzymes and traffics in apically targeted vesicles upon intracellular copper elevation. To decode the cellular underpinnings of WD manifestation we investigated copper-responsive polarized trafficking and copper transport activity of 15 WD causing point mutations in ATP7B.

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Plant hormones play an important role in growth, defence and plants productivity and there are several studies on their effects on plants. However, their role in humans and animals is limitedly studied. Recent studies suggest that plant hormone also works in mammalian systems, and have the potential to reduce human diseases such as cancer, diabetes, and also improve cell growth.

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The main aim of the present work was to explore culturable bacteria and to develop potential microbial consortium as bio-inoculants for enhancing plant productivity, nutritional content, and soil health. For this study, we selected two bacterial strains e.g.

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