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| 1 | Actinobacteria-enhanced plant growth, nutrient acquisition, and crop protection:Advances in soil, plant, and microbial multifactorial interactions显示文摘Agricultural areas of land are deteriorating every day owing to population increase, rapid urbanization, and industrialization. To feed today’s huge populations, increased crop production is required from smaller areas, which warrants the continuous application of high doses of inorganic fertilizers to agricultural land. These cause damage to soil health and, therefore, nutrient imbalance conditions in arable soils. Under these conditions, the benefits of microbial inoculants (such as Actinobacteria) as replacements for harmful chemicals and promoting ecofriendly sustainable farming practices have been made clear through recent technological advances. There are multifunctional traits involved in the production of different types of bioactive compounds responsible for plant growth promotion, and the biocontrol of phytopathogens has reduced the use of chemical fertilizers and pesticides. There are some well-known groups of nitrogen-fixing Actinobacteria, such as Frankia, which undergo mutualism with plants and offer enhanced symbiotic trade-offs.In addition to nitrogen fixation, increasing availability of major plant nutrients in soil due to the solubilization of immobilized forms of phosphorus and potassium compounds, production of phytohormones, such as indole-3-acetic acid, indole-3-pyruvic acid, gibberellins, and cytokinins, improving organic matter decomposition by releasing cellulases, xylanase, glucanases, lipases, and proteases, and suppression of soil-borne pathogens by the production of siderophores, ammonia, hydrogen cyanide, and chitinase are important features of Actinobacteria useful for combating biotic and abiotic stresses in plants.The positive influence of Actinobacteria on soil fertility and plant health has motivated us to compile this review of important findings associated with sustaining plant productivity in the long run. | Debasis MITRA Rittick MONDAL Bahman KHOSHRU Ansuman SENAPATI T.K.RADHA Bhaswatimayee MAHAKUR Navendra UNIYAL Ei Mon MYO Hanane BOUTAJ Beatriz Elena GUERRA SIERRA Periyasamy PANNEERSELVAM Arakalagud Nanjundaiah GANESHAMURTHY Snežana ANÐELKOVIĆ Tanja VASIĆ Anju RANI Subhadeep DUTTA Pradeep K.DAS MOHAPATRA | 2022 | Pedosphere2022,32,1: | 3 |
| 2 | Innovation, Imitation and Intellectual Property Rights: A Note on Helpman’s Model显示文摘 | Debasis Mondal Manash Ranjan Gupta | 2006 | Journal of Economics - Zeitschrift für National?konomie2006,,1: | 1 |
| 3 | In- novation, imitation and intellectual property rights: An- teon Hellman s model显示文摘 | MONDAL DEBASIS GUPTA MANASH RANJAN | 2006 | Journal of Economics2006,87,1: | 1 |
| 4 | Innovation, imitation and intellectual property rights:A note on Helpman's model显示文摘 | Mondal Debasis Gupta Manash Ranjan | 2006 | Journal of Economics2006,87,1: | 1 |
| 5 | Endogenous imitati- on and endogenous growth in a North-South model: A theoretical analysis 显示文摘 | Mondal Debasis Gupta Manash Ranjan | 2009 | Journal of Macroeconomics2009,31,: | 1 |
| 6 | 'Innova- tion,Imitation and Intellectual property Rights: Introducing Migration in Helpman's Model'显示文摘 | Mondal Debasis and Gupta Manash Ranjan | 2007 | Japan and the World Economy2007,,3: | 1 |
| 7 | Innovation, Imitation and Intellectual Property Rights: A Note on Helpman Model 显示文摘 | Debasis Mondal and Manash Ranjan Gupta | 2006 | Journal of Economics2006,87,1: | 1 |
| 8 | Oxidative stress and redox signaling in CRPC progression: therapeutic potential of clinically-tested Nrf2-activators显示文摘Androgen deprivation therapy(ADT)is the mainstay regimen in patients with androgen-dependent prostate cancer(PCa).However,the selection of androgen-independent cancer cells leads to castrate resistant prostate cancer(CRPC).The aggressive phenotype of CRPC cells underscores the need to elucidate mechanisms and therapeutic strategies to suppress CRPC outgrowth.Despite ADT,the activation of androgen receptor(AR)transcription factor continues via crosstalk with parallel signaling pathways.Understanding of how these signaling cascades are initiated and amplified post-ADT is lacking.Hormone deprivation can increase oxidative stress and the resultant reactive oxygen species(ROS)may activate both AR and non-AR signaling.Moreover,ROS-induced inflammatory cytokines may further amplify these redox signaling pathways to augment AR function.However,clinical trials using ROS quenching small molecule antioxidants have not suppressed CRPC progression,suggesting that more potent and persistent suppression of redox signaling in CRPC cells will be needed.The transcription factor Nrf2 increases the expression of numerous antioxidant enzymes and downregulates the function of inflammatory transcription factors,e.g.,nuclear factor kappa B.We documented that Nrf2 overexpression can suppress AR-mediated transcription in CRPC cell lines.Furthermore,two Nrf2 activating agents,sulforaphane(a phytochemical)and bardoxolone-methyl(a drug in clinical trial)suppress AR levels and sensitize CRPC cells to anti-androgens.These observations implicate the benefits of potent Nrf2-activators to suppress the lethal signaling cascades that lead to CRPC outgrowth.This review article will address the redox signaling networks that augment AR signaling during PCa progression to CRPC,and the possible utility of Nrf2-activating agents as an adjunct to ADT. | Debasis Mondal Devin Narwani Shahnawaz Notta Dawood Ghaffar Nikhil Mardhekar Syed S.A.Quadri | 2021 | Cancer Drug Resistance2021,4,1: | 1 |
| 9 | Innovation, Imitation and Intellectual Property Rights, A Note on Helpman' s Model显示文摘 | Mondal Debasis Gupta Ranjan Manash | 2006 | Journal of Economics2006,87,1: | 1 |
| 10 | Innovation, imitation and intellectual property rights: A note on Helpman's Model 显示文摘 | Mondal Debasis Gupta Manash Ranjan | 2006 | Journal of Economic2006,87,1: | 1 |
| 11 | Rice(Oryza sativa L.)plant protection using dual biological control and plant growth-promoting agents:Current scenarios and future prospects显示文摘Various microorganisms live in association with different parts of plants and can be harmful,neutral,or beneficial to plant health.Some microbial inhabitants of plants can control plant diseases by contesting with,predating on,or antagonizing plant pathogens and by inducing systems for plant defense.A range of methods,including plant growth-promoting microorganisms(PGPMs)as biological control agents(BCAs)(BCA-PGPMs)are used for the biological management and control of plant pathogens.Some BCAs interact with plants by inducing resistance or priming plants without direct interaction with the pathogen.Other BCAs operate via nutrient competition or other mechanisms to modulate the growth conditions for the pathogen.Generally,PGPMs can be applied alone or together with other chemicals or carriers to control various crop diseases.This review highlights the effective types of BCA-PGPMs and their applications,roles,carrier based-formulations,and responses to rice(Oryza sativa L.)pathogens.Future plant disease management prospects are promising,and growers’increasing demand for BCA-PGPM products can be exploited as an effective approach to the management of plant diseases,as well as to improve yield,environmental protection,biological resources,and agricultural system sustainability. | Debasis MITRA Sergio DE LOS SANTOS-VILLALOBOS Fannie Isela PARRA-COTA Ana María Garcia MONTELONGO Erika Lorena BLANCO Vanessa L.LIRA Adeyemi N.OLATUNBOSUN Bahman KHOSHRU Rittick MONDAL Parameswaran CHIDAMBARANATHAN Periyasamy PANNEERSELVAM Pradeep K.DAS MOHAPATRA | 2023 | Pedosphere2023,33,2: | 0 |
| 12 | Clinical outcome of orbital apex syndrome in COVID associated mucormycosis patients in a tertiary care hospital显示文摘AIM: To share clinical pattern of presentation, the modalities of surgical intervention and the one month postsurgical outcome of rhino-orbito-mucormycosis(ROCM) cases.METHODS: All COVID associated mucormycosis(CAM) patients underwent comprehensive multidisciplinar y examination by ophthalmologist, otorhinolaryngologist and physician. Patients with clinical and radiological evidence of orbital apex involvement were included in the study. Appropriate medical and surgical intervention were done to each patient. Patients were followed up one-month post intervention. RESULTS: Out of 89 CAM patients, 31(34.8%) had orbital apex syndrome. Sixty-six(74.2%) of such patients had pre-existing diabetes mellitus, 18(58%) patients had prior documented use of steroid use, and 55(61.8%) had no light perception(LP) presenting vision. Blepharoptosis, proptosis, complete ophthalmoplegia were common clinical findings. Seventeen(19.1%) of such patients had variable amount of cavernous sinus involvement. Endoscopic debridement of paranasal sinuses and orbit with or without eyelid sparing limited orbital exenteration was done in most cases, 34(38.2%) patients could retain vision in the affected eye. CONCLUSION: Orbital apex involvement in CAM patients occur very fast. It not only leads to loss of vision but also sacrifice of the eyeball, orbital contents and eyelids. Early diagnosis and prompt intervention can preserve life, vision and spare mutilating surgeries. | Smiti Rani Srivastava Purban Ganguly Debasis Barman Sudip Das Manimoy Bandyopadhyay Asim Kumar Ghosh Subhra Sarkar Amitabha Sengupta Sarbari Swaika Pritam Chatterjee Amit Kumar Gupta Alok Ranjan Mondal Soumyajit Guha Sinjita Dutta Souvik Adhikari Aditi Kaushik Partha Sundar Biswas Asif Ayub | 2022 | International Journal of Ophthalmology(English edition)2022,15,4: | 0 |