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| 1 | Understanding Brown Planthopper Resistance in Rice: Genetics, Biochemical and Molecular Breeding Approaches显示文摘Brown planthopper(BPH,Nilaparvata lugens St自I)is the most devastating pest of rice in Asia and causes significant yield loss annually.Around 37 BPH resistance genes have been identified so far in indica,African rice varieties along with wild germplasms such as Oryza officinalis,O.minuta,O.nivara,O.punctata,O.rufipogon and O,latifolia.Genes/QTLs involved in BPH resistance,including Bph1,bph2/BPH26,Bph3,Bph6,bph7,BPH9,Bph12,Bph14,Bph15,Bph17,BPH18,bph19,Bph20,Bph21(t),Bph27,Bph27©Bph28(t),BPH29,QBph3,QBph4,QBph4.2,Bph30,Bph32,Bph33,Bph35 and Bph36,have been fine-mapped by different researchers across the globe.The majority of genes/QTLs are located on rice chromosomes 1,3,4,6,11 and 12.Rice plants respond to BPH attack by releasing various endogenous metabolites like proteinase inhibitors,callose,secondary metabolites(terpenes,alkaloids,flavonoid,etc.)and volatile compounds.Besides that,hormonal signal pathways mediating(antagonistic/synergistic)resista nee responses in rice have been well studied.Marker-assisted breedi ng and genome editi ng techniq ues can also be adopted for improving resista nee to novel BPH biotypes. | Lakesh MUDULI Sukanta Kumar PRADHAN Abinash MISHRA Debendra Nath BASTIA Kailash Chandra SAMAL Pawan Kumar AGRAWAL Manasi DASH | 2021 | Rice science2021,28,6: | 2 |
| 2 | A Hybrid Multi-Agent Based Particle Swarm Optimizstion Algorithm for Economic Power Dispatch 显示文摘 | Rajesh Kumar Debendra Sharma Abhinav Sadu | 2011 | Electrical Power and Energy Systems2011,33,1: | 1 |
| 3 | Evaluation of ligninolytic microorganisms for efficient decolorization of a small pulp and paper mill effluent显示文摘 | Debendra K Sahoo Rimpy Gupta | 2005 | Process Biochem2005,40,5: | 1 |
| 4 | Practical syntheses of(2S)-R207910 and(2R)-R207910显示文摘 | SRIVARI C KIRAN B DEBENDRA K | 2011 | Eur J Org Chem2011,,11: | 1 |
| 5 | Evaluation of ligninolytic microorganisms for efficient decolorization of a small pulp and paper mill effluent 显示文摘 | Debendra K Sahoo Rimpy G | 2005 | Process Biochemist2005,40,2: | 1 |
| 6 | Application of aluminum oxide nanofluids in diesel electric generator as jacked water coolant显示文摘 | Devdatta P K Ravikanth S V Debendra K D | 2008 | Applied Thermal Engineering2008,28,12: | 1 |
| 7 | Application of aluminum oxide nanofluids in diesel electric generator as jacked water coolant 显示文摘 | Devdatta P K Ravikanth S V Debendra K D | 2008 | Applied Thermal Engineering2008,28,17: | 1 |
| 8 | Stereoselective synthesis of the densely functionalized C1 - C9 fragment of Amphidinol- ides C and F 显示文摘 | Debendra K Mohapatra | 2009 | Tetrahedron Lett2009,50,46: | 1 |
| 9 | Immobilized chaperones: A productive alternative to refolding of bacterial inclusion body proteins 显示文摘 | Kamna J Arshad J Debendra K | 2008 | Process Biochemistry2008,43,6: | 1 |
| 10 | Numerical study of fluid dynamic and heat transfer performance of Al2O and CuO nanofluids in the flat tubes of a ra- diator显示文摘 | Ravikanth S Debendra K Praveen K | 2010 | International Journal of Heat and Fluid Flow2010,31,4: | 1 |
| 11 | Das Experimental Determination of Thermal Conductivity of Three Nan- ofluids and Development of New Correlations 显示文摘 | -Ravikanth S Vajjha Debendra K | 2009 | In- ternational Journal of Heat and Mass Transfer2009,52,: | 1 |
| 12 | Analytical and numerical studies on microscale heat sinks for electronic applications显示文摘 | DEVDATTA P K DEBENDRA K D | 2005 | Applied Thermal Engineering2005,25,: | 1 |
| 13 | Application of aluminum oxide nanofluids in diesel electric generator as jacket water coolant显示文摘 | DEVDATTA P K RAVIKANTH S V DEBENDRA K D | 2008 | Applied Thermal Engineering2008,28,1415: | 1 |
| 14 | Viscosity of copper oxide nanoparticles dispersed in ethylene glycol and water mixture显示文摘 | Praveen K. Namburu Devdatta P. Kulkarni Debasmita Misra Debendra K. Das | 2007 | Experimental Thermal and Fluid Science2007,,2: | 1 |
| 15 | Patho- genesis of Systemic Sclerosis显示文摘 | Debendra Pattanaik Monica Brown Postlethwaite BC | 2015 | Front Immunol2015,6,: | 1 |
| 16 | Application of aluminum oxide nanofluids in diesel electric generator as jacket water coolant显示文摘 | Devdatta P Kulkarni Ravikanth S Vajjha Debendra K Das | 2008 | Applied Thermal Engineering2008,28,1415: | 1 |
| 17 | Oxygen functionalization-assisted anionic exchange toward unique construction of flower-like transition metal chalcogenide embedded carbon fabric for ultra-long life flexible energy storage and conversion显示文摘The metal-organic framework(MOF)derived Ni–Co–C–N composite alloys(NiCCZ)were“embedded”inside the carbon cloth(CC)strands as opposed to the popular idea of growing them upward to realize ultrastable energy storage and conversion application.The NiCCZ was then oxygen functionalized,facilitating the next step of stoichiometric sulfur anion diffusion during hydrothermal sulfurization,generating a flower-like metal hydroxysulfide structure(NiCCZOS)with strong partial implantation inside CC.Thus obtained NiCCZOS shows an excellent capacity when tested as a supercapacitor electrode in a three-electrode configuration.Moreover,when paired with the biomass-derived nitrogen-rich activated carbon,the asymmetric supercapacitor device shows almost 100%capacity retention even after 45,000 charge–discharge cycles with remarkable energy density(59.4 Wh kg^(-1)/263.8μWh cm^(–2))owing to a uniquely designed cathode.Furthermore,the same electrode performed as an excellent bifunctional water-splitting electrocatalyst with an overpotential of 271 mV for oxygen evolution reaction(OER)and 168.4 mV for hydrogen evolution reaction(HER)at 10 mA cm−2 current density along with 30 h of unhinged chronopotentiometric stability performance for both HER and OER.Hence,a unique metal chalcogenide composite electrode/substrate configuration has been proposed as a highly stable electrode material for flexible energy storage and conversion applications. | Roshan M.Bhattarai Kisan Chhetri Nghia Le Debendra Acharya Shirjana Saud Mai Cao Hoang Phuong Lan Nguyen Sang Jae Kim Young Sun Mok | 2024 | Carbon Energy2024,6,1: | 0 |