MANOJKUMAR ARTHIKALA



DATOS GENERALES NOMBRAMIENTOS
Nombre completo   MANOJKUMAR ARTHIKALA
Máximo nivel de estudios   POSDOCTORADO
Antigüedad académica en la UNAM   9 años

Vigente   PROFESOR DE CARRERA TITULAR A TC Definitivo
Escuela Nacional de Estudios Superiores, Unidad León, Guanajuato
Desde 16-10-2021
ESTIMULOS, PROGRAMAS, PREMIOS Y RECONOCIMIENTOS
* SNI I2020 - 2023
* SNI I2016 - 2018
* SNI C2015
* PRIDE B2019 - 2022
* EQUIVALENCIA PRIDE B2014 - 2019

INFORMACIÓN DE PUBLICACIONES
Firmas  
Arthikala M.-K. Arthikala, Manoj-Kumar Arthikala, MK Kumar A.M. Manoj Kumar A. Manoj-Kumar A.
ID's SCOPUS  
55392063100
ORCID's  
0000-0002-4535-6524
Áreas de conocimiento  
Biochemistry and molecular biology Biotechnology and applied microbiology Ecology Genetics and heredity Horticulture
Microbiology Multidisciplinary sciences Physics, multidisciplinary Plant sciences Public, environmental and occupational health
Agricultural and biological sciences (miscellaneous) Agronomy and Crop Science Applied Microbiology and Biotechnology Biotechnology Clinical biochemistry
Chemical engineering (miscellaneous) Ecology, evolution, behavior and systematics Environmental science (miscellaneous) Genetics Horticulture
Medicine (miscellaneous) Molecular Biology Multidisciplinary Physics and astronomy (miscellaneous) Plant Science
Spectroscopy
Coautorías con entidades de la UNAM  
  • Instituto de Biología
  • Instituto de Fisiología Celular
  • Instituto de Biotecnología
  • Facultad de Ciencias
  • Escuela Nacional de Estudios Superiores, Unidad León, Guanajuato
Revistas en las que ha publicado  (31):
  1. APPLICATIONS IN PLANT SCIENCES, Estados Unidos America (2022)
  2. Archives of Phytopathology and Plant Protection, Reino Unido (2009)
  3. BMC BIOTECHNOLOGY, Reino Unido (2016)
  4. Communitative and Integrative Biology, Estados Unidos America (2018)
  5. ECOLOGY LETTERS, Estados Unidos America (2024)
  6. ENVIRONMENTAL AND EXPERIMENTAL BOTANY, Reino Unido (2018)
  7. ENVIRONMENTAL RESEARCH, Estados Unidos America (2024)
  8. EUROPEAN JOURNAL OF PLANT PATHOLOGY, Países Bajos (2010)
  9. Frontiers in Plant Science, Suiza (2017)
  10. FUNCTIONAL & INTEGRATIVE GENOMICS, Alemania (2024)
  11. GENES, Suiza (2018, 2019, 2022)
  12. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, Suiza (2023)
  13. International Journal Of Pharmaceutical Sciences And Nanotechnology, (2021)
  14. JOURNAL OF INTEGRATIVE PLANT BIOLOGY, Estados Unidos America (2014)
  15. JOURNAL OF PLANT BIOLOGY, Alemania (2023)
  16. JOURNAL OF PLANT INTERACTIONS, Reino Unido (2005)
  17. JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, Estados Unidos America (2017)
  18. MOLECULAR BIOTECHNOLOGY, Estados Unidos America (2014)
  19. Molekulyarnaya Biologiya, (2012)
  20. NEW PHYTOLOGIST, Estados Unidos America (2014)
  21. Plant Cell, Estados Unidos America (2016)
  22. PLANT CELL REPORTS, Estados Unidos America (2016)
  23. PLANT MOLECULAR BIOLOGY REPORTER, Estados Unidos America (2012)
  24. Plant Pathology Journal, Pakistán (2006)
  25. PLANT PHYSIOLOGY, Estados Unidos America (2016)
  26. PLANTS-BASEL, Suiza (2021)
  27. PLOS ONE, Estados Unidos America (2017, 2019)
  28. Results in Physics, Países Bajos (2018)
  29. SCIENTIA HORTICULTURAE, Países Bajos (2009, 2011, 2014)
  30. SCIENTIFIC REPORTS, Reino Unido (2021)
  31. Symbiosis, Países Bajos (2018)


Documentos indexados (WoS y Scopus)

# Título del documento Autores Año Rista Fuente Citas WoS Citas Scopus
1Chitosan nanoplatforms in agriculture for multi-potential applications - Adsorption/removal, sustained release, sensing of pollutants & delivering their alternatives ? A comprehensive reviewCoautor y autor de correspondencia: Arthikala M.-K., Kandasamy G., Manisekaran R.2024ENVIRONMENTAL RESEARCHWoS-id: 001104587800001
Scopus-id: 2-s2.0-85175420579
01
2Genome-wide identification and comparative analysis of the Amino Acid Transporter (AAT) gene family and their roles during Phaseolus vulgaris symbiosesCoautor: Arthikala M.-K., Nanjareddy K., Guerrero-Carrillo M.F., Lara M.2024FUNCTIONAL & INTEGRATIVE GENOMICSWoS-id: 001175732600001
Scopus-id: 2-s2.0-85186549311
00
3The abundant fraction of soil microbiomes regulates the rhizosphere function in crop wild progenitorsCoautor: Arthikala M.-K., de Celis M., Fernández-Alonso M.J., Belda I., et al.2024ECOLOGY LETTERSWoS-id: 001251294100001
Scopus-id: 2-s2.0-85196532332
00
4Identification of CBL and CIPK Gene Families and Functional Characterization of PvCIPK7 as an Essential Regulator of Root Nodule Development and Nitrogen Fixation in Phaseolus vulgaris1ᵉʳ autor: Arthikala M.-K., Blanco L., Alvarado-Affantranger X., Márquez-Guzmán J., et al.2023JOURNAL OF PLANT BIOLOGYWoS-id: 001017551100001
Scopus-id: 2-s2.0-85163394771
11
5CRK12: A Key Player in Regulating the Phaseolus vulgaris-Rhizobium tropici Symbiotic InteractionCoautor: Arthikala M.-K., Lecona, Antonino M., Nanjareddy, Kalpana, Blanco, Lourdes, et al.2023INTERNATIONAL JOURNAL OF MOLECULAR SCIENCESWoS-id: 001038552900001
Scopus-id: 2-s2.0-85166260903
01
6A protocol for the generation of Arachis hypogaea composite plants: A valuable tool for the functional study of mycorrhizal symbiosisCoautor y autor de correspondencia: Arthikala, Manoj-Kumar, Nanjareddy, Kalpana, Zepeda-Jazo, Isaac2022APPLICATIONS IN PLANT SCIENCESWoS-id: 000752376500001
Scopus-id: 2-s2.0-85124533453
11
7Comprehensive Analysis of Phaseolus vulgaris SnRK Gene Family and Their Expression during Rhizobial and Mycorrhizal Symbiosis2ᵒ autor: Arthikala, Manoj-Kumar, Cervera-Torres, Carolina, Lara, Miguel, Blanco, Lourdes, et al.2022GENESWoS-id: 000895014200001
20
8Target of rapamycin, PvTOR, is a key regulator of arbuscule development during mycorrhizal symbiosis in Phaseolus1ᵉʳ autor: Arthikala M.-K., Nanjareddy, Kalpana, Blanco, Lourdes, Alvarado-Affantranger, Xochitl, et al.2021SCIENTIFIC REPORTSWoS-id: 000659202000007
Scopus-id: 2-s2.0-85107321421
35
9Exploration of autophagy families in legumes and dissection of the atg18 family with a special focus on phaseolus vulgarisCoautor: Arthikala M.-K., Rodríguez E.-H.Q., Gómez-Velasco H., Lara M., et al.2021PLANTS-BASELWoS-id: 000738542100001
Scopus-id: 2-s2.0-85120082079
22
10Endophytic fungi penicillium species BCt phytochemicals inhibit replication of enzymes of human immunodeficiency virus 1 in in vitro and in silico studiesCoautor: Arthikala M.-K., Channabasava, Pawar R., Srinivasa C., et al.2021International Journal Of Pharmaceutical Sciences And NanotechnologyScopus-id: 2-s2.0-85116536453
00
11Cysteine-Rich Receptor-Like Kinase Gene Family Identification in the Phaseolus Genome and Comparative Analysis of Their Expression Profiles Specific to Mycorrhizal and Rhizobial SymbiosisCoautor: Arthikala M.-K., Quezada E.-H., Garcia, Gabriel-Xicotencatl, Melappa, Govindappa, et al.2019GENESWoS-id: 000459743800058
Scopus-id: 2-s2.0-85060851487
2328
12Differential tetraspanin genes expression and subcellular localization during mutualistic interactions in Phaseolus vulgarisCoautor: Arthikala M.-K., Jimenez-Jimenez, Saul, Santana, Olivia, Lara-Rojas, Fernando, et al.2019PLOS ONEWoS-id: 000485036900009
Scopus-id: 2-s2.0-85071083686
1113
13Plant-symbiont interactions: the functional role of expansins2ᵒ autor: Arthikala, Manoj-Kumar, Kumar Mohanty, Sudipta, Nanjareddy, Kalpana, Lara, Miguel2018SymbiosisWoS-id: 000418620200001
Scopus-id: 2-s2.0-85027121867
1417
14In BPS1 Downregulated Roots, the BYPASS1 Signal Disrupts the Induction of Cortical Cell Divisions in Bean-Rhizobium Symbiosis1ᵉʳ autor: Arthikala M.-K., Nanjareddy K., Lara M.2018GENESWoS-id: 000424116500011
Scopus-id: 2-s2.0-85041732302
78
15Characterization, antibacterial, antioxidant, antidiabetic, anti-inflammatory and antityrosinase activity of green synthesized silver nanoparticles using Calophyllum tomentosum leaves extractCoautor: Arthikala M.-K., Govindappa M., Hemashekhar B., Ravishankar Rai V., et al.2018Results in PhysicsWoS-id: 000435611100053
Scopus-id: 2-s2.0-85043498461
116171
16Down-regulation of a Phaseolus vulgaris annexin impairs rhizobial infection and nodulationCoautor: Arthikala M.-K., Carrasco-Castilla J., Ortega-Ortega Y., Jáuregui-Zúñiga D., et al.2018ENVIRONMENTAL AND EXPERIMENTAL BOTANYWoS-id: 000439403200012
Scopus-id: 2-s2.0-85047611956
1014
17RbohA coordinates lateral root emergence in common bean1ᵉʳ autor: Arthikala M.-K., Quinto C.2018Communitative and Integrative BiologyScopus-id: 2-s2.0-85046808337
09
18Differentially expressed genes in mycorrhized and nodulated roots of common bean are associated with defense, cell wall architecture, N metabolism, and P metabolism2ᵒ autor: Arthikala, Manoj-Kumar, Nanjareddy K., Gomez, Brenda-Mariana, Blanco L., et al.2017PLOS ONEWoS-id: 000406853600090
Scopus-id: 2-s2.0-85026762998
2527
19Respiratory burst oxidase homolog gene a is crucial for rhizobium infection and nodule maturation and function in common bean1ᵉʳ autor: Arthikala, Manoj-Kumar, Montiel, Jesus, Sanchez-Lopez, Rosana, Nava, Noreide, et al.2017Frontiers in Plant ScienceWoS-id: 000415974800001
Scopus-id: 2-s2.0-85035799127
4649
20Plant Promoter Analysis: Identification and Characterization of Root Nodule Specific Promoter in the Common Bean2ᵒ autor: Arthikala M.-K., Nanjareddy K., Aguirre A.-L., Gómez B.-M., et al.2017JOVE-JOURNAL OF VISUALIZED EXPERIMENTSWoS-id: 000423240800025
Scopus-id: 2-s2.0-85040554057
711
21Co-overexpression of Brassica juncea NPR1 (BjNPR1) and Trigonella foenum-graecum defensin (Tfgd) in transgenic peanut provides comprehensive but varied protection against Aspergillus flavus and Cercospora arachidicolaCoautor: Arthikala, Manoj-Kumar, Sundaresha, S., Rohini, Sreevathsa, Appanna, V. K., et al.2016PLANT CELL REPORTSWoS-id: 000374377300017
Scopus-id: 2-s2.0-84960116704
1521
22Protoplast isolation, transient transformation of leaf mesophyll protoplasts and improved Agrobacterium-mediated leaf disc infiltration of Phaseolus vulgaris: tools for rapid gene expression analysis2ᵒ autor: Arthikala, Manoj-Kumar, Nanjareddy, Kalpana, Blanco, Lourdes, Arellano, Elizabeth S., et al.2016BMC BIOTECHNOLOGYWoS-id: 000378591200002
Scopus-id: 2-s2.0-84975780135
4759
23An Autophagy-Related Kinase Is Essential for the Symbiotic Relationship between Phaseolus vulgaris and Both Rhizobia and Arbuscular Mycorrhizal FungiCoautor: Arthikala, Manoj-Kumar, Estrada-Navarrete, Georgina, Cruz-Mireles, Neftaly, Lascano, Ramiro, et al.2016Plant CellWoS-id: 000388331000027
Scopus-id: 2-s2.0-84991394160
2733
24A Legume TOR Protein Kinase Regulates Rhizobium Symbiosis and Is Essential for Infection and Nodule DevelopmentCoautor: Arthikala, Manoj-Kumar, Nanjareddy, Kalpana, Blanco, Lourdes, Alvarado-Affantranger, Xochitl, et al.2016PLANT PHYSIOLOGYWoS-id: 000391172300047
Scopus-id: 2-s2.0-84994552709
2125
25Overexpression of a pea DNA helicase (PDH45) in peanut (Arachis hypogaea L.) confers improvement of cellular level tolerance and productivity under drought stressCoautor: Kumar A.M., Manjulatha M., Sreevathsa R., Sudhakar C., et al.2014MOLECULAR BIOTECHNOLOGYWoS-id: 000330999800003
Scopus-id: 2-s2.0-84899123409
2733
26Nitrate regulates rhizobial and mycorrhizal symbiosis in common bean (Phaseolus vulgaris L.)Coautor: Arthikala, MK, Nanjareddy, K, Blanco, L, Affantrange, XA, et al.2014JOURNAL OF INTEGRATIVE PLANT BIOLOGYWoS-id: 000332522600008
Scopus-id: 2-s2.0-84895879199
2528
27RbohB, a Phaseolus vulgaris NADPH oxidase gene, enhances symbiosome number, bacteroid size, and nitrogen fixation in nodules and impairs mycorrhizal colonization1ᵉʳ autor: Arthikala, MK, Sanchez-Lopez, R, Nava, N, Santana, O, et al.2014NEW PHYTOLOGISTWoS-id: 000333981500019
Scopus-id: 2-s2.0-84898023259
7282
28Utility of a tissue culture-independent Agrobacterium-mediated in planta transformation strategy in bell pepper to develop fungal disease resistant plants1ᵉʳ autor: Arthikala, MK, Nanjareddy K., Lara M., Sreevathsa R.2014SCIENTIA HORTICULTURAEWoS-id: 000336465000009
Scopus-id: 2-s2.0-84897824563
611
29Agrobacterium-Mediated In Planta Transformation of Field Bean (Lablab purpureus L.) and Recovery of Stable Transgenic Plants Expressing the cry1AcF GeneCoautor: Kumar A.M., Keshamma E., Sreevathsa R., Reddy K.N., et al.2012PLANT MOLECULAR BIOLOGY REPORTERWoS-id: 000299305900008
Scopus-id: 2-s2.0-84856227830
1621
30Polysaccharide-free nucleic acids and proteins of Abelmoschus esculentus for versatile molecular studies.1ᵉʳ autor: Manoj-Kumar A., Reddy K.N., Manjulatha M., Blanco L.2012Molekulyarnaya BiologiyaScopus-id: 2-s2.0-84873711507
01
31A rapid, novel and high-throughput identification of putative bell pepper transformants generated through in planta transformation approach1ᵉʳ autor: Manoj Kumar A., Reddy K.N., Manjulatha M., Arellano E.S., et al.2011SCIENTIA HORTICULTURAEWoS-id: 000294236900057
Scopus-id: 2-s2.0-79960437295
1011
32Enhanced protection against two major fungal pathogens of groundnut, Cercospora arachidicola and Aspergillus flavus in transgenic groundnut over-expressing a tobacco ß 1-3 glucanase2ᵒ autor: Kumar A.M., Sundaresha S., Rohini S., Math S.A., et al.2010EUROPEAN JOURNAL OF PLANT PATHOLOGYWoS-id: 000275145900008
Scopus-id: 2-s2.0-77950023122
5259
33Towards crop improvement in bell pepper (Capsicum annuum L.): Transgenics (uid A::hpt II) by a tissue-culture-independent Agrobacterium-mediated in planta approach1ᵉʳ autor: Kumar A.M., Reddy K.N., Sreevathsa R., Ganeshan G., et al.2009SCIENTIA HORTICULTURAEWoS-id: 000263494900003
Scopus-id: 2-s2.0-58249112309
1630
34RAPD analysis of local bell pepper genotypes in relation with powdery mildew incidence and fruit yield: Managing disease by single chemical molecule1ᵉʳ autor: Kumar A.M., Reddy K.N., Simon L., Ramachandra Y.L.2009Archives of Phytopathology and Plant ProtectionScopus-id: 2-s2.0-70350070128
02
35Evaluation of maize genotypes against downy mildew (Peronosclerospora sorghi (Weston and Uppal) and characterization of soluble seed proteins by SDS-PAGECoautor: Kumar A.M., Kalpana, Reddy N., Rajanna M.D., et al.2009Archives of Phytopathology and Plant ProtectionScopus-id: 2-s2.0-70449331471
01
36Compatibility of fungal antagonists filtrates against germination of powdery mildew spores, Leveillula taurica (Lev.) Arn. of bell pepper1ᵉʳ autor: Manoj Kumar A., Reddy K.N., Sundaresha S., Ramachandra Y.L.2006Plant Pathology JournalScopus-id: 2-s2.0-34848868738
02
37Pseudomonas fluorescens, a potential bacterial antagonist to control plant diseases2ᵒ autor y autor de correspondencia: Kumar A.M., Ganeshan G.2005JOURNAL OF PLANT INTERACTIONSWoS-id: 000207808400001
Scopus-id: 2-s2.0-33750864960
76123

Proyectos

# Nombre Participantes Convocatoria Fecha Inicio Fecha Fin
1Participación de la familia génica cysteine-rich receptor-like kinase (CRKs) de Phaseolus vulgaris en el proceso de micorrizaciónMANOJKUMAR ARTHIKALA,
Recursos PAPIIT01-01-201731-12-2018
2Análisis funcional del gen AGAMOUS-LIKE 8 durante la simbiosis micorrízica en Phaseolus vulgaris.MANOJKUMAR ARTHIKALA,
KALPANA NANJAREDDY,
Recursos PAPIIT01-01-201931-12-2020
3Enseñanza práctica de inducción y crecimiento de los raíces peludas en las plantas para la producción de los metabolitos secundarios.MANOJKUMAR ARTHIKALA,
Recursos PAPIME01-01-202031-12-2020
4Comprender la transducción de señal temprana y el análisis funcional comparativo de la vía simbiótica micorrízica arbuscular en LEGUMBRES y ARROZMANOJKUMAR ARTHIKALA,
Recursos PAPIIT01-01-202131-12-2023

Docencia Impartida

# Entidad Nivel Asignatura Año Semestre Alumnos
1Facultad de CienciasMaestríaFUNDAMENTOS DE LAS TÉCNICAS DE BIOLOGÍA MOLECULAR20232023-21
2Facultad de CienciasMaestríaFUNDAMENTOS DE LAS TÉCNICAS DE BIOLOGÍA MOLECULAR20222023-11
3Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20222023-08
4Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20222023-07
5Facultad de CienciasMaestríaFUNDAMENTOS DE LAS TÉCNICAS DE BIOLOGÍA MOLECULAR20222022-22
6Facultad de CienciasMaestríaFUNDAMENTOS DE LAS TÉCNICAS DE BIOLOGÍA MOLECULAR20212022-11
7Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20212022-010
8Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20212022-014
9Facultad de CienciasMaestríaFUNDAMENTOS DE LAS TÉCNICAS DE BIOLOGÍA MOLECULAR20202021-12
10Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaBIOINFORMATICA II20202021-010
11Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20202021-013
12Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20202021-010
13Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMATEMATICAS IV20202021-010
14Facultad de CienciasMaestríaFUNDAMENTOS DE LAS TÉCNICAS DE BIOLOGÍA MOLECULAR20202020-22
15Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20192020-023
16Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20192020-021
17Facultad de CienciasMaestríaTRABAJO DE INVESTIGACIÓN IV20192020-11
18Facultad de CienciasMaestríaFUNDAMENTOS DE LAS TÉCNICAS DE BIOLOGÍA MOLECULAR20192020-11
19Facultad de CienciasMaestríaTRABAJO DE INVESTIGACIÓN I20192019-21
20Facultad de CienciasMaestríaTRABAJO DE INVESTIGACIÓN II20192019-21
21Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20182019-010
22Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20182019-08
23Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20172018-010
24Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20172018-010
25Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20162017-010
26Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20162017-09
27Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaMETABOLISMO SECUNDARIO20152016-08
28Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20152016-08
29Escuela Nacional de Estudios Superiores, Unidad León, GuanajuatoLicenciaturaGENOMICA FUNCIONAL20142015-07

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