Zobrazeno 1 - 10
of 16
pro vyhledávání: '"A S, Vinekar"'
Autor:
K. Mohamed Shafi, Adwait G. Joshi, Iyer Meenakshi, Shaik Naseer Pasha, K. Harini, Jarjapu Mahita, Radha Sivarajan Sajeevan, Snehal D. Karpe, Pritha Ghosh, Sathyanarayanan Nitish, A. Gandhimathi, Oommen K. Mathew, Subramanian Hari Prasanna, Manoharan Malini, Eshita Mutt, Mahantesha Naika, Nithin Ravooru, Rajas M. Rao, Prashant N. Shingate, Anshul Sukhwal, Margaret S. Sunitha, Atul K. Upadhyay, Rithvik S. Vinekar, Ramanathan Sowdhamini
Publikováno v:
Data in Brief, Vol 30, Iss , Pp 105416- (2020)
In this paper, we present the data acquired during transcriptome analysis of the plant Moringa oleifera [1] from five different tissues (root, stem, leaf, flower and seed) by RNA sequencing. A total of 271 million reads were assembled with an N50 of
Externí odkaz:
https://doaj.org/article/936c5016a61c4cf89bf7091dfd8bd005
Autor:
Adwait G. Joshi, K. Harini, Iyer Meenakshi, K. Mohamed Shafi, Shaik Naseer Pasha, Jarjapu Mahita, Radha Sivarajan Sajeevan, Snehal D. Karpe, Pritha Ghosh, Sathyanarayanan Nitish, A. Gandhimathi, Oommen K. Mathew, Subramanian Hari Prasanna, Manoharan Malini, Eshita Mutt, Mahantesha Naika, Nithin Ravooru, Rajas M. Rao, Prashant N. Shingate, Anshul Sukhwal, Margaret S. Sunitha, Atul K. Upadhyay, Rithvik S. Vinekar, Ramanathan Sowdhamini
Publikováno v:
MethodsX, Vol 7, Iss , Pp 101053- (2020)
This protocol describes a stepwise process to identify proteins of interest from a query proteome derived from NGS data. We implemented this protocol on Moringa oleifera transcriptome to identify proteins involved in secondary metabolite and vitamin
Externí odkaz:
https://doaj.org/article/21c227e8302543dca462675eb86eb9d7
Autor:
Shaik Naseer Pasha, Oommen K. Mathew, Mahantesha B.N. Naika, Margaret S. Sunitha, Anshul Sukhwal, Rajas M. Rao, Radha Sivarajan Sajeevan, Atul Kumar Upadhyay, Adwait G. Joshi, Nithin Ravooru, Manoharan Malini, Jarjapu Mahita, K. Harini, Prashant Shingate, K. Mohamed Shafi, Pritha Ghosh, Sathyanarayanan Nitish, Ramanathan Sowdhamini, Iyer Meenakshi, A. Gandhimathi, Eshita Mutt, Snehal D. Karpe, Subramanian Hari Prasanna, Rithvik S. Vinekar
Publikováno v:
Data in Brief, Vol 30, Iss, Pp 105416-(2020)
In this paper, we present the data acquired during transcriptome analysis of the plant Moringa oleifera [1] from five different tissues (root, stem, leaf, flower and seed) by RNA sequencing. A total of 271 million reads were assembled with an N50 of
Autor:
Ramanathan Sowdhamini, Kavitha Kumaresan, Sergey Shabala, Claire Corratgé-Faillie, Gayatri Venkataraman, Suji Somasundaram, Shalini Pulipati, Lana Shabala, Anne-Aliénor Véry, Kumkum Kumari, Tetsuya Ishikawa, Rithvik S. Vinekar, Ajay Parida
Publikováno v:
Plant and Cell Physiology
Plant and Cell Physiology, Oxford University Press (OUP), 2020, 61 (7), pp.1321-1334. ⟨10.1093/pcp/pcaa061⟩
Plant and Cell Physiology, Oxford University Press (OUP), 2020, 61 (7), pp.1321-1334. ⟨10.1093/pcp/pcaa061⟩
HKT1;5 loci/alleles are important determinants of crop salinity tolerance. HKT1;5s encode plasmalemma-localized Na+ transporters, which move xylem Na+ into xylem parenchyma cells, reducing shoot Na+ accumulation. Allelic variation in rice OsHKT1;5 se
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::eaef16d71fb9ecf3ac6879275cec8722
https://hal.archives-ouvertes.fr/hal-02611154/document
https://hal.archives-ouvertes.fr/hal-02611154/document
Autor:
K Mohamed, Shafi, Adwait G, Joshi, Iyer, Meenakshi, Shaik Naseer, Pasha, K, Harini, Jarjapu, Mahita, Radha Sivarajan, Sajeevan, Snehal D, Karpe, Pritha, Ghosh, Sathyanarayanan, Nitish, A, Gandhimathi, Oommen K, Mathew, Subramanian Hari, Prasanna, Manoharan, Malini, Eshita, Mutt, Mahantesha, Naika, Nithin, Ravooru, Rajas M, Rao, Prashant N, Shingate, Anshul, Sukhwal, Margaret S, Sunitha, Atul K, Upadhyay, Rithvik S, Vinekar, Ramanathan, Sowdhamini
Publikováno v:
Data in Brief
In this paper, we present the data acquired during transcriptome analysis of the plant Moringa oleifera [1] from five different tissues (root, stem, leaf, flower and seed) by RNA sequencing. A total of 271 million reads were assembled with an N50 of
Autor:
Rithvik S. Vinekar, K. Harini, Atul Kumar Upadhyay, Jarjapu Mahita, Eshita Mutt, Nithin Ravooru, Mahantesha B.N. Naika, Oommen K. Mathew, Margaret S. Sunitha, K. Mohamed Shafi, Iyer Meenakshi, Sathyanarayanan Nitish, Radha Sivarajan Sajeevan, A. Gandhimathi, Shaik Naseer Pasha, Subramanian Hari Prasanna, Rajas M. Rao, Ramanathan Sowdhamini, Anshul Sukhwal, Manoharan Malini, Snehal D. Karpe, Adwait G. Joshi, Prashant Shingate, Pritha Ghosh
Publikováno v:
Genomics. 112(1)
Moringa oleifera is a plant well-known for its nutrition value, drought resistance and medicinal properties. cDNA libraries from five different tissues (leaf, root, stem, seed and flower) of M. oleifera cultivar Bhagya were generated and sequenced. W
Publikováno v:
Current Neuropharmacology
Background: The eukaryotic voltage-gated sodium channel(e-Nav) is a large asymmetric transmembrane protein with important functions concerning neurological function. No structure has been resolved at high resolution for this protein. Methods: A homol
Autor:
JD Betty Pfefferbaum Md, James R. Allen, Haekyung Jeon-Slaughter, Phebe Tucker, Yan Feng, Donna Hammond, Suzanne W. Whittlesey, Shreekumar S. Vinekar
Publikováno v:
Death Studies. 37:395-412
Trauma is thought to interfere with normal grief by superimposing symptoms of posttraumatic stress disorder. This exploratory pilot study examined the association between traumatic grief and objectively measured physiological reactivity to a trauma i
Publikováno v:
Kathmandu University Medical Journal. 11:91-93
Incontinentia pigmenti is an X- linked dominant condition characterized by cutaneous lesions associated with developmental defects of the eye, skeletal system and central nervous system. We report a case of incontinentia pigmenti in a 30 day old fema
Autor:
Rithvik S. Vinekar, Indira Ghosh
Publikováno v:
Journal of Biomolecular Structure and Dynamics. 26:741-754
Isocitrate Dehydrogenase (ICD) catalyzes the oxidative decarboxylation reaction of 2R,3S-isocitrate to yield 2-oxoglutarate in the Tricarboxylic Acid (TCA) cycle. Two isoforms of NADP-specific ICDs with the E.C number 1.1.1.42 have been annotated in