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The Plant Journal : for Cell and Molecular Biology
|
August 12, 2018
Diverse paths to hybrid incompatibility in Arabidopsis
Neha Vaid, Roosa A E Laitinen
Molecular Plant
|
February 23, 2013
Knights in action: lectin receptor-like kinases in plant development and stress responses
Neha Vaid, Anca Macovei, Narendra Tuteja
BMC Research Notes
|
January 24, 2014
In-silico analysis and expression profiling implicate diverse role of EPSPS family genes in regulating developmental and metabolic processes
Bharti Garg, Neha Vaid, Narendra Tuteja
Plant Molecular Biology
|
September 1, 2012
Genome-wide analysis of lectin receptor-like kinase family from Arabidopsis and rice
Neha Vaid, Prashant Kumar Pandey, Narendra Tuteja
Plant Signaling & Behavior
|
August 18, 2012
A new DEAD-box helicase ATP-binding protein (OsABP) from rice is responsive to abiotic stress
Anca Macovei, Neha Vaid, Suresh Tula, et al.
Plant Signaling & Behavior
|
October 10, 2009
Isolation of high salinity stress tolerant genes from Pisum sativum by random overexpression in Escherichia coli and their functional validation
Amita Joshi, Hung Quang Dang, Neha Vaid, et al.
Plant Signaling & Behavior
|
August 18, 2011
Overexpression of a pea DNA helicase 45 in bacteria confers salinity stress tolerance
Marjan M Tajrishi, Neha Vaid, Renu Tuteja, et al.
Plant Molecular Biology
|
April 13, 2015
Pea lectin receptor-like kinase functions in salinity adaptation without yield penalty, by alleviating osmotic and ionic stresses and upregulating stress-responsive genes
Neha Vaid, Prashant Pandey, Vineet Kumar Srivastava, et al.
Plant Signaling & Behavior
|
October 18, 2012
Genome wide analysis of Cyclophilin gene family from rice and Arabidopsis and its comparison with yeast
Dipesh Kumar Trivedi, Sandep Yadav, Neha Vaid, et al.
Glycoconjugate Journal
|
November 10, 2009
Pea lectin receptor-like kinase promotes high salinity stress tolerance in bacteria and expresses in response to stress in planta
Amita Joshi, Hung Quang Dang, Neha Vaid, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 23) with videos related to
Sort By:
Page
of 3
The Plant Journal : for Cell and Molecular Biology
|
August 12, 2018
Diverse paths to hybrid incompatibility in Arabidopsis
Neha Vaid, Roosa A E Laitinen
Molecular Plant
|
February 23, 2013
Knights in action: lectin receptor-like kinases in plant development and stress responses
Neha Vaid, Anca Macovei, Narendra Tuteja
BMC Research Notes
|
January 24, 2014
In-silico analysis and expression profiling implicate diverse role of EPSPS family genes in regulating developmental and metabolic processes
Bharti Garg, Neha Vaid, Narendra Tuteja
Plant Molecular Biology
|
September 1, 2012
Genome-wide analysis of lectin receptor-like kinase family from Arabidopsis and rice
Neha Vaid, Prashant Kumar Pandey, Narendra Tuteja
Plant Signaling & Behavior
|
August 18, 2012
A new DEAD-box helicase ATP-binding protein (OsABP) from rice is responsive to abiotic stress
Anca Macovei, Neha Vaid, Suresh Tula, et al.
Plant Signaling & Behavior
|
October 10, 2009
Isolation of high salinity stress tolerant genes from Pisum sativum by random overexpression in Escherichia coli and their functional validation
Amita Joshi, Hung Quang Dang, Neha Vaid, et al.
Plant Signaling & Behavior
|
August 18, 2011
Overexpression of a pea DNA helicase 45 in bacteria confers salinity stress tolerance
Marjan M Tajrishi, Neha Vaid, Renu Tuteja, et al.
Plant Molecular Biology
|
April 13, 2015
Pea lectin receptor-like kinase functions in salinity adaptation without yield penalty, by alleviating osmotic and ionic stresses and upregulating stress-responsive genes
Neha Vaid, Prashant Pandey, Vineet Kumar Srivastava, et al.
Plant Signaling & Behavior
|
October 18, 2012
Genome wide analysis of Cyclophilin gene family from rice and Arabidopsis and its comparison with yeast
Dipesh Kumar Trivedi, Sandep Yadav, Neha Vaid, et al.
Glycoconjugate Journal
|
November 10, 2009
Pea lectin receptor-like kinase promotes high salinity stress tolerance in bacteria and expresses in response to stress in planta
Amita Joshi, Hung Quang Dang, Neha Vaid, et al.
Page
of 3