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Plant tissue culture and regeneration

TopicLeading institutions, researchers & key papers

This cluster of papers focuses on the elicitor signal transduction pathways, genetic engineering techniques, and biotechnological approaches used to enhance the production of plant secondary metabolites. It covers topics such as Agrobacterium-mediated transformation, somatic embryogenesis, hairy root culture, and the biosynthesis of specific metabolites like terpenoid indole alkaloids.

88
Works

How has Plant tissue culture and regeneration's publication output changed over time?

ScholarIQpublication output · 1996–2021

Output declined67% over the shown period — from 3 works in 1996 to 1 in 2021.

3
1
1
1
1
1
1
1
1
1
1996199820022005200620092013201420182021

What are the most-cited papers on Plant tissue culture and regeneration?

ScholarIQmost cited works
Systemic Acquired Resistance Mediated by the Ectopic Expression of Invertase: Possible Hexose Sensing in the Secretory Pathway.
Karin Herbers, P. Meuwly, Wolf B. Frommer, Jean‐Pierre Métraux, Uwe Sonnewald
S48849333. 1996339 CitationsOPEN ACCESS
Secondary metabolism of hairy root cultures in bioreactors
Yoojeong Kim, Barbara E. Wyslouzil, Pamela J. Weathers
S200668369. 2002291 Citations
An ethanol inducible gene switch for plants used to manipulate carbon metabolism
Mark X. Caddick, Andrew J. Greenland, lan Jepson, Klaus‐Peter Krause, Nan Qu, Kay V. Riddell, Michael G. Salter, Wolfgang Schuch, Uwe Sonnewald, A. Brian Tomsett
S106963461. 1998281 Citations

Where is Plant tissue culture and regeneration research published, and who funds it?

ScholarIQvenues & funding sources

TOP JOURNALS

S32261165673
S127916151497
S48849333339
S200668369291
S106963461281

TOP FUNDERS

National Science Foundation
NIH
Wellcome Trust
European Research Council
Funder breakdown is a member featureSign up free to unlock

How much of the research on Plant tissue culture and regeneration is open access?

ScholarIQopen access share
33%OPEN ACCESS
Gold
13%
Green
0%
Hybrid
7%
Bronze
13%
Closed
67%

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Systemic Acquired Resistance Mediated by the Ectopic Expression of Invertase: Possible Hexose Sensing in the Secretory Pathway.
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