Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties

Bibliographic Details
Main Authors: González-Schain, Nahuel, Dreni, Ludovico, Lawas, Lovely M.F., Galbiati, Massimo, Colombo, Lucia, Heuer, Sigrid, Jagadish, Krishna S.V., Kater, Martin M.
Format: Journal Article
Language:Inglés
Published: Oxford University Press 2016
Subjects:
Online Access:https://hdl.handle.net/10568/165373
_version_ 1855524907098570752
author González-Schain, Nahuel
Dreni, Ludovico
Lawas, Lovely M.F.
Galbiati, Massimo
Colombo, Lucia
Heuer, Sigrid
Jagadish, Krishna S.V.
Kater, Martin M.
author_browse Colombo, Lucia
Dreni, Ludovico
Galbiati, Massimo
González-Schain, Nahuel
Heuer, Sigrid
Jagadish, Krishna S.V.
Kater, Martin M.
Lawas, Lovely M.F.
author_facet González-Schain, Nahuel
Dreni, Ludovico
Lawas, Lovely M.F.
Galbiati, Massimo
Colombo, Lucia
Heuer, Sigrid
Jagadish, Krishna S.V.
Kater, Martin M.
author_sort González-Schain, Nahuel
collection Repository of Agricultural Research Outputs (CGSpace)
format Journal Article
id CGSpace165373
institution CGIAR Consortium
language Inglés
publishDate 2016
publishDateRange 2016
publishDateSort 2016
publisher Oxford University Press
publisherStr Oxford University Press
record_format dspace
spelling CGSpace1653732024-12-19T14:12:36Z Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties González-Schain, Nahuel Dreni, Ludovico Lawas, Lovely M.F. Galbiati, Massimo Colombo, Lucia Heuer, Sigrid Jagadish, Krishna S.V. Kater, Martin M. flowering gene expression genomes germplasm heat shock proteins heat tolerance stress tolerance transcriptomes 2016-01 2024-12-19T12:54:59Z 2024-12-19T12:54:59Z Journal Article https://hdl.handle.net/10568/165373 en Oxford University Press González-Schain, Nahuel; Dreni, Ludovico; Lawas, Lovely M.F.; Galbiati, Massimo; Colombo, Lucia; Heuer, Sigrid; Jagadish, Krishna S.V. and Kater, Martin M. 2016. Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties. Plant Cell Physiol, Volume 57 no. 1 p. 57-68
spellingShingle flowering
gene expression
genomes
germplasm
heat shock proteins
heat tolerance
stress tolerance
transcriptomes
González-Schain, Nahuel
Dreni, Ludovico
Lawas, Lovely M.F.
Galbiati, Massimo
Colombo, Lucia
Heuer, Sigrid
Jagadish, Krishna S.V.
Kater, Martin M.
Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties
title Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties
title_full Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties
title_fullStr Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties
title_full_unstemmed Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties
title_short Genome-wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties
title_sort genome wide transcriptome analysis during anthesis reveals new insights in the molecular basis of heat stress responses in tolerant and sensitive rice varieties
topic flowering
gene expression
genomes
germplasm
heat shock proteins
heat tolerance
stress tolerance
transcriptomes
url https://hdl.handle.net/10568/165373
work_keys_str_mv AT gonzalezschainnahuel genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties
AT dreniludovico genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties
AT lawaslovelymf genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties
AT galbiatimassimo genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties
AT colombolucia genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties
AT heuersigrid genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties
AT jagadishkrishnasv genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties
AT katermartinm genomewidetranscriptomeanalysisduringanthesisrevealsnewinsightsinthemolecularbasisofheatstressresponsesintolerantandsensitivericevarieties