Identification of the AKR gene family in sweet cherry and its response to different abiotic stresses
To explore the role of aldehyde-keto reductase ( AKR ) gene family in sweet cherry ( Prunus avium L.) responses to abiotic stresses, we identified 38 PaAKR genes via bioinformatics and analyzed their expression under PEG6000 (drought), NaCl (salinity), and ABA (hormone) treatments. Evolutionary anal...
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| Vydáno v: | Scientific reports Ročník 15; číslo 1; s. 29251 - 14 |
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| Hlavní autoři: | , , , |
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| Jazyk: | angličtina |
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10.08.2025
Nature Publishing Group Nature Portfolio |
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| ISSN: | 2045-2322, 2045-2322 |
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| Abstract | To explore the role of aldehyde-keto reductase (
AKR
) gene family in sweet cherry (
Prunus avium
L.) responses to abiotic stresses, we identified 38 PaAKR genes via bioinformatics and analyzed their expression under PEG6000 (drought), NaCl (salinity), and ABA (hormone) treatments. Evolutionary analysis classified these genes into 5 subfamilies, with
cis
-acting elements indicating involvement in stress and hormone signaling. Real-time PCR showed that 8 genes (
PaAKR3
,
PaAKR6
,
PaAKR10
,
PaAKR1
2,
PaAKR17
,
PaAKR24
,
PaAKR28
,
PaAKR34
) were strongly responsive to all three treatments. These findings highlight the potential of
PaAKR
s in mediating abiotic stress adaptation in sweet cherry and provide key candidate genes for enhancing stress resistance through functional studies. |
|---|---|
| AbstractList | Abstract To explore the role of aldehyde-keto reductase (AKR) gene family in sweet cherry (Prunus avium L.) responses to abiotic stresses, we identified 38 PaAKR genes via bioinformatics and analyzed their expression under PEG6000 (drought), NaCl (salinity), and ABA (hormone) treatments. Evolutionary analysis classified these genes into 5 subfamilies, with cis-acting elements indicating involvement in stress and hormone signaling. Real-time PCR showed that 8 genes (PaAKR3, PaAKR6, PaAKR10, PaAKR12, PaAKR17, PaAKR24, PaAKR28, PaAKR34) were strongly responsive to all three treatments. These findings highlight the potential of PaAKRs in mediating abiotic stress adaptation in sweet cherry and provide key candidate genes for enhancing stress resistance through functional studies. To explore the role of aldehyde-keto reductase ( AKR ) gene family in sweet cherry ( Prunus avium L.) responses to abiotic stresses, we identified 38 PaAKR genes via bioinformatics and analyzed their expression under PEG6000 (drought), NaCl (salinity), and ABA (hormone) treatments. Evolutionary analysis classified these genes into 5 subfamilies, with cis -acting elements indicating involvement in stress and hormone signaling. Real-time PCR showed that 8 genes ( PaAKR3 , PaAKR6 , PaAKR10 , PaAKR1 2, PaAKR17 , PaAKR24 , PaAKR28 , PaAKR34 ) were strongly responsive to all three treatments. These findings highlight the potential of PaAKR s in mediating abiotic stress adaptation in sweet cherry and provide key candidate genes for enhancing stress resistance through functional studies. To explore the role of aldehyde-keto reductase (AKR) gene family in sweet cherry (Prunus avium L.) responses to abiotic stresses, we identified 38 PaAKR genes via bioinformatics and analyzed their expression under PEG6000 (drought), NaCl (salinity), and ABA (hormone) treatments. Evolutionary analysis classified these genes into 5 subfamilies, with cis-acting elements indicating involvement in stress and hormone signaling. Real-time PCR showed that 8 genes (PaAKR3, PaAKR6, PaAKR10, PaAKR12, PaAKR17, PaAKR24, PaAKR28, PaAKR34) were strongly responsive to all three treatments. These findings highlight the potential of PaAKRs in mediating abiotic stress adaptation in sweet cherry and provide key candidate genes for enhancing stress resistance through functional studies. To explore the role of aldehyde-keto reductase (AKR) gene family in sweet cherry (Prunus avium L.) responses to abiotic stresses, we identified 38 PaAKR genes via bioinformatics and analyzed their expression under PEG6000 (drought), NaCl (salinity), and ABA (hormone) treatments. Evolutionary analysis classified these genes into 5 subfamilies, with cis-acting elements indicating involvement in stress and hormone signaling. Real-time PCR showed that 8 genes (PaAKR3, PaAKR6, PaAKR10, PaAKR12, PaAKR17, PaAKR24, PaAKR28, PaAKR34) were strongly responsive to all three treatments. These findings highlight the potential of PaAKRs in mediating abiotic stress adaptation in sweet cherry and provide key candidate genes for enhancing stress resistance through functional studies.To explore the role of aldehyde-keto reductase (AKR) gene family in sweet cherry (Prunus avium L.) responses to abiotic stresses, we identified 38 PaAKR genes via bioinformatics and analyzed their expression under PEG6000 (drought), NaCl (salinity), and ABA (hormone) treatments. Evolutionary analysis classified these genes into 5 subfamilies, with cis-acting elements indicating involvement in stress and hormone signaling. Real-time PCR showed that 8 genes (PaAKR3, PaAKR6, PaAKR10, PaAKR12, PaAKR17, PaAKR24, PaAKR28, PaAKR34) were strongly responsive to all three treatments. These findings highlight the potential of PaAKRs in mediating abiotic stress adaptation in sweet cherry and provide key candidate genes for enhancing stress resistance through functional studies. |
| ArticleNumber | 29251 |
| Author | Deng, Fei Guo, Zhigang Zou, Yali An, Xiaojuan |
| Author_xml | – sequence: 1 givenname: Zhigang surname: Guo fullname: Guo, Zhigang organization: Gansu Province Cherry Technology Innovation Center, Tianshui Normal University – sequence: 2 givenname: Xiaojuan surname: An fullname: An, Xiaojuan email: anxj0301@163.com organization: Gansu Province Cherry Technology Innovation Center, Tianshui Normal University – sequence: 3 givenname: Yali surname: Zou fullname: Zou, Yali organization: Gansu Province Cherry Technology Innovation Center, Tianshui Normal University – sequence: 4 givenname: Fei surname: Deng fullname: Deng, Fei organization: Gansu Province Cherry Technology Innovation Center, Tianshui Normal University |
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| Cites_doi | 10.3390/ijms21030754 10.1007/s00299-023-03035-4 10.1093/molbev/msw054 10.1101/gr.3531105 10.1186/s12859-021-04230-4 10.1016/j.plaphy.2008.10.009 10.1016/j.sajb.2011.08.005 10.1007/s10725-014-9988-7 10.1016/j.scienta.2025.114027 10.7717/peerj.13691 10.1111/j.1365-313X.2000.00885.x 10.1016/j.jmb.2009.07.023 10.1111/jipb.13793 10.1093/nar/30.1.325 10.17660/ActaHortic.1996.410.55 10.1186/s40538-023-00527-z 10.1093/nar/gkad359 10.1093/nar/gkp335 10.1007/s12298-022-01252-x 10.1016/j.plaphy.2022.01.005 10.17660/ActaHortic.2019.1235.17 10.3390/ijms25084473 10.3390/ijms24021272 |
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| Keywords | Cherry AKR family gene Abiotic stress Real-time fluorescence quantification |
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| Snippet | To explore the role of aldehyde-keto reductase (
AKR
) gene family in sweet cherry (
Prunus avium
L.) responses to abiotic stresses, we identified 38 PaAKR... To explore the role of aldehyde-keto reductase (AKR) gene family in sweet cherry (Prunus avium L.) responses to abiotic stresses, we identified 38 PaAKR genes... Abstract To explore the role of aldehyde-keto reductase (AKR) gene family in sweet cherry (Prunus avium L.) responses to abiotic stresses, we identified 38... |
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| SubjectTerms | 631/114 631/449 Abiotic stress Abscisic acid Abscisic Acid - pharmacology AKR family gene Aldehyde Reductase - genetics Aldehydes Aldo-Keto Reductases - genetics Aldo-Keto Reductases - metabolism Bioinformatics Cherry Drought Droughts Gene Expression Regulation, Plant - drug effects Genes Genomes Humanities and Social Sciences Localization Metabolism Metabolites multidisciplinary Multigene Family Phylogenetics Phylogeny Physicochemical properties Physiology Plant Proteins - genetics Plant Proteins - metabolism Proteins Prunus avium Prunus avium - enzymology Prunus avium - genetics Real-time fluorescence quantification Salinity Science Science (multidisciplinary) Signal transduction Sodium chloride Stress, Physiological - genetics |
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| Title | Identification of the AKR gene family in sweet cherry and its response to different abiotic stresses |
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