Identification and expression analyses of two lotus (Nelumbo nucifera) dehydrin genes in response to adverse temperatures, ABA and IAA treatments

Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK2-type DHN (NnDHNl) and SK 3 -type DHN (NnDHN2) were investigated. The putative NnDHN1 and NnDNH2 shared conserved S-segment as well as K-segment, with distinct isoelectric points, kinase selectivitie...

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Published inBiológia Vol. 72; no. 7; pp. 745 - 752
Main Authors Dong, Chen, Yang, Meigui, Wang, Huanhuan, Mi, Junpeng
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.07.2017
De Gruyter
Springer Nature B.V
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Abstract Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK2-type DHN (NnDHNl) and SK 3 -type DHN (NnDHN2) were investigated. The putative NnDHN1 and NnDNH2 shared conserved S-segment as well as K-segment, with distinct isoelectric points, kinase selectivities and number of functional motifs. Phylogenetic analysis revealed that NnDHNs were grouped with Y n SK n - and SK n -type of DHNs in high plants. Additionally, NnDHN1 mRNA was only expressed in leaves and embryo. NnDHN2 mRNA was found in embryo, leaves, rhizome and leafstalk. NnDHNs mRNAs were not detected in root of N. nucifera. Real-time PCR assay demonstrated that the levels of NnDHN1 and NnDHN2 mRNAs were significantly elevated during cold temperature, while both were relatively stable in response to high temperature. Moreover, NnDHN2 mRNA was significantly increased after treatment with abscisic acid (ABA) or indole-3-acetic acid (IAA), while NnDHN1 mRNA was induced by ABA treatment with little change in response to IAA. These results illustrate two NnDHNs with partially overlapping function which exhibit different stress responsiveness.
AbstractList Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK -type DHN (NnDHNl) and SK -type DHN (NnDHN2) were investigated. The putative NnDHNl and NnDNH2 shared conserved S-segment as well as K-segment, with distinct isoelectric points, kinase selectivities and number of functional motifs. Phylogenetic analysis revealed that NnDHNs were grouped with Y SK - and SK -type of DHNs in high plants. Additionally, mRNA was only expressed in leaves and embryo. mRNA was found in embryo, leaves, rhizome and leafstalk. mRNAs were not detected in root of . . Real-time PCR assay demonstrated that the levels of and mRNAs were significantly elevated during cold temperature, while both were relatively stable in response to high temperature. Moreover, mRNA was significantly increased after treatment with abscisic acid (ABA) or indole-3-acetic acid (IAA), while mRNA was induced by ABA treatment with little change in response to IAA. These results illustrate two with partially overlapping function which exhibit different stress responsiveness.
Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK[2]-type DHN (NnDHNl) and SK[3]-type DHN (NnDHN2) were investigated. The putative NnDHNl and NnDNH2 shared conserved S-segment as well as K-segment, with distinct isoelectric points, kinase selectivities and number of functional motifs. Phylogenetic analysis revealed that NnDHNs were grouped with Y[n]SK[n]- and SK[n]-type of DHNs in high plants. Additionally,[NnDHN1] mRNA was only expressed in leaves and embryo. [NnDHN2] mRNA was found in embryo, leaves, rhizome and leafstalk.[NnDHNs] mRNAs were not detected in root of [N]. [nucifera]. Real-time PCR assay demonstrated that the levels of [NnDHN1] and [NnDHN2] mRNAs were significantly elevated during cold temperature, while both were relatively stable in response to high temperature. Moreover, [NnDHN2] mRNA was significantly increased after treatment with abscisic acid (ABA) or indole-3-acetic acid (IAA), while [NnDHN1] mRNA was induced by ABA treatment with little change in response to IAA. These results illustrate two [NnDHNs] with partially overlapping function which exhibit different stress responsiveness.
Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK2-type DHN (NnDHNl) and SK 3 -type DHN (NnDHN2) were investigated. The putative NnDHN1 and NnDNH2 shared conserved S-segment as well as K-segment, with distinct isoelectric points, kinase selectivities and number of functional motifs. Phylogenetic analysis revealed that NnDHNs were grouped with Y n SK n - and SK n -type of DHNs in high plants. Additionally, NnDHN1 mRNA was only expressed in leaves and embryo. NnDHN2 mRNA was found in embryo, leaves, rhizome and leafstalk. NnDHNs mRNAs were not detected in root of N. nucifera. Real-time PCR assay demonstrated that the levels of NnDHN1 and NnDHN2 mRNAs were significantly elevated during cold temperature, while both were relatively stable in response to high temperature. Moreover, NnDHN2 mRNA was significantly increased after treatment with abscisic acid (ABA) or indole-3-acetic acid (IAA), while NnDHN1 mRNA was induced by ABA treatment with little change in response to IAA. These results illustrate two NnDHNs with partially overlapping function which exhibit different stress responsiveness.
Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK2-type DHN (NnDHNl) and SK3-type DHN (NnDHN2) were investigated. The putative NnDHN1 and NnDNH2 shared conserved S-segment as well as K-segment, with distinct isoelectric points, kinase selectivities and number of functional motifs. Phylogenetic analysis revealed that NnDHNs were grouped with YnSKn- and SKn-type of DHNs in high plants. Additionally, NnDHN1 mRNA was only expressed in leaves and embryo. NnDHN2 mRNA was found in embryo, leaves, rhizome and leafstalk. NnDHNs mRNAs were not detected in root of N. nucifera. Real-time PCR assay demonstrated that the levels of NnDHN1 and NnDHN2 mRNAs were significantly elevated during cold temperature, while both were relatively stable in response to high temperature. Moreover, NnDHN2 mRNA was significantly increased after treatment with abscisic acid (ABA) or indole-3-acetic acid (IAA), while NnDHN1 mRNA was induced by ABA treatment with little change in response to IAA. These results illustrate two NnDHNs with partially overlapping function which exhibit different stress responsiveness.
Author Mi, Junpeng
Wang, Huanhuan
Yang, Meigui
Dong, Chen
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Keywords dehydrins
plant hormone treatment
organ specific expression
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Snippet Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK2-type DHN (NnDHNl) and SK 3 -type DHN (NnDHN2) were...
Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK -type DHN (NnDHNl) and SK -type DHN (NnDHN2) were...
Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK[2]-type DHN (NnDHNl) and SK[3]-type DHN (NnDHN2) were...
Dehydrins (DHNs) play imperative role in the stress tolerance of high plants. In this study, the YSK2-type DHN (NnDHNl) and SK3-type DHN (NnDHN2) were...
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SubjectTerms Abscisic acid
Acetic acid
Aquatic plants
Cell Biology
Dehydrin
dehydrins
Embryos
Gene expression
High temperature
Indoleacetic acid
Isoelectric points
Kinases
Leaves
Life Sciences
Microbiology
mRNA
Nelumbo nucifera
organ specific expression
Phylogeny
plant hormone treatment
Plant Sciences
Rhizomes
Zoology
Title Identification and expression analyses of two lotus (Nelumbo nucifera) dehydrin genes in response to adverse temperatures, ABA and IAA treatments
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http://www.degruyter.com/doi/10.1515/biolog-2017-0080
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https://www.proquest.com/docview/2310413916
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