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Genome-wide investigation and expression profiling of polyphenol oxidase (PPO) family genes uncover likely functions in organ development and stress responses in Populus trichocarpa
by
Zhao, Kuang-Ji
, Shi, Yu-Jie
, He, Fang
, Zhao, Qian
, Wan, Xue-Qin
, Cui, Xing-Lei
, Yang, Han-Bo
, Chen, Liang-Hua
, Huang, Jin-Liang
, Mi, Jia-Xuan
, Zhang, Fan
in
Abiotic stress
/ Abscisic acid
/ Amino acids
/ Animal Genetics and Genomics
/ Bioinformatics
/ Biomedical and Life Sciences
/ Catechol Oxidase - genetics
/ Cellular stress response
/ Chloroplasts
/ Chromosomes
/ Deciduous trees
/ Development
/ Drought
/ Droughts
/ Environmental conditions
/ Evolution
/ Expression pattern
/ Forest flora
/ Fungi
/ Gene expression
/ Gene Expression Regulation, Plant
/ Genes
/ Genetic aspects
/ Genetic resources
/ Genome-wide
/ Genomes
/ Genomics
/ Hardiness
/ Insects
/ Life Sciences
/ Localization
/ Metabolites
/ Metalloproteinase
/ Methyl jasmonate
/ Microarrays
/ Microbial Genetics and Genomics
/ Microorganisms
/ Nucleotide sequence
/ Oxidoreductases
/ Phylogenetics
/ Phylogeny
/ Physiological aspects
/ Plant Genetics and Genomics
/ Plant Proteins - genetics
/ Plant resistance
/ Plants
/ Polyethylene glycol
/ Polyphenol oxidase
/ Poplar
/ Populus
/ Populus - enzymology
/ Populus - genetics
/ Populus trichocarpa
/ PPO gene family
/ Proteins
/ Proteomics
/ Reforestation
/ Replication
/ Sequence analysis
/ Stress
/ Stress, Physiological
/ Stresses
/ Trees
/ Woody plants
2021
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Genome-wide investigation and expression profiling of polyphenol oxidase (PPO) family genes uncover likely functions in organ development and stress responses in Populus trichocarpa
by
Zhao, Kuang-Ji
, Shi, Yu-Jie
, He, Fang
, Zhao, Qian
, Wan, Xue-Qin
, Cui, Xing-Lei
, Yang, Han-Bo
, Chen, Liang-Hua
, Huang, Jin-Liang
, Mi, Jia-Xuan
, Zhang, Fan
in
Abiotic stress
/ Abscisic acid
/ Amino acids
/ Animal Genetics and Genomics
/ Bioinformatics
/ Biomedical and Life Sciences
/ Catechol Oxidase - genetics
/ Cellular stress response
/ Chloroplasts
/ Chromosomes
/ Deciduous trees
/ Development
/ Drought
/ Droughts
/ Environmental conditions
/ Evolution
/ Expression pattern
/ Forest flora
/ Fungi
/ Gene expression
/ Gene Expression Regulation, Plant
/ Genes
/ Genetic aspects
/ Genetic resources
/ Genome-wide
/ Genomes
/ Genomics
/ Hardiness
/ Insects
/ Life Sciences
/ Localization
/ Metabolites
/ Metalloproteinase
/ Methyl jasmonate
/ Microarrays
/ Microbial Genetics and Genomics
/ Microorganisms
/ Nucleotide sequence
/ Oxidoreductases
/ Phylogenetics
/ Phylogeny
/ Physiological aspects
/ Plant Genetics and Genomics
/ Plant Proteins - genetics
/ Plant resistance
/ Plants
/ Polyethylene glycol
/ Polyphenol oxidase
/ Poplar
/ Populus
/ Populus - enzymology
/ Populus - genetics
/ Populus trichocarpa
/ PPO gene family
/ Proteins
/ Proteomics
/ Reforestation
/ Replication
/ Sequence analysis
/ Stress
/ Stress, Physiological
/ Stresses
/ Trees
/ Woody plants
2021
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Genome-wide investigation and expression profiling of polyphenol oxidase (PPO) family genes uncover likely functions in organ development and stress responses in Populus trichocarpa
by
Zhao, Kuang-Ji
, Shi, Yu-Jie
, He, Fang
, Zhao, Qian
, Wan, Xue-Qin
, Cui, Xing-Lei
, Yang, Han-Bo
, Chen, Liang-Hua
, Huang, Jin-Liang
, Mi, Jia-Xuan
, Zhang, Fan
in
Abiotic stress
/ Abscisic acid
/ Amino acids
/ Animal Genetics and Genomics
/ Bioinformatics
/ Biomedical and Life Sciences
/ Catechol Oxidase - genetics
/ Cellular stress response
/ Chloroplasts
/ Chromosomes
/ Deciduous trees
/ Development
/ Drought
/ Droughts
/ Environmental conditions
/ Evolution
/ Expression pattern
/ Forest flora
/ Fungi
/ Gene expression
/ Gene Expression Regulation, Plant
/ Genes
/ Genetic aspects
/ Genetic resources
/ Genome-wide
/ Genomes
/ Genomics
/ Hardiness
/ Insects
/ Life Sciences
/ Localization
/ Metabolites
/ Metalloproteinase
/ Methyl jasmonate
/ Microarrays
/ Microbial Genetics and Genomics
/ Microorganisms
/ Nucleotide sequence
/ Oxidoreductases
/ Phylogenetics
/ Phylogeny
/ Physiological aspects
/ Plant Genetics and Genomics
/ Plant Proteins - genetics
/ Plant resistance
/ Plants
/ Polyethylene glycol
/ Polyphenol oxidase
/ Poplar
/ Populus
/ Populus - enzymology
/ Populus - genetics
/ Populus trichocarpa
/ PPO gene family
/ Proteins
/ Proteomics
/ Reforestation
/ Replication
/ Sequence analysis
/ Stress
/ Stress, Physiological
/ Stresses
/ Trees
/ Woody plants
2021
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Genome-wide investigation and expression profiling of polyphenol oxidase (PPO) family genes uncover likely functions in organ development and stress responses in Populus trichocarpa
Journal Article
Genome-wide investigation and expression profiling of polyphenol oxidase (PPO) family genes uncover likely functions in organ development and stress responses in Populus trichocarpa
2021
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Overview
Background
Trees such as
Populus
are planted extensively for reforestation and afforestation. However, their successful establishment greatly depends upon ambient environmental conditions and their relative resistance to abiotic and biotic stresses. Polyphenol oxidase (PPO) is a ubiquitous metalloproteinase in plants, which plays crucial roles in mediating plant resistance against biotic and abiotic stresses. Although the whole genome sequence of
Populus trichocarpa
has long been published, little is known about the
PPO
genes in
Populus
, especially those related to drought stress, mechanical damage, and insect feeding. Additionally, there is a paucity of information regarding hormonal responses at the whole genome level.
Results
A genome-wide analysis of the poplar PPO family was performed in the present study, and 18
PtrPPO
genes were identified. Bioinformatics and qRT-PCR were then used to analyze the gene structure, phylogeny, chromosomal localization, gene replication,
cis
-elements, and expression patterns of
PtrPPOs
. Sequence analysis revealed that two-thirds of the
PtrPPO
genes lacked intronic sequences. Phylogenetic analysis showed that all
PPO
genes were categorized into 11 groups, and woody plants harbored many
PPO
genes. Eighteen
PtrPPO
genes were disproportionally localized on 19 chromosomes, and 3 pairs of segmented replication genes and 4 tandem repeat genomes were detected in poplars.
Cis
-acting element analysis identified numerous growth and developmental elements, secondary metabolism processes, and stress-related elements in the promoters of different PPO members. Furthermore,
PtrPPO
genes were expressed preferentially in the tissues and fruits of young plants. In addition, the expression of some
PtrPPOs
could be significantly induced by polyethylene glycol, abscisic acid, and methyl jasmonate, thereby revealing their potential role in regulating the stress response. Currently, we identified potential upstream TFs of
PtrPPOs
using bioinformatics.
Conclusions
Comprehensive analysis is helpful for selecting candidate
PPO
genes for follow-up studies on biological function, and progress in understanding the molecular genetic basis of stress resistance in forest trees might lead to the development of genetic resources.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
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