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Colonisation of Oncidium orchid roots by the endophyte Piriformospora indica restricts Erwinia chrysanthemi infection, stimulates accumulation of NBS-LRR resistance gene transcripts and represses their targeting micro-RNAs in leaves
by
Jiang, Jinlan
, Lai, Zhongxiong
, Ye, Wei
, Yeh, Kai-Wun
, Oelmüller, Ralf
, Xu, Xuming
, Lin, Yuling
in
Accumulation
/ agar
/ Agriculture
/ Amino acids
/ Basidiomycota - physiology
/ Binding sites
/ bioinformatics
/ Biomedical and Life Sciences
/ Circuits
/ Colonization
/ Cultivars
/ Endophytes
/ Endophytes - physiology
/ Erwinia chrysanthemi
/ ethylene
/ Flowers & plants
/ Fungi
/ Gene expression
/ Gene sequencing
/ Genes
/ Genes, Plant
/ Genetic engineering
/ Health aspects
/ Hydrogen peroxide
/ Infections
/ Kinases
/ Leaves
/ Leucine
/ Life Sciences
/ Messenger RNA
/ MicroRNA
/ MicroRNAs - genetics
/ MicroRNAs - metabolism
/ miRNA
/ Nucleotides
/ Oncidium
/ Orchidaceae - genetics
/ Orchidaceae - microbiology
/ Pathogens
/ Pectobacterium chrysanthemi - physiology
/ Phenols (Class of compounds)
/ Phylogenetics
/ Piriformospora indica
/ Plant Diseases - microbiology
/ Plant Leaves - genetics
/ Plant Leaves - microbiology
/ Plant protection
/ Plant resistance
/ Plant Roots - genetics
/ Plant Roots - microbiology
/ Plant Sciences
/ Plant species
/ Plant-biotic interactions
/ Proteins
/ Research Article
/ Resistance gene
/ resistance genes
/ RNA, Plant - genetics
/ RNA, Plant - metabolism
/ Roots
/ Rot
/ Salicylic acid
/ species
/ Tree Biology
2019
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Colonisation of Oncidium orchid roots by the endophyte Piriformospora indica restricts Erwinia chrysanthemi infection, stimulates accumulation of NBS-LRR resistance gene transcripts and represses their targeting micro-RNAs in leaves
by
Jiang, Jinlan
, Lai, Zhongxiong
, Ye, Wei
, Yeh, Kai-Wun
, Oelmüller, Ralf
, Xu, Xuming
, Lin, Yuling
in
Accumulation
/ agar
/ Agriculture
/ Amino acids
/ Basidiomycota - physiology
/ Binding sites
/ bioinformatics
/ Biomedical and Life Sciences
/ Circuits
/ Colonization
/ Cultivars
/ Endophytes
/ Endophytes - physiology
/ Erwinia chrysanthemi
/ ethylene
/ Flowers & plants
/ Fungi
/ Gene expression
/ Gene sequencing
/ Genes
/ Genes, Plant
/ Genetic engineering
/ Health aspects
/ Hydrogen peroxide
/ Infections
/ Kinases
/ Leaves
/ Leucine
/ Life Sciences
/ Messenger RNA
/ MicroRNA
/ MicroRNAs - genetics
/ MicroRNAs - metabolism
/ miRNA
/ Nucleotides
/ Oncidium
/ Orchidaceae - genetics
/ Orchidaceae - microbiology
/ Pathogens
/ Pectobacterium chrysanthemi - physiology
/ Phenols (Class of compounds)
/ Phylogenetics
/ Piriformospora indica
/ Plant Diseases - microbiology
/ Plant Leaves - genetics
/ Plant Leaves - microbiology
/ Plant protection
/ Plant resistance
/ Plant Roots - genetics
/ Plant Roots - microbiology
/ Plant Sciences
/ Plant species
/ Plant-biotic interactions
/ Proteins
/ Research Article
/ Resistance gene
/ resistance genes
/ RNA, Plant - genetics
/ RNA, Plant - metabolism
/ Roots
/ Rot
/ Salicylic acid
/ species
/ Tree Biology
2019
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Colonisation of Oncidium orchid roots by the endophyte Piriformospora indica restricts Erwinia chrysanthemi infection, stimulates accumulation of NBS-LRR resistance gene transcripts and represses their targeting micro-RNAs in leaves
by
Jiang, Jinlan
, Lai, Zhongxiong
, Ye, Wei
, Yeh, Kai-Wun
, Oelmüller, Ralf
, Xu, Xuming
, Lin, Yuling
in
Accumulation
/ agar
/ Agriculture
/ Amino acids
/ Basidiomycota - physiology
/ Binding sites
/ bioinformatics
/ Biomedical and Life Sciences
/ Circuits
/ Colonization
/ Cultivars
/ Endophytes
/ Endophytes - physiology
/ Erwinia chrysanthemi
/ ethylene
/ Flowers & plants
/ Fungi
/ Gene expression
/ Gene sequencing
/ Genes
/ Genes, Plant
/ Genetic engineering
/ Health aspects
/ Hydrogen peroxide
/ Infections
/ Kinases
/ Leaves
/ Leucine
/ Life Sciences
/ Messenger RNA
/ MicroRNA
/ MicroRNAs - genetics
/ MicroRNAs - metabolism
/ miRNA
/ Nucleotides
/ Oncidium
/ Orchidaceae - genetics
/ Orchidaceae - microbiology
/ Pathogens
/ Pectobacterium chrysanthemi - physiology
/ Phenols (Class of compounds)
/ Phylogenetics
/ Piriformospora indica
/ Plant Diseases - microbiology
/ Plant Leaves - genetics
/ Plant Leaves - microbiology
/ Plant protection
/ Plant resistance
/ Plant Roots - genetics
/ Plant Roots - microbiology
/ Plant Sciences
/ Plant species
/ Plant-biotic interactions
/ Proteins
/ Research Article
/ Resistance gene
/ resistance genes
/ RNA, Plant - genetics
/ RNA, Plant - metabolism
/ Roots
/ Rot
/ Salicylic acid
/ species
/ Tree Biology
2019
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Colonisation of Oncidium orchid roots by the endophyte Piriformospora indica restricts Erwinia chrysanthemi infection, stimulates accumulation of NBS-LRR resistance gene transcripts and represses their targeting micro-RNAs in leaves
Journal Article
Colonisation of Oncidium orchid roots by the endophyte Piriformospora indica restricts Erwinia chrysanthemi infection, stimulates accumulation of NBS-LRR resistance gene transcripts and represses their targeting micro-RNAs in leaves
2019
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Overview
Background
Erwinia chrysanthemi
(
Ec
) is a destructive pathogen which causes soft-rot diseases in diverse plant species including orchids. We investigated whether colonization of
Oncidium
roots by the endophytic fungus
Piriformospora indica
(
Pi
) restricts
Ec
-induced disease development in leaves, and whether this might be related to the regulation of nucleotide binding site-leucine rich repeat (NBS-LRR)
Resistance
(
R
) genes.
Results
Root colonization of
Oncidium
stackings by
Pi
restricts progression of
Ec-
induced disease development in the leaves. Since
Pi
does not inhibit
Ec
growth on agar plates, we tested whether NBS-LRR
R
gene transcripts and the levels of their potential target miRNAs in
Oncidium
leaves might be regulated by
Pi
. Using bioinformatic tools, we first identified NBS-LRR
R
gene sequences from
Oncidium
, which are predicted to be targets of miRNAs. Among them, the expression of two
R
genes was repressed and the accumulation of several regulatory miRNA stimulated by
Ec
in the leaves of
Oncidium
plants. This correlated with the progression of disease development, jasmonic and salicylic acid accumulation, ethylene synthesis and H
2
O
2
production after
Ec
infection of
Oncidium
leaves. Interestingly, root colonization by
Pi
restricted disease development in the leaves, and this was accompanied by higher expression levels of several defense-related
R
genes and lower expression level of their target miRNA.
Conclusion
Based on these data we propose that
Pi
controls the levels of NBS-LRR
R
mRNAs and their target miRNAs in leaves. This regulatory circuit correlates with the protection of
Oncidium
plants against
Ec
infection, and molecular and biochemical investigations will demonstrate in the future whether, and if so, to what extent these two observations are related to each other.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ agar
/ Biomedical and Life Sciences
/ Circuits
/ ethylene
/ Fungi
/ Genes
/ Kinases
/ Leaves
/ Leucine
/ MicroRNA
/ miRNA
/ Oncidium
/ Pectobacterium chrysanthemi - physiology
/ Phenols (Class of compounds)
/ Plant Diseases - microbiology
/ Proteins
/ Roots
/ Rot
/ species
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