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Expression and Role of Biosynthetic, Transporter, Receptor, and Responsive Genes for Auxin Signaling during Clubroot Disease Development
by
Kim, Hoy-Taek
, Robin, Arif Hasan Khan
, Saha, Gopal
, Laila, Rawnak
, Park, Jong-In
, Nou, Ill-Sup
in
Amino acids
/ Arabidopsis - genetics
/ Arabidopsis Proteins - genetics
/ Biosynthesis
/ Brassica rapa - genetics
/ Brassica rapa - growth & development
/ Brassica rapa - microbiology
/ Cell division
/ Flowers & plants
/ Gene expression
/ Gene Expression Regulation, Plant - genetics
/ Indoleacetic Acids - metabolism
/ Infections
/ Kinases
/ Membrane Transport Proteins - genetics
/ Metabolism
/ Molecular weight
/ Pathogens
/ Plant Diseases - genetics
/ Plant Diseases - microbiology
/ Plant Roots - genetics
/ Plant Roots - growth & development
/ Plasmodiophorida - genetics
/ Plasmodiophorida - parasitology
/ Proteins
/ Signal transduction
/ Signal Transduction - genetics
2020
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Expression and Role of Biosynthetic, Transporter, Receptor, and Responsive Genes for Auxin Signaling during Clubroot Disease Development
by
Kim, Hoy-Taek
, Robin, Arif Hasan Khan
, Saha, Gopal
, Laila, Rawnak
, Park, Jong-In
, Nou, Ill-Sup
in
Amino acids
/ Arabidopsis - genetics
/ Arabidopsis Proteins - genetics
/ Biosynthesis
/ Brassica rapa - genetics
/ Brassica rapa - growth & development
/ Brassica rapa - microbiology
/ Cell division
/ Flowers & plants
/ Gene expression
/ Gene Expression Regulation, Plant - genetics
/ Indoleacetic Acids - metabolism
/ Infections
/ Kinases
/ Membrane Transport Proteins - genetics
/ Metabolism
/ Molecular weight
/ Pathogens
/ Plant Diseases - genetics
/ Plant Diseases - microbiology
/ Plant Roots - genetics
/ Plant Roots - growth & development
/ Plasmodiophorida - genetics
/ Plasmodiophorida - parasitology
/ Proteins
/ Signal transduction
/ Signal Transduction - genetics
2020
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Expression and Role of Biosynthetic, Transporter, Receptor, and Responsive Genes for Auxin Signaling during Clubroot Disease Development
by
Kim, Hoy-Taek
, Robin, Arif Hasan Khan
, Saha, Gopal
, Laila, Rawnak
, Park, Jong-In
, Nou, Ill-Sup
in
Amino acids
/ Arabidopsis - genetics
/ Arabidopsis Proteins - genetics
/ Biosynthesis
/ Brassica rapa - genetics
/ Brassica rapa - growth & development
/ Brassica rapa - microbiology
/ Cell division
/ Flowers & plants
/ Gene expression
/ Gene Expression Regulation, Plant - genetics
/ Indoleacetic Acids - metabolism
/ Infections
/ Kinases
/ Membrane Transport Proteins - genetics
/ Metabolism
/ Molecular weight
/ Pathogens
/ Plant Diseases - genetics
/ Plant Diseases - microbiology
/ Plant Roots - genetics
/ Plant Roots - growth & development
/ Plasmodiophorida - genetics
/ Plasmodiophorida - parasitology
/ Proteins
/ Signal transduction
/ Signal Transduction - genetics
2020
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Expression and Role of Biosynthetic, Transporter, Receptor, and Responsive Genes for Auxin Signaling during Clubroot Disease Development
Journal Article
Expression and Role of Biosynthetic, Transporter, Receptor, and Responsive Genes for Auxin Signaling during Clubroot Disease Development
2020
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Overview
Auxins play a pivotal role in clubroot development caused by the obligate biotroph Plasmodiophora brassicae. In this study, we investigated the pattern of expression of 23 genes related to auxin biosynthesis, reception, and transport in Chinese cabbage (Brassica rapa) after inoculation with P. brassicae. The predicted proteins identified, based on the 23 selected auxin-related genes, were from protein kinase, receptor kinase, auxin responsive, auxin efflux carrier, transcriptional regulator, and the auxin-repressed protein family. These proteins differed in amino acids residue, molecular weights, isoelectric points, chromosomal location, and subcellular localization. Leaf and root tissues showed dynamic and organ-specific variation in expression of auxin-related genes. The BrGH3.3 gene, involved in auxin signaling, exhibited 84.4-fold increase in expression in root tissues compared to leaf tissues as an average of all samples. This gene accounted for 4.8-, 2.6-, and 5.1-fold higher expression at 3, 14, and 28 days post inoculation (dpi) in the inoculated root tissues compared to mock-treated roots. BrNIT1, an auxin signaling gene, and BrPIN1, an auxin transporter, were remarkably induced during both cortex infection at 14 dpi and gall formation at 28 dpi. BrDCK1, an auxin receptor, was upregulated during cortex infection at 14 dpi. The BrLAX1 gene, associated with root hair development, was induced at 1 dpi in infected roots, indicating its importance in primary infection. More interestingly, a significantly higher expression of BrARP1, an auxin-repressed gene, at both the primary and secondary phases of infection indicated a dynamic response of the host plant towards its resistance against P. brassicae. The results of this study improve our current understanding of the role of auxin-related genes in clubroot disease development.
Publisher
MDPI AG,MDPI
Subject
/ Arabidopsis Proteins - genetics
/ Brassica rapa - growth & development
/ Brassica rapa - microbiology
/ Gene Expression Regulation, Plant - genetics
/ Indoleacetic Acids - metabolism
/ Kinases
/ Membrane Transport Proteins - genetics
/ Plant Diseases - microbiology
/ Plant Roots - growth & development
/ Plasmodiophorida - parasitology
/ Proteins
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