4.7 Article

Genome-Wide Analysis of Respiratory Burst Oxidase Homo logs in Grape (Vitis vinifera L.)

Journal

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Volume 14, Issue 12, Pages 24169-24186

Publisher

MDPI
DOI: 10.3390/ijms141224169

Keywords

reactive oxygen species; synteny analysis; phylogenetic analysis; gene expression

Funding

  1. National Natural Science Foundation of China [31272136]
  2. 948 Project from the Ministry of Agriculture of China [2012-S12]
  3. Innovative Research Team of Grape Germplasm Resources and Breeding [2013KCT-25]

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Plant respiratory burst oxidase homolog (rboh) genes appear to play crucial roles in plant development, defense reactions and hormone signaling. In this study, a total of seven rboh genes from grape were identified and characterized. Genomic structure and predicted protein sequence analysis indicated that the sequences of plant rboh genes are highly conserved. Synteny analysis demonstrated that several Vvrboh genes were found in corresponding syntenic blocks of Arabidopsis, suggesting that these genes arose before the divergence of the respective lineages. The expression pattern of Vvrboh genes in different tissues was assessed by qRT-PCR and two were constitutively expressed in all tissues tested. The expression profiles were similarly analyzed following exposure to various stresses and hormone treatments. It was shown that the expression levels of VvrbohA, VvrbohB and VvrbohC1 were significantly increased by salt and drought treatments. VvrbohB, VvrbohC2, and VvrbohD exhibited a dramatic up-regulation after powdery mildew (Uncinula necator (Schw.) Burr.) inoculation, while VvrbohH was down-regulated. Finally, salicylic acid treatment strongly stimulated the expression of VvrbohD and VvrbohH, while abscisic acid treatment induced the expression of VvrbohB and VvrbohH. These results demonstrate that the expression patterns of grape rboh genes exhibit diverse and complex stress-response expression signatures.

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