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Abolishing ARF8A activity promotes disease resistance in tomato
Iftah Marash
, Meirav Leibman-Markus
, Rupali Gupta
, Alon Israeli
, Naama Teboul
,
Adi Avni
, Naomi Ori
, Maya Bar
*
*
Corresponding author for this work
School of Plant Sciences and Food Security
Agricultural Research Organization of Israel
Hebrew University of Jerusalem
Research output
:
Contribution to journal
›
Article
›
peer-review
7
Scopus citations
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Keyphrases
Tomato
100%
Disease Resistance
100%
Auxin Response Factor
100%
Transcription Factor
66%
Auxin
66%
Gene Expression
33%
Developmental Processes
33%
Enhanced Resistance
33%
Plant Development
33%
Fungal Pathogens
33%
Plant Resistance
33%
Plant Growth
33%
Fruit Development
33%
Increased Yield
33%
Pollination
33%
Fertilization
33%
Extreme Temperature
33%
Transcriptional Repressor
33%
Fluctuating Temperature
33%
Bacterial Pathogens
33%
Parthenocarpy
33%
Auxin-responsive Genes
33%
Immunology and Microbiology
Transcription Factors
100%
Gene Expression
50%
Infectious Agent
50%
Growth, Development and Aging
50%
Plant Growth
50%
Repressor Gene
50%
Plant Development
50%
Fruit Development
50%
Pollination
50%
Fertilization
50%
Biochemistry, Genetics and Molecular Biology
Response Factor
100%
Transcription Factors
66%
Gene Expression
33%
Plant Development
33%
Infectious Agent
33%
Transcriptional Repressor
33%
Growth, Development and Aging
33%
Fruit Development
33%
Pollination
33%
Fertilization
33%