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The chili pepper CaATL1: an AT-hook motif-containing transcription factor implicated in defence responses against pathogens. | LitMetric

AI Article Synopsis

  • Isolated the CaATL1 gene from chili pepper, which shows a potential role in defense against bacterial and viral pathogens, indicated by specific expression patterns and protein localization.
  • CaATL1 has features like a nuclear localization sequence and AT-hook DNA binding motif, and its expression is influenced by treatments with salicylic acid and ethephone.
  • Transgenic tomato plants over-expressing CaATL1 exhibited increased resistance to bacterial and oomycete pathogens, highlighting its significance in plant defense mechanisms.

Article Abstract

SUMMARY Using cDNA microarray analysis, we isolated a cDNA clone, CaATL1 (Capsicum annuum L. Bukang AT-hook-Like gene 1), from a chili pepper plant incompatibly interacting with bacterial pathogens. The deduced amino acid sequence has a potential nuclear localization sequence and an AT-hook DNA binding motif which can bind AT-rich sequence elements. Expression of CaATL1 was specifically induced in host- and non-host-resistant responses against bacterial and viral pathogens in pepper plants. In addition, CaATL1 transcripts also increased following salicylic acid and ethephone treatment but were only mildly induced by methyl-jasmonate treatment. CaATL1::smGFP (soluble-modified green fluorescent protein) fusion protein localized to nuclei in tobacco BY2 protoplasts. The C-terminal region of the CaATL1 protein fused to the LexA DNA binding domain was able to activate reporter gene expression in yeast. To analyse further the role of the CaATL1 in pathogen defence response, we generated CaATL1-over-expressing transgenic tomato plants. These transgenic plants showed enhanced disease resistance against bacterial and oomycete pathogens. Taken together, these results provide the first evidence of a role for a plant AT-hook motif-containing transcription factor in pathogen defence response.

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Source
http://dx.doi.org/10.1111/j.1364-3703.2007.00427.xDOI Listing

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