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Citrus MAF1, a Repressor of RNA Polymerase III, Binds the Xanthomonas citri Canker Elicitor PthA4 and Suppresses Citrus Canker Development1
The citrus CsMAF1 protein, an interacting partner of the transcription activator-like effector and citrus canker elicitor PthA4, functions as a suppressor of canker development in sweet orange . Transcription activator-like ( TAL ) effectors from Xanthomonas species pathogens act as transcription fa...
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Published in: | Plant physiology (Bethesda) 2013-07, Vol.163 (1), p.232-242 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Online Access: | Get full text |
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Summary: | The citrus CsMAF1 protein, an interacting partner of the transcription activator-like effector and citrus canker elicitor PthA4, functions as a suppressor of canker development in sweet orange
.
Transcription activator-like (
TAL
) effectors from
Xanthomonas
species pathogens act as transcription factors in plant cells; however, how
TAL
effectors activate host transcription is unknown. We found previously that
TAL
effectors of the citrus canker pathogen
Xanthomonas citri
, known as PthAs, bind the carboxyl-terminal domain of the sweet orange (
Citrus sinensis
) RNA polymerase II (
Pol II
) and inhibit the activity of CsCYP, a cyclophilin associated with the carboxyl-terminal domain of the citrus RNA
Pol II
that functions as a negative regulator of cell growth. Here, we show that PthA4 specifically interacted with the sweet orange MAF1 (CsMAF1) protein, an RNA polymerase III (
Pol III
) repressor that controls ribosome biogenesis and cell growth in yeast (
Saccharomyces cerevisiae
) and human. CsMAF1 bound the human RNA
Pol III
and rescued the yeast
maf1
mutant by repressing tRNA
His
transcription. The expression of PthA4 in the
maf1
mutant slightly restored tRNA
His
synthesis, indicating that PthA4 counteracts CsMAF1 activity. In addition, we show that sweet orange RNA interference plants with reduced CsMAF1 levels displayed a dramatic increase in tRNA transcription and a marked phenotype of cell proliferation during canker formation. Conversely, CsMAF1 overexpression was detrimental to seedling growth, inhibited tRNA synthesis, and attenuated canker development. Furthermore, we found that PthA4 is required to elicit cankers in sweet orange leaves and that depletion of CsMAF1 in
X. citri
-infected tissues correlates with the development of hyperplastic lesions and the presence of PthA4. Considering that CsMAF1 and CsCYP function as canker suppressors in sweet orange, our data indicate that
TAL
effectors from
X. citri
target negative regulators of RNA
Pol II
and
Pol III
to coordinately increase the transcription of host genes involved in ribosome biogenesis and cell proliferation. |
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ISSN: | 0032-0889 1532-2548 |
DOI: | 10.1104/pp.113.224642 |