CaWRKY27 Negatively Regulates H2O2-Mediated Thermotolerance in Pepper (Capsicum annuum)
Heat stress, an important and damaging abiotic stress, regulates numerous WRKY transcription factors, but their roles in heat stress responses remain largely unexplored. Here, we show that pepper ( Capsicum annuum ) CaWRKY27 negatively regulates basal thermotolerance mediated by H 2 O 2 signaling. C...
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Veröffentlicht in: | Frontiers in plant science 2018-11, Vol.9, p.1633-1633 |
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Zusammenfassung: | Heat stress, an important and damaging abiotic stress, regulates numerous WRKY transcription factors, but their roles in heat stress responses remain largely unexplored. Here, we show that pepper (
Capsicum annuum
) CaWRKY27 negatively regulates basal thermotolerance mediated by H
2
O
2
signaling.
CaWRKY27
expression increased during heat stress and persisted during recovery.
CaWRKY27
overexpression impaired basal thermotolerance in tobacco (
Nicotiana tabacum
) and
Arabidopsis thaliana
,
CaWRKY27
-overexpressing plants had a lower survival rate under heat stress, accompanied by decreased expression of multiple thermotolerance-associated genes. Accordingly, silencing of
CaWRKY27
increased basal thermotolerance in pepper plants. Exogenously applied H
2
O
2
induced
CaWRKY27
expression, and
CaWRKY27
overexpression repressed the scavenging of H
2
O
2
in
Arabidopsis
, indicating a positive feedback loop between H
2
O
2
accumulation and
CaWRKY27
expression. Consistent with this,
CaWRKY27
expression was repressed under heat stress in the presence H
2
O
2
scavengers and
CaWRKY27
silencing decreased H
2
O
2
accumulation in pepper leaves. These changes may result from changes in levels of reactive oxygen species (ROS)-scavenging enzymes, since the heat stress-challenged
CaWRKY27
-silenced pepper plants had significantly higher expression of multiple genes encoding ROS-scavenging enzymes, such as
CaCAT1
,
CaAPX1
,
CaAPX2
,
CaCSD2
, and
CaSOD1
. Therefore, CaWRKY27 acts as a downstream negative regulator of H
2
O
2
-mediated heat stress responses, preventing inappropriate responses during heat stress and recovery. |
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ISSN: | 1664-462X 1664-462X |
DOI: | 10.3389/fpls.2018.01633 |