The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>

<i>Phytophthora</i> blight is one of the most destructive diseases of pepper (<i>Capsicum annuum</i> L.) globally. The APETALA2/Ethylene Responsive Factors (<i>AP2/ERF</i>) genes play a crucial role in plant response to biotic stresses but, to date, have not been...

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Main Authors: Jing-Hao Jin, Huai-Xia Zhang, Muhammad Ali, Ai-Min Wei, De-Xu Luo, Zhen-Hui Gong
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Genes
Subjects:
Online Access:https://www.mdpi.com/2073-4425/10/7/541
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spelling doaj-6b68daa5e70e48c8a61affe4c25f25702020-11-24T21:28:26ZengMDPI AGGenes2073-44252019-07-0110754110.3390/genes10070541genes10070541The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>Jing-Hao Jin0Huai-Xia Zhang1Muhammad Ali2Ai-Min Wei3De-Xu Luo4Zhen-Hui Gong5College of Horticulture, Northwest A&amp;F University, Yangling 712100, ChinaCollege of Horticulture, Northwest A&amp;F University, Yangling 712100, ChinaCollege of Horticulture, Northwest A&amp;F University, Yangling 712100, ChinaTianjin Vegetable Research Center, Tianjin 300192, ChinaXuhuai Region Huaiyin Institute of Agricultural Sciences, Huai’an 223001, ChinaCollege of Horticulture, Northwest A&amp;F University, Yangling 712100, China<i>Phytophthora</i> blight is one of the most destructive diseases of pepper (<i>Capsicum annuum</i> L.) globally. The APETALA2/Ethylene Responsive Factors (<i>AP2/ERF</i>) genes play a crucial role in plant response to biotic stresses but, to date, have not been studied in the context of <i>Phytophthora</i> resistance in pepper. Here, we documented potential roles for the pepper <i>CaAP2/ERF064</i> gene in inducing cell death and conferring resistance to <i>Phytophthora capsici</i> (<i>P. capsici</i>) infection. Results revealed that the N-terminal, AP2 domain, and C-terminal of CaAP2/ERF064 protein is responsible for triggering cell death in <i>Nicotiana benthamiana (N. benthamiana)</i>. Moreover, the transcription of <i>CaAP2/ERF064</i> in plant is synergistically regulated by the Methyl-Jasmonate (MeJA) and ethephon (ET) signaling pathway. <i>CaAP2/ERF064</i> was found to regulate the expression of <i>CaBPR1</i>, which is a pathogenesis-related (<i>PR</i>) gene of pepper. Furthermore, the silencing of <i>CaAP2/ERF064</i> compromised the pepper plant resistance to <i>P.</i> <i>capsici</i> by reducing the transcript level of defense-related genes <i>CaBPR1</i>, <i>CaPO2</i>, and <i>CaSAR82</i>, while the ectopic expression of <i>CaAP2/ERF064</i> in <i>N. benthamiana</i> plant elevated the expression level of <i>NbPR1b</i> and enhanced resistance to <i>P.</i> <i>capsici</i>. These results suggest that <i>CaAP2/ERF064</i> could positively regulate the defense response against <i>P. capsici</i> by modulating the transcription of <i>PR</i> genes in the plant.https://www.mdpi.com/2073-4425/10/7/541pepperAP2/ERF<i>P. capsici</i>cell death<i>PR</i> gene
collection DOAJ
language English
format Article
sources DOAJ
author Jing-Hao Jin
Huai-Xia Zhang
Muhammad Ali
Ai-Min Wei
De-Xu Luo
Zhen-Hui Gong
spellingShingle Jing-Hao Jin
Huai-Xia Zhang
Muhammad Ali
Ai-Min Wei
De-Xu Luo
Zhen-Hui Gong
The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>
Genes
pepper
AP2/ERF
<i>P. capsici</i>
cell death
<i>PR</i> gene
author_facet Jing-Hao Jin
Huai-Xia Zhang
Muhammad Ali
Ai-Min Wei
De-Xu Luo
Zhen-Hui Gong
author_sort Jing-Hao Jin
title The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>
title_short The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>
title_full The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>
title_fullStr The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>
title_full_unstemmed The <i>CaAP2/ERF064</i> Regulates Dual Functions in Pepper: Plant Cell Death and Resistance to <i>Phytophthora capsici</i>
title_sort <i>caap2/erf064</i> regulates dual functions in pepper: plant cell death and resistance to <i>phytophthora capsici</i>
publisher MDPI AG
series Genes
issn 2073-4425
publishDate 2019-07-01
description <i>Phytophthora</i> blight is one of the most destructive diseases of pepper (<i>Capsicum annuum</i> L.) globally. The APETALA2/Ethylene Responsive Factors (<i>AP2/ERF</i>) genes play a crucial role in plant response to biotic stresses but, to date, have not been studied in the context of <i>Phytophthora</i> resistance in pepper. Here, we documented potential roles for the pepper <i>CaAP2/ERF064</i> gene in inducing cell death and conferring resistance to <i>Phytophthora capsici</i> (<i>P. capsici</i>) infection. Results revealed that the N-terminal, AP2 domain, and C-terminal of CaAP2/ERF064 protein is responsible for triggering cell death in <i>Nicotiana benthamiana (N. benthamiana)</i>. Moreover, the transcription of <i>CaAP2/ERF064</i> in plant is synergistically regulated by the Methyl-Jasmonate (MeJA) and ethephon (ET) signaling pathway. <i>CaAP2/ERF064</i> was found to regulate the expression of <i>CaBPR1</i>, which is a pathogenesis-related (<i>PR</i>) gene of pepper. Furthermore, the silencing of <i>CaAP2/ERF064</i> compromised the pepper plant resistance to <i>P.</i> <i>capsici</i> by reducing the transcript level of defense-related genes <i>CaBPR1</i>, <i>CaPO2</i>, and <i>CaSAR82</i>, while the ectopic expression of <i>CaAP2/ERF064</i> in <i>N. benthamiana</i> plant elevated the expression level of <i>NbPR1b</i> and enhanced resistance to <i>P.</i> <i>capsici</i>. These results suggest that <i>CaAP2/ERF064</i> could positively regulate the defense response against <i>P. capsici</i> by modulating the transcription of <i>PR</i> genes in the plant.
topic pepper
AP2/ERF
<i>P. capsici</i>
cell death
<i>PR</i> gene
url https://www.mdpi.com/2073-4425/10/7/541
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