The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici

Extreme environmental conditions seriously affect crop growth and development, resulting in substantial reduction in yield and quality. However, chitin-binding proteins (CBP) family member CaChiVI2 plays a crucial role in eliminating the impact of adverse environmental conditions, such as cold and s...

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Main Authors: Muhammad Ali, Izhar Muhammad, Saeed ul Haq, Mukhtar Alam, Abdul Mateen Khattak, Kashif Akhtar, Hidayat Ullah, Abid Khan, Gang Lu, Zhen-Hui Gong
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-02-01
Series:Frontiers in Plant Science
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fpls.2020.00219/full
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spelling doaj-dde6acdf7cfb46339e5612c2b6f7f4752020-11-25T02:42:33ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2020-02-011110.3389/fpls.2020.00219515205The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsiciMuhammad Ali0Muhammad Ali1Izhar Muhammad2Saeed ul Haq3Mukhtar Alam4Abdul Mateen Khattak5Kashif Akhtar6Hidayat Ullah7Abid Khan8Gang Lu9Zhen-Hui Gong10College of Horticulture, Northwest A&F University, Yangling, ChinaDepartment of Horticulture, Zhejiang University, Hangzhou, ChinaCollege of Agronomy, Northwest A&F University, Yangling, ChinaCollege of Horticulture, Northwest A&F University, Yangling, ChinaDepartment of Agriculture, The University of Swabi, Khyber Pakhtunkhwa, PakistanDepartment of Horticulture, The University of Agriculture, Peshawar, Khyber Pakhtunkhwa, PakistanInstitute of Nuclear Agricultural Sciences, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, ChinaDepartment of Agriculture, The University of Swabi, Khyber Pakhtunkhwa, PakistanCollege of Horticulture, Northwest A&F University, Yangling, ChinaDepartment of Horticulture, Zhejiang University, Hangzhou, ChinaCollege of Horticulture, Northwest A&F University, Yangling, ChinaExtreme environmental conditions seriously affect crop growth and development, resulting in substantial reduction in yield and quality. However, chitin-binding proteins (CBP) family member CaChiVI2 plays a crucial role in eliminating the impact of adverse environmental conditions, such as cold and salt stress. Here, for the first time it was discovered that CaChiVI2 (Capana08g001237) gene of pepper (Capsicum annuum L.) had a role in resistance to heat stress and physiological processes. The full-length open-reading frame (ORF) of CaChiVI2 (606-bp, encoding 201-amino acids), was cloned into TRV2:CaChiVI2 vector for silencing. The CaChiVI2 gene carries heat shock elements (HSE, AAAAAATTTC) in the upstream region, and thereby shows sensitivity to heat stress at the transcriptional level. The silencing effect of CaChiVI2 in pepper resulted in increased susceptibility to heat and Phytophthora capsici infection. This was evident from the severe symptoms on leaves, the increase in superoxide (O2–) and hydrogen peroxide (H2O2) accumulation, higher malondialdehyde (MDA), relative electrolyte leakage (REL) and lower proline contents compared with control plants. Furthermore, the transcript level of other resistance responsive genes was also altered. In addition, the CaChiIV2-overexpression in Arabidopsis thaliana showed mild heat and drought stress symptoms and increased transcript level of a defense-related gene (AtHSA32), indicating its role in the co-regulation network of the plant. The CaChiVI2-overexpressed plants also showed a decrease in MDA contents and an increase in antioxidant enzyme activity and proline accumulation. In conclusion, the results suggest that CaChiVI2 gene plays a decisive role in heat and drought stress tolerance, as well as, provides resistance against P. capsici by reducing the accumulation of reactive oxygen species (ROS) and modulating the expression of defense-related genes. The outcomes obtained here suggest that further studies should be conducted on plants adaptation mechanisms in variable environments.https://www.frontiersin.org/article/10.3389/fpls.2020.00219/fullArabidopsisCaChiVI2chitin-binding proteindroughtheatpepper
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Ali
Muhammad Ali
Izhar Muhammad
Saeed ul Haq
Mukhtar Alam
Abdul Mateen Khattak
Kashif Akhtar
Hidayat Ullah
Abid Khan
Gang Lu
Zhen-Hui Gong
spellingShingle Muhammad Ali
Muhammad Ali
Izhar Muhammad
Saeed ul Haq
Mukhtar Alam
Abdul Mateen Khattak
Kashif Akhtar
Hidayat Ullah
Abid Khan
Gang Lu
Zhen-Hui Gong
The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici
Frontiers in Plant Science
Arabidopsis
CaChiVI2
chitin-binding protein
drought
heat
pepper
author_facet Muhammad Ali
Muhammad Ali
Izhar Muhammad
Saeed ul Haq
Mukhtar Alam
Abdul Mateen Khattak
Kashif Akhtar
Hidayat Ullah
Abid Khan
Gang Lu
Zhen-Hui Gong
author_sort Muhammad Ali
title The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici
title_short The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici
title_full The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici
title_fullStr The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici
title_full_unstemmed The CaChiVI2 Gene of Capsicum annuum L. Confers Resistance Against Heat Stress and Infection of Phytophthora capsici
title_sort cachivi2 gene of capsicum annuum l. confers resistance against heat stress and infection of phytophthora capsici
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2020-02-01
description Extreme environmental conditions seriously affect crop growth and development, resulting in substantial reduction in yield and quality. However, chitin-binding proteins (CBP) family member CaChiVI2 plays a crucial role in eliminating the impact of adverse environmental conditions, such as cold and salt stress. Here, for the first time it was discovered that CaChiVI2 (Capana08g001237) gene of pepper (Capsicum annuum L.) had a role in resistance to heat stress and physiological processes. The full-length open-reading frame (ORF) of CaChiVI2 (606-bp, encoding 201-amino acids), was cloned into TRV2:CaChiVI2 vector for silencing. The CaChiVI2 gene carries heat shock elements (HSE, AAAAAATTTC) in the upstream region, and thereby shows sensitivity to heat stress at the transcriptional level. The silencing effect of CaChiVI2 in pepper resulted in increased susceptibility to heat and Phytophthora capsici infection. This was evident from the severe symptoms on leaves, the increase in superoxide (O2–) and hydrogen peroxide (H2O2) accumulation, higher malondialdehyde (MDA), relative electrolyte leakage (REL) and lower proline contents compared with control plants. Furthermore, the transcript level of other resistance responsive genes was also altered. In addition, the CaChiIV2-overexpression in Arabidopsis thaliana showed mild heat and drought stress symptoms and increased transcript level of a defense-related gene (AtHSA32), indicating its role in the co-regulation network of the plant. The CaChiVI2-overexpressed plants also showed a decrease in MDA contents and an increase in antioxidant enzyme activity and proline accumulation. In conclusion, the results suggest that CaChiVI2 gene plays a decisive role in heat and drought stress tolerance, as well as, provides resistance against P. capsici by reducing the accumulation of reactive oxygen species (ROS) and modulating the expression of defense-related genes. The outcomes obtained here suggest that further studies should be conducted on plants adaptation mechanisms in variable environments.
topic Arabidopsis
CaChiVI2
chitin-binding protein
drought
heat
pepper
url https://www.frontiersin.org/article/10.3389/fpls.2020.00219/full
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