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Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses

Banana is one of the most important food and fruit crops in the world and its growth is ceasing at 10–17 °C. However, the mechanisms determining the tolerance of banana to mild (>15 °C) and moderate chilling (10–15 °C) are elusive. Furthermore, the biochemical controls over the photosynthesis in...

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Autores principales: Liu, Jing, Takáč, Tomáš, Yi, Ganjun, Chen, Houbin, Wang, Yingying, Meng, Jian, Yuan, Weina, Tan, Yehuan, Ning, Tong, He, Zhenting, Šamaj, Jozef, Xu, Chunxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730866/
https://www.ncbi.nlm.nih.gov/pubmed/33297477
http://dx.doi.org/10.3390/ijms21239326
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author Liu, Jing
Takáč, Tomáš
Yi, Ganjun
Chen, Houbin
Wang, Yingying
Meng, Jian
Yuan, Weina
Tan, Yehuan
Ning, Tong
He, Zhenting
Šamaj, Jozef
Xu, Chunxiang
author_facet Liu, Jing
Takáč, Tomáš
Yi, Ganjun
Chen, Houbin
Wang, Yingying
Meng, Jian
Yuan, Weina
Tan, Yehuan
Ning, Tong
He, Zhenting
Šamaj, Jozef
Xu, Chunxiang
author_sort Liu, Jing
collection PubMed
description Banana is one of the most important food and fruit crops in the world and its growth is ceasing at 10–17 °C. However, the mechanisms determining the tolerance of banana to mild (>15 °C) and moderate chilling (10–15 °C) are elusive. Furthermore, the biochemical controls over the photosynthesis in tropical plant species at low temperatures above 10 °C is not well understood. The purpose of this research was to reveal the response of chilling-sensitive banana to mild (16 °C) and moderate chilling stress (10 °C) at the molecular (transcripts, proteins) and physiological levels. The results showed different transcriptome responses between mild and moderate chilling stresses, especially in pathways of plant hormone signal transduction, ABC transporters, ubiquinone, and other terpenoid-quinone biosynthesis. Interestingly, functions related to carbon fixation were assigned preferentially to upregulated genes/proteins, while photosynthesis and photosynthesis-antenna proteins were downregulated at 10 °C, as revealed by both digital gene expression and proteomic analysis. These results were confirmed by qPCR and immunofluorescence labeling methods. Conclusion: Banana responded to the mild chilling stress dramatically at the molecular level. To compensate for the decreased photosynthesis efficiency caused by mild and moderate chilling stresses, banana accelerated its carbon fixation, mainly through upregulation of phosphoenolpyruvate carboxylases.
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spelling pubmed-77308662020-12-12 Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses Liu, Jing Takáč, Tomáš Yi, Ganjun Chen, Houbin Wang, Yingying Meng, Jian Yuan, Weina Tan, Yehuan Ning, Tong He, Zhenting Šamaj, Jozef Xu, Chunxiang Int J Mol Sci Article Banana is one of the most important food and fruit crops in the world and its growth is ceasing at 10–17 °C. However, the mechanisms determining the tolerance of banana to mild (>15 °C) and moderate chilling (10–15 °C) are elusive. Furthermore, the biochemical controls over the photosynthesis in tropical plant species at low temperatures above 10 °C is not well understood. The purpose of this research was to reveal the response of chilling-sensitive banana to mild (16 °C) and moderate chilling stress (10 °C) at the molecular (transcripts, proteins) and physiological levels. The results showed different transcriptome responses between mild and moderate chilling stresses, especially in pathways of plant hormone signal transduction, ABC transporters, ubiquinone, and other terpenoid-quinone biosynthesis. Interestingly, functions related to carbon fixation were assigned preferentially to upregulated genes/proteins, while photosynthesis and photosynthesis-antenna proteins were downregulated at 10 °C, as revealed by both digital gene expression and proteomic analysis. These results were confirmed by qPCR and immunofluorescence labeling methods. Conclusion: Banana responded to the mild chilling stress dramatically at the molecular level. To compensate for the decreased photosynthesis efficiency caused by mild and moderate chilling stresses, banana accelerated its carbon fixation, mainly through upregulation of phosphoenolpyruvate carboxylases. MDPI 2020-12-07 /pmc/articles/PMC7730866/ /pubmed/33297477 http://dx.doi.org/10.3390/ijms21239326 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Jing
Takáč, Tomáš
Yi, Ganjun
Chen, Houbin
Wang, Yingying
Meng, Jian
Yuan, Weina
Tan, Yehuan
Ning, Tong
He, Zhenting
Šamaj, Jozef
Xu, Chunxiang
Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses
title Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses
title_full Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses
title_fullStr Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses
title_full_unstemmed Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses
title_short Acceleration of Carbon Fixation in Chilling-Sensitive Banana under Mild and Moderate Chilling Stresses
title_sort acceleration of carbon fixation in chilling-sensitive banana under mild and moderate chilling stresses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7730866/
https://www.ncbi.nlm.nih.gov/pubmed/33297477
http://dx.doi.org/10.3390/ijms21239326
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