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Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings

Phospholipase C is an enzyme that catalyzes the hydrolysis of glycerophospholipids and can be classified as phosphoinositide-specific PLC (PI-PLC) and non-specific PLC (NPC), depending on its hydrolytic substrate. In maize, the function of phospholipase C has not been well characterized. In this stu...

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Autores principales: Wei, Yulei, Liu, Xinyu, Ge, Shengnan, Zhang, Haiyang, Che, Xinyang, Liu, Shiyuan, Liu, Debin, Li, Huixin, Gu, Xinru, He, Lin, Li, Zuotong, Xu, Jingyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9222606/
https://www.ncbi.nlm.nih.gov/pubmed/35741773
http://dx.doi.org/10.3390/genes13061011
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author Wei, Yulei
Liu, Xinyu
Ge, Shengnan
Zhang, Haiyang
Che, Xinyang
Liu, Shiyuan
Liu, Debin
Li, Huixin
Gu, Xinru
He, Lin
Li, Zuotong
Xu, Jingyu
author_facet Wei, Yulei
Liu, Xinyu
Ge, Shengnan
Zhang, Haiyang
Che, Xinyang
Liu, Shiyuan
Liu, Debin
Li, Huixin
Gu, Xinru
He, Lin
Li, Zuotong
Xu, Jingyu
author_sort Wei, Yulei
collection PubMed
description Phospholipase C is an enzyme that catalyzes the hydrolysis of glycerophospholipids and can be classified as phosphoinositide-specific PLC (PI-PLC) and non-specific PLC (NPC), depending on its hydrolytic substrate. In maize, the function of phospholipase C has not been well characterized. In this study, the phospholipase C inhibitor neomycin sulfate (NS, 100 mM) was applied to maize seedlings to investigate the function of maize PLC. Under the treatment of neomycin sulfate, the growth and development of maize seedlings were impaired, and the leaves were gradually etiolated and wilted. The analysis of physiological and biochemical parameters revealed that inhibition of phospholipase C affected photosynthesis, photosynthetic pigment accumulation, carbon metabolism and the stability of the cell membrane. High-throughput RNA-seq was conducted, and differentially expressed genes (DEGS) were found significantly enriched in photosynthesis and carbon metabolism pathways. When phospholipase C activity was inhibited, the expression of genes related to photosynthetic pigment accumulation was decreased, which led to lowered chlorophyll. Most of the genes related to PSI, PSII and TCA cycles were down-regulated and the net photosynthesis was decreased. Meanwhile, genes related to starch and sucrose metabolism, the pentose phosphate pathway and the glycolysis/gluconeogenesis pathway were up-regulated, which explained the reduction of starch and total soluble sugar content in the leaves of maize seedlings. These findings suggest that phospholipase C plays a key role in photosynthesis and the growth and development of maize seedlings.
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spelling pubmed-92226062022-06-24 Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings Wei, Yulei Liu, Xinyu Ge, Shengnan Zhang, Haiyang Che, Xinyang Liu, Shiyuan Liu, Debin Li, Huixin Gu, Xinru He, Lin Li, Zuotong Xu, Jingyu Genes (Basel) Article Phospholipase C is an enzyme that catalyzes the hydrolysis of glycerophospholipids and can be classified as phosphoinositide-specific PLC (PI-PLC) and non-specific PLC (NPC), depending on its hydrolytic substrate. In maize, the function of phospholipase C has not been well characterized. In this study, the phospholipase C inhibitor neomycin sulfate (NS, 100 mM) was applied to maize seedlings to investigate the function of maize PLC. Under the treatment of neomycin sulfate, the growth and development of maize seedlings were impaired, and the leaves were gradually etiolated and wilted. The analysis of physiological and biochemical parameters revealed that inhibition of phospholipase C affected photosynthesis, photosynthetic pigment accumulation, carbon metabolism and the stability of the cell membrane. High-throughput RNA-seq was conducted, and differentially expressed genes (DEGS) were found significantly enriched in photosynthesis and carbon metabolism pathways. When phospholipase C activity was inhibited, the expression of genes related to photosynthetic pigment accumulation was decreased, which led to lowered chlorophyll. Most of the genes related to PSI, PSII and TCA cycles were down-regulated and the net photosynthesis was decreased. Meanwhile, genes related to starch and sucrose metabolism, the pentose phosphate pathway and the glycolysis/gluconeogenesis pathway were up-regulated, which explained the reduction of starch and total soluble sugar content in the leaves of maize seedlings. These findings suggest that phospholipase C plays a key role in photosynthesis and the growth and development of maize seedlings. MDPI 2022-06-03 /pmc/articles/PMC9222606/ /pubmed/35741773 http://dx.doi.org/10.3390/genes13061011 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wei, Yulei
Liu, Xinyu
Ge, Shengnan
Zhang, Haiyang
Che, Xinyang
Liu, Shiyuan
Liu, Debin
Li, Huixin
Gu, Xinru
He, Lin
Li, Zuotong
Xu, Jingyu
Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings
title Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings
title_full Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings
title_fullStr Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings
title_full_unstemmed Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings
title_short Involvement of Phospholipase C in Photosynthesis and Growth of Maize Seedlings
title_sort involvement of phospholipase c in photosynthesis and growth of maize seedlings
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9222606/
https://www.ncbi.nlm.nih.gov/pubmed/35741773
http://dx.doi.org/10.3390/genes13061011
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