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PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress

Drought stress is a serious abiotic stress source that affects the growth and fruit quality of peach trees. However, the molecular mechanism of the NUDIX hydrolase family in peaches in response to drought stress is still unclear. Here, we isolated and identified the PpNUDX8 (Prupe.5G062300.1) gene f...

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Autores principales: He, HuaJie, Zhang, YuZheng, Wen, BinBin, Meng, XiangGuang, Wang, Ning, Sun, MingYun, Zhang, Rui, Zhao, XueHui, Tan, QiuPing, Xiao, Wei, Li, DongMei, Fu, XiLing, Chen, XiuDe, Li, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8888663/
https://www.ncbi.nlm.nih.gov/pubmed/35251068
http://dx.doi.org/10.3389/fpls.2021.831883
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author He, HuaJie
Zhang, YuZheng
Wen, BinBin
Meng, XiangGuang
Wang, Ning
Sun, MingYun
Zhang, Rui
Zhao, XueHui
Tan, QiuPing
Xiao, Wei
Li, DongMei
Fu, XiLing
Chen, XiuDe
Li, Ling
author_facet He, HuaJie
Zhang, YuZheng
Wen, BinBin
Meng, XiangGuang
Wang, Ning
Sun, MingYun
Zhang, Rui
Zhao, XueHui
Tan, QiuPing
Xiao, Wei
Li, DongMei
Fu, XiLing
Chen, XiuDe
Li, Ling
author_sort He, HuaJie
collection PubMed
description Drought stress is a serious abiotic stress source that affects the growth and fruit quality of peach trees. However, the molecular mechanism of the NUDIX hydrolase family in peaches in response to drought stress is still unclear. Here, we isolated and identified the PpNUDX8 (Prupe.5G062300.1) gene from the peach NUDIX hydrolase family, and found that PpNUDX8 has a typical NUDIX hydrolase domain. In this study, we performed 15% PEG6000 drought treatment on peach seedlings, and qRT–PCR analysis showed that 15% PEG6000 induced the transcription level of PpNUDX8. Overexpression of PpNUDX8 reduced the tolerance of calli to 4% PEG6000 treatment. Compared with wild-type apple calli, PpNUDX8 transgenic apple calli had a lower fresh weight and higher MDA content. After 15% PEG6000 drought treatment, PpNUDX8 transgenic tobacco had a greater degree of wilting and shorter primary roots than Under control conditions. The chlorophyll, soluble protein, and proline contents in the transgenic tobacco decreased, and the MDA content and relative conductivity increased. At the same time, PpNUDX8 negatively regulated ABA signal transduction and reduced the transcriptional expression of stress response genes. In addition, PpNUDX8 was not sensitive to ABA, overexpression of PpNUDX8 reduced the expression of the ABA synthesis-related gene NCED6 and increases the expression of the ABA decomposition-related gene CYP1 in tobacco, which in turn leads to a decrease in the ABA content in tobacco. In addition, Under control conditions, overexpression of PpNUDX8 destroyed the homeostasis of NAD and reduced nicotinamide adenine dinucleotide (NADH) in tobacco. After 15% PEG6000 drought treatment, the changes in NAD and NADH in PpNUDX8 transgenic tobacco were more severe than those in WT tobacco. In addition, PpNUDX8 also interacted with PpSnRk1γ (Prupe.6G323700.1).
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spelling pubmed-88886632022-03-03 PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress He, HuaJie Zhang, YuZheng Wen, BinBin Meng, XiangGuang Wang, Ning Sun, MingYun Zhang, Rui Zhao, XueHui Tan, QiuPing Xiao, Wei Li, DongMei Fu, XiLing Chen, XiuDe Li, Ling Front Plant Sci Plant Science Drought stress is a serious abiotic stress source that affects the growth and fruit quality of peach trees. However, the molecular mechanism of the NUDIX hydrolase family in peaches in response to drought stress is still unclear. Here, we isolated and identified the PpNUDX8 (Prupe.5G062300.1) gene from the peach NUDIX hydrolase family, and found that PpNUDX8 has a typical NUDIX hydrolase domain. In this study, we performed 15% PEG6000 drought treatment on peach seedlings, and qRT–PCR analysis showed that 15% PEG6000 induced the transcription level of PpNUDX8. Overexpression of PpNUDX8 reduced the tolerance of calli to 4% PEG6000 treatment. Compared with wild-type apple calli, PpNUDX8 transgenic apple calli had a lower fresh weight and higher MDA content. After 15% PEG6000 drought treatment, PpNUDX8 transgenic tobacco had a greater degree of wilting and shorter primary roots than Under control conditions. The chlorophyll, soluble protein, and proline contents in the transgenic tobacco decreased, and the MDA content and relative conductivity increased. At the same time, PpNUDX8 negatively regulated ABA signal transduction and reduced the transcriptional expression of stress response genes. In addition, PpNUDX8 was not sensitive to ABA, overexpression of PpNUDX8 reduced the expression of the ABA synthesis-related gene NCED6 and increases the expression of the ABA decomposition-related gene CYP1 in tobacco, which in turn leads to a decrease in the ABA content in tobacco. In addition, Under control conditions, overexpression of PpNUDX8 destroyed the homeostasis of NAD and reduced nicotinamide adenine dinucleotide (NADH) in tobacco. After 15% PEG6000 drought treatment, the changes in NAD and NADH in PpNUDX8 transgenic tobacco were more severe than those in WT tobacco. In addition, PpNUDX8 also interacted with PpSnRk1γ (Prupe.6G323700.1). Frontiers Media S.A. 2022-02-16 /pmc/articles/PMC8888663/ /pubmed/35251068 http://dx.doi.org/10.3389/fpls.2021.831883 Text en Copyright © 2022 He, Zhang, Wen, Meng, Wang, Sun, Zhang, Zhao, Tan, Xiao, Li, Fu, Chen and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
He, HuaJie
Zhang, YuZheng
Wen, BinBin
Meng, XiangGuang
Wang, Ning
Sun, MingYun
Zhang, Rui
Zhao, XueHui
Tan, QiuPing
Xiao, Wei
Li, DongMei
Fu, XiLing
Chen, XiuDe
Li, Ling
PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress
title PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress
title_full PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress
title_fullStr PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress
title_full_unstemmed PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress
title_short PpNUDX8, a Peach NUDIX Hydrolase, Plays a Negative Regulator in Response to Drought Stress
title_sort ppnudx8, a peach nudix hydrolase, plays a negative regulator in response to drought stress
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8888663/
https://www.ncbi.nlm.nih.gov/pubmed/35251068
http://dx.doi.org/10.3389/fpls.2021.831883
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