Cargando…

Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings

The volatile organic compounds emitted by plants significantly impact the atmospheric environment. The impacts of drought stress on the biogenic volatile organic compound (BVOC) emissions of plants are still under debate. In this study, the effects of two drought–rehydration cycle groups with differ...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Zhiyu, Zhang, Yisheng, Zhang, Houyong, Ge, Xuan, Gu, Dasa, Liu, Xiaohuan, Bai, Jianhui, Ma, Zizhen, Tan, Yan, Zhu, Feng, Xia, Shiyong, Du, Jinhua, Tan, Yuran, Shu, Xiao, Tang, Jingchao, Sun, Yingjie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9655116/
https://www.ncbi.nlm.nih.gov/pubmed/36361409
http://dx.doi.org/10.3390/ijerph192114528
_version_ 1784829106822578176
author Han, Zhiyu
Zhang, Yisheng
Zhang, Houyong
Ge, Xuan
Gu, Dasa
Liu, Xiaohuan
Bai, Jianhui
Ma, Zizhen
Tan, Yan
Zhu, Feng
Xia, Shiyong
Du, Jinhua
Tan, Yuran
Shu, Xiao
Tang, Jingchao
Sun, Yingjie
author_facet Han, Zhiyu
Zhang, Yisheng
Zhang, Houyong
Ge, Xuan
Gu, Dasa
Liu, Xiaohuan
Bai, Jianhui
Ma, Zizhen
Tan, Yan
Zhu, Feng
Xia, Shiyong
Du, Jinhua
Tan, Yuran
Shu, Xiao
Tang, Jingchao
Sun, Yingjie
author_sort Han, Zhiyu
collection PubMed
description The volatile organic compounds emitted by plants significantly impact the atmospheric environment. The impacts of drought stress on the biogenic volatile organic compound (BVOC) emissions of plants are still under debate. In this study, the effects of two drought–rehydration cycle groups with different durations on isoprene emissions from Populus nigra (black poplar) seedlings were studied. The P. nigra seedlings were placed in a chamber that controlled the soil water content, radiation, and temperature. The daily emissions of isoprene and physiological parameters were measured. The emission rates of isoprene (F(iso)) reached the maximum on the third day (D3), increasing by 58.0% and 64.2% compared with the controlled groups, respectively, and then F(iso) significantly decreased. Photosynthesis decreased by 34.2% and 21.6% in D3 in the first and second groups, respectively. After rehydration, F(iso) and photosynthesis recovered fully in two groups. However, F(iso) showed distinct inconsistencies in two groups, and the recovery rates of F(iso) in the second drought group were slower than the recovery rates of F(iso) in the first groups. The response of BVOC emissions during the drought-rehydration cycle was classified into three phases, including stimulated, inhibited, and restored after rehydration. The emission pattern of isoprene indicated that isoprene played an important role in the response of plants to drought stress. A drought–rehydration model was constructed, which indicated the regularity of BVOC emissions in the drought–rehydration cycle. BVOC emissions were extremely sensitive to drought, especially during droughts of short duration. Parameters in computational models related to BVOC emissions of plants under drought stress should be continuously improved.
format Online
Article
Text
id pubmed-9655116
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96551162022-11-15 Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings Han, Zhiyu Zhang, Yisheng Zhang, Houyong Ge, Xuan Gu, Dasa Liu, Xiaohuan Bai, Jianhui Ma, Zizhen Tan, Yan Zhu, Feng Xia, Shiyong Du, Jinhua Tan, Yuran Shu, Xiao Tang, Jingchao Sun, Yingjie Int J Environ Res Public Health Article The volatile organic compounds emitted by plants significantly impact the atmospheric environment. The impacts of drought stress on the biogenic volatile organic compound (BVOC) emissions of plants are still under debate. In this study, the effects of two drought–rehydration cycle groups with different durations on isoprene emissions from Populus nigra (black poplar) seedlings were studied. The P. nigra seedlings were placed in a chamber that controlled the soil water content, radiation, and temperature. The daily emissions of isoprene and physiological parameters were measured. The emission rates of isoprene (F(iso)) reached the maximum on the third day (D3), increasing by 58.0% and 64.2% compared with the controlled groups, respectively, and then F(iso) significantly decreased. Photosynthesis decreased by 34.2% and 21.6% in D3 in the first and second groups, respectively. After rehydration, F(iso) and photosynthesis recovered fully in two groups. However, F(iso) showed distinct inconsistencies in two groups, and the recovery rates of F(iso) in the second drought group were slower than the recovery rates of F(iso) in the first groups. The response of BVOC emissions during the drought-rehydration cycle was classified into three phases, including stimulated, inhibited, and restored after rehydration. The emission pattern of isoprene indicated that isoprene played an important role in the response of plants to drought stress. A drought–rehydration model was constructed, which indicated the regularity of BVOC emissions in the drought–rehydration cycle. BVOC emissions were extremely sensitive to drought, especially during droughts of short duration. Parameters in computational models related to BVOC emissions of plants under drought stress should be continuously improved. MDPI 2022-11-05 /pmc/articles/PMC9655116/ /pubmed/36361409 http://dx.doi.org/10.3390/ijerph192114528 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
Han, Zhiyu
Zhang, Yisheng
Zhang, Houyong
Ge, Xuan
Gu, Dasa
Liu, Xiaohuan
Bai, Jianhui
Ma, Zizhen
Tan, Yan
Zhu, Feng
Xia, Shiyong
Du, Jinhua
Tan, Yuran
Shu, Xiao
Tang, Jingchao
Sun, Yingjie
Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings
title Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings
title_full Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings
title_fullStr Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings
title_full_unstemmed Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings
title_short Impacts of Drought and Rehydration Cycles on Isoprene Emissions in Populus nigra Seedlings
title_sort impacts of drought and rehydration cycles on isoprene emissions in populus nigra seedlings
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9655116/
https://www.ncbi.nlm.nih.gov/pubmed/36361409
http://dx.doi.org/10.3390/ijerph192114528
work_keys_str_mv AT hanzhiyu impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT zhangyisheng impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT zhanghouyong impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT gexuan impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT gudasa impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT liuxiaohuan impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT baijianhui impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT mazizhen impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT tanyan impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT zhufeng impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT xiashiyong impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT dujinhua impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT tanyuran impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT shuxiao impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT tangjingchao impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings
AT sunyingjie impactsofdroughtandrehydrationcyclesonisopreneemissionsinpopulusnigraseedlings