Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits

Chlorophyll fluorescence (ChlF) has been used to understand photosynthesis and its response to climate change, particularly with satellite-based data. However, it remains unclear how the ChlF ratio and photosynthesis are linked at the leaf level under drought stress. Here, we examined the link betwe...

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Main Authors: Jie Zhuang, Yonglin Wang, Yonggang Chi, Lei Zhou, Jijing Chen, Wen Zhou, Jun Song, Ning Zhao, Jianxi Ding
Format: Article
Language:English
Published: PeerJ Inc. 2020-09-01
Series:PeerJ
Subjects:
gs
Online Access:https://peerj.com/articles/10046.pdf
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spelling doaj-1db864ae17c149ae998152900718619d2020-11-25T03:30:30ZengPeerJ Inc.PeerJ2167-83592020-09-018e1004610.7717/peerj.10046Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traitsJie Zhuang0Yonglin Wang1Yonggang Chi2Lei Zhou3Jijing Chen4Wen Zhou5Jun Song6Ning Zhao7Jianxi Ding8College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaCollege of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, ChinaChlorophyll fluorescence (ChlF) has been used to understand photosynthesis and its response to climate change, particularly with satellite-based data. However, it remains unclear how the ChlF ratio and photosynthesis are linked at the leaf level under drought stress. Here, we examined the link between ChlF ratio and photosynthesis at the leaf level by measuring photosynthetic traits, such as net CO2 assimilation rate (An), the maximum carboxylation rate of Rubisco (Vcmax), the maximum rate of electron transport (Jmax), stomatal conductance (gs) and total chlorophyll content (Chlt). The ChlF ratio of the leaf level such as maximum quantum efficiency of PSII (Fv/Fm) is based on fluorescence kinetics. ChlF intensity ratio (LD685/LD740) based on spectrum analysis was obtained. We found that a combination of the stomatal limitation, non-stomatal limitation, and Chlt regulated leaf photosynthesis under drought stress, while Jmax and Chlt governed the ChlF ratio. A significant link between the ChlF ratio and An was found under drought stress while no significant correlation in the control, which indicated that drought stress strengthens the link between the ChlF ratio and photosynthetic traits. These results suggest that the ChlF ratio can be a powerful tool to track photosynthetic traits of terrestrial ecosystems under drought stress.https://peerj.com/articles/10046.pdfVcmaxJmaxgsChlorophyll fluorescence spectrumRemote sensingChlorophyll content
collection DOAJ
language English
format Article
sources DOAJ
author Jie Zhuang
Yonglin Wang
Yonggang Chi
Lei Zhou
Jijing Chen
Wen Zhou
Jun Song
Ning Zhao
Jianxi Ding
spellingShingle Jie Zhuang
Yonglin Wang
Yonggang Chi
Lei Zhou
Jijing Chen
Wen Zhou
Jun Song
Ning Zhao
Jianxi Ding
Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits
PeerJ
Vcmax
Jmax
gs
Chlorophyll fluorescence spectrum
Remote sensing
Chlorophyll content
author_facet Jie Zhuang
Yonglin Wang
Yonggang Chi
Lei Zhou
Jijing Chen
Wen Zhou
Jun Song
Ning Zhao
Jianxi Ding
author_sort Jie Zhuang
title Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits
title_short Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits
title_full Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits
title_fullStr Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits
title_full_unstemmed Drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits
title_sort drought stress strengthens the link between chlorophyll fluorescence parameters and photosynthetic traits
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2020-09-01
description Chlorophyll fluorescence (ChlF) has been used to understand photosynthesis and its response to climate change, particularly with satellite-based data. However, it remains unclear how the ChlF ratio and photosynthesis are linked at the leaf level under drought stress. Here, we examined the link between ChlF ratio and photosynthesis at the leaf level by measuring photosynthetic traits, such as net CO2 assimilation rate (An), the maximum carboxylation rate of Rubisco (Vcmax), the maximum rate of electron transport (Jmax), stomatal conductance (gs) and total chlorophyll content (Chlt). The ChlF ratio of the leaf level such as maximum quantum efficiency of PSII (Fv/Fm) is based on fluorescence kinetics. ChlF intensity ratio (LD685/LD740) based on spectrum analysis was obtained. We found that a combination of the stomatal limitation, non-stomatal limitation, and Chlt regulated leaf photosynthesis under drought stress, while Jmax and Chlt governed the ChlF ratio. A significant link between the ChlF ratio and An was found under drought stress while no significant correlation in the control, which indicated that drought stress strengthens the link between the ChlF ratio and photosynthetic traits. These results suggest that the ChlF ratio can be a powerful tool to track photosynthetic traits of terrestrial ecosystems under drought stress.
topic Vcmax
Jmax
gs
Chlorophyll fluorescence spectrum
Remote sensing
Chlorophyll content
url https://peerj.com/articles/10046.pdf
work_keys_str_mv AT jiezhuang droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT yonglinwang droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT yonggangchi droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT leizhou droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT jijingchen droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT wenzhou droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT junsong droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT ningzhao droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
AT jianxiding droughtstressstrengthensthelinkbetweenchlorophyllfluorescenceparametersandphotosynthetictraits
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