Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.

Radix Isatidis (Isatis indigotica Fort.) is one of the most important traditional Chinese medicine plants. However, there is no suitable herbicide used for weed control in Radix Isatidis field during postemergence stage. To explore the safety of sulfonylurea herbicide nicosulfuron on Radix Isatidis...

Full description

Bibliographic Details
Main Authors: Xiangyang Yuan, Liguang Zhang, Na Ning, Yinyuan Wen, Shuqi Dong, Meiqiang Yin, Meijun Guo, Binqiang Wang, Lei Feng, Pingyi Guo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4148306?pdf=render
id doaj-f0c2eb247d934443b1519b32797e38d2
record_format Article
spelling doaj-f0c2eb247d934443b1519b32797e38d22020-11-25T01:45:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0198e10531010.1371/journal.pone.0105310Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.Xiangyang YuanLiguang ZhangNa NingYinyuan WenShuqi DongMeiqiang YinMeijun GuoBinqiang WangLei FengPingyi GuoRadix Isatidis (Isatis indigotica Fort.) is one of the most important traditional Chinese medicine plants. However, there is no suitable herbicide used for weed control in Radix Isatidis field during postemergence stage. To explore the safety of sulfonylurea herbicide nicosulfuron on Radix Isatidis (Isatis indigotica Fort.) seedlings and the photosynthetic physiological response of the plant to the herbicide, biological mass, leaf area, photosynthetic pigment content, photosynthetic rate, chlorophyll fluorescence characteristics, and P700 parameters of Radix Isatidis seedlings were analyzed 10 d after nicosulfuron treatment at 5th leaf stage in this greenhouse research. The results showed that biological mass, total chlorophyll, chlorophyll a, and carotenoids content, photosynthetic rate, stomatal conductance, PS II maximum quantum yield, PS II effective quantum yield, PS II electron transport rate, photochemical quenching, maximal P700 change, photochemical quantum yield of PS I, and PS I electron transport rate decreased with increasing herbicide concentrations, whereas initial fluorescence, quantum yield of non-regulated energy dissipation in PS II and quantum yield of non-photochemical energy dissipation due to acceptor side limitation in PS I increased. It suggests that nicosulfuron ≥1 mg L-1 causes the damage of chloroplast, PS II and PS I structure. Electron transport limitations in PS I receptor side, and blocked dark reaction process may be the main cause of the significantly inhibited growth and decreased photosynthetic rate of Radix Isatidis seedlings.http://europepmc.org/articles/PMC4148306?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xiangyang Yuan
Liguang Zhang
Na Ning
Yinyuan Wen
Shuqi Dong
Meiqiang Yin
Meijun Guo
Binqiang Wang
Lei Feng
Pingyi Guo
spellingShingle Xiangyang Yuan
Liguang Zhang
Na Ning
Yinyuan Wen
Shuqi Dong
Meiqiang Yin
Meijun Guo
Binqiang Wang
Lei Feng
Pingyi Guo
Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.
PLoS ONE
author_facet Xiangyang Yuan
Liguang Zhang
Na Ning
Yinyuan Wen
Shuqi Dong
Meiqiang Yin
Meijun Guo
Binqiang Wang
Lei Feng
Pingyi Guo
author_sort Xiangyang Yuan
title Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.
title_short Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.
title_full Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.
title_fullStr Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.
title_full_unstemmed Photosynthetic physiological response of Radix Isatidis (Isatis indigotica Fort.) seedlings to nicosulfuron.
title_sort photosynthetic physiological response of radix isatidis (isatis indigotica fort.) seedlings to nicosulfuron.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Radix Isatidis (Isatis indigotica Fort.) is one of the most important traditional Chinese medicine plants. However, there is no suitable herbicide used for weed control in Radix Isatidis field during postemergence stage. To explore the safety of sulfonylurea herbicide nicosulfuron on Radix Isatidis (Isatis indigotica Fort.) seedlings and the photosynthetic physiological response of the plant to the herbicide, biological mass, leaf area, photosynthetic pigment content, photosynthetic rate, chlorophyll fluorescence characteristics, and P700 parameters of Radix Isatidis seedlings were analyzed 10 d after nicosulfuron treatment at 5th leaf stage in this greenhouse research. The results showed that biological mass, total chlorophyll, chlorophyll a, and carotenoids content, photosynthetic rate, stomatal conductance, PS II maximum quantum yield, PS II effective quantum yield, PS II electron transport rate, photochemical quenching, maximal P700 change, photochemical quantum yield of PS I, and PS I electron transport rate decreased with increasing herbicide concentrations, whereas initial fluorescence, quantum yield of non-regulated energy dissipation in PS II and quantum yield of non-photochemical energy dissipation due to acceptor side limitation in PS I increased. It suggests that nicosulfuron ≥1 mg L-1 causes the damage of chloroplast, PS II and PS I structure. Electron transport limitations in PS I receptor side, and blocked dark reaction process may be the main cause of the significantly inhibited growth and decreased photosynthetic rate of Radix Isatidis seedlings.
url http://europepmc.org/articles/PMC4148306?pdf=render
work_keys_str_mv AT xiangyangyuan photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT liguangzhang photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT naning photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT yinyuanwen photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT shuqidong photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT meiqiangyin photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT meijunguo photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT binqiangwang photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT leifeng photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
AT pingyiguo photosyntheticphysiologicalresponseofradixisatidisisatisindigoticafortseedlingstonicosulfuron
_version_ 1725022294983573504