|Table of Contents|

Relationship Between Ultraweak Luminescence and Reactive Oxygen Under  Salt Stress of Sedum Plants

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2018年10
Page:
82-87
Research Field:
Publishing date:

Info

Title:
Relationship Between Ultraweak Luminescence and Reactive Oxygen Under  Salt Stress of Sedum Plants
Author(s):
BAI Yang1YAN Yutong1GUO Jinli1LIANG Shuang1SHAO Changfen2
(1.College of Agronomy,Inner Mongolia Agricultural University,Hohhot,Inner Mongolia 010019;2.Chongqing Vocational Institute of Tourism,Chongqing 409000)
Keywords:
Sedum hybridumsalts tressultraweak luminescencereactive oxygen
PACS:
-
DOI:
10.11937/bfyy.20173121
Abstract:
Sedum hybridum was used as test material.Salt stress was carried out by hydroponics.The relationship between UWL and the change of reactive oxygen under salt stress and its treatments of hydrogen peroxide (H2O2) and sodium benzoate(C6H5CO2Na) was studied.The results showed that the process of salt treatment with reactive oxygen regulation and NaCl treatment.In the process,salt treatment with H2O2 and NaCl made the accumulation of reactive oxygen level rise,was higher than that of control and NaCl treatment control.Salt stress with sodium benzoate alleviated the accumulation and rising of reactive oxygen level and was lower than the control.UWL was significantly and negatively correlated with MDA,O?[TX-*4]2.Above results indicated that the process of salt treatment with reactive oxygen regulation and NaCl treatment,UWL didn′t rise with the accumulation of reactive oxygen species,but a downward trend.Reactive oxygen was possible that reactive oxygen species could be one of the sources of UWL.

References:

 

[1]POPP F A.Biophotonemmission[J].Experientia,1988,44(7):543-544.

[2]GURVISCH A G,GRABJE S,SALKIND S.Die natur des spezifischen erregers der zellteilung[J].Dev Genes Evol,1923,100:11-40.

[3]王畅,蒋礼林,王乐新,等.奶牛血清微弱发光的分析与应用研究[J].江苏农业科学,2013,41(2):187-189.

[4]林桂玉,黄在范,张翠华,等.菊花花芽分化期超微弱发光及生理代谢的变化[J].园艺学报,2008,35(12):1819-1824.

[5]李群,田茜,贾文斌,等.生物超弱发光特性在种质资源保存中的应用研究[J].种子科技,2016,34(1):34-37.

[6]胡献明,潘建伟.铝胁迫诱导大麦根尖细胞超微弱发光的变化[J].浙江大学学报(农业与生命科学版),2002,28(4):383-386.

[7]侯仙慧,廖祥儒,李颖,等.苋菜种子萌发过程的超微弱发光及其机理研究[J].种子,2004,23(7):24-27.

[8]刘红梅,廖祥儒,吴立峰,等.热休克对小麦未成熟种子萌发、生物发光和抗氧化酶活性的影响[J].食品与生物技术学报,2006,25(3):75-78.

[9]李玲.植物生理学模块实验指导[M].北京:科学出版社,2009:83.

[10]陈建勋,王晓峰.植物生理学实验指导[M].广州:华南理工大学出版社,2002.

[11]李合生.植物生理生化实验原理和技术[M].北京:高等教育出版社,2004.

[12]PARIDA A K,DAS A B.Salt tolerance and salinity effects on plants:A review[J].Ecotoxicology and Environmental Safety,2005,60(3):324-349.

[13]陈培琴,郁松林,詹新妮,等.植物在高温胁迫下的生理研究进展[J].中国农学通报,2006,22(5);223-227.

[14]付振书,赵世杰,孟庆伟,等.高温强光下耐热性不同的两个甘蓝品种幼苗光合作用差异的研究[J].园艺学报,2005,32(1):25-29.

[15]汪炳良,徐敏,史庆华,等.高温胁迫对早熟花椰菜叶片抗氧化系统和叶绿素及其荧光参数的影响[J].中国农业科学,2004,37(8):1245-1250.

[16]张新华,杨洪强,李富军,等.杏花开放过程中超弱发光和ATP及活性氧含量的变化[J].植物生理与分子生物学学报,2004,30(1):41-44.

[17]张菊平,张兴志,巩振辉.超微弱发光在蔬莱研究中的应用[J].中国农学通报,2006:22(1):220-222.

[18]接玉玲,赵海洲,张伟,等.甜菜碱对干旱胁迫下湖北海堂超微弱发光及抗氧化能力的影响[J].应用生态学报,2006,17(12):2394-2398.

[19]张新华,杨洪强.水分胁迫下苹果幼苗与幼树的超微弱发光[C].中国植物生理学会第九次全国会议论文摘要汇编,2004.

[20]郭金丽,朱冠宇,刘艳,等.草莓果实采后衰老过程中超微弱发光的变化及与活性氧的关系[J].北方园艺,2016(11):1-4.

[21]郭金丽,刘欢,梁爽,等.活性氧调控下草莓果实衰老过程中活性氧与超微弱发光的关系[J].果树学报,2017,34(3):363-369.

[22]梁爽,白杨,闫宇彤,等.干旱胁迫下德景天叶片超微弱发光与活性氧的关系[J].安徽农业大学学报,2017,44(4):695-701.

[23]张新华,李富军,申琳,等.超弱发光技术在植物逆境生理研究中的应用[J].植物生理学通讯,2009,45(9):931-935.

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Last Update: 2018-06-11