Nitric oxide alleviates arsenic-induced toxic effects in ridged Luffa seedlings

Singh, VP; Srivastava, PK; Prasad, SM

HERO ID

2064213

Reference Type

Journal Article

Year

2013

Language

English

PMID

23917073

HERO ID 2064213
In Press No
Year 2013
Title Nitric oxide alleviates arsenic-induced toxic effects in ridged Luffa seedlings
Authors Singh, VP; Srivastava, PK; Prasad, SM
Journal Plant Physiology and Biochemistry
Volume 71
Page Numbers 155-163
Abstract Hydroponic experiments were conducted to investigate whether exogenous addition of nitric oxide (NO) as sodium nitroprusside (SNP) alleviates arsenic (As) toxicity in Luffa acutangula (L.) Roxb. seedlings. Arsenic (5 and 50 μM) declined growth of Luffa seedlings which was accompanied by significant accumulation of As. SNP (100 μM) protected Luffa seedlings against As toxicity as it declined As accumulation significantly. The photosynthetic pigments and chlorophyll fluorescence parameters such as Fv/Fm, Fv/F0, Fm/F0 and qP were decreased while NPQ was raised by As. However, the toxic effects of As on photosynthesis were significantly ameliorated by SNP. The oxidative stress markers such as superoxide radical, hydrogen peroxide and malondialdehyde (lipid peroxidation) contents were enhanced by As, however, these oxidative indices were diminished significantly in the presence of SNP. As treatment stimulated the activities of SOD and CAT while the activities of APX and GST, and AsA content and AsA/DHA ratio were decreased. Upon SNP addition, along with further rise in SOD and CAT activity, APX and GST activity, and levels of AsA and AsA/DHA ratio were restored considerably. Overall results revealed that significant accumulation of As suppressed growth, photosynthesis, APX and GST activities and decreased AsA content, hence led to the oxidative stress. However, the addition of SNP protected seedlings against As stress by regulating As accumulation, oxidative stress and antioxidant defense system.
Doi 10.1016/j.plaphy.2013.07.003
Pmid 23917073
Wosid WOS:000325836600017
Is Certified Translation No
Dupe Override No
Comments Journal: Plant physiology and biochemistry : PPB / Societe francaise de physiologie vegetale ISSN: 1873-2690
Is Public Yes
Language Text English
Keyword Antioxidant system; Arsenic stress; Chlorophyll fluorescence; Growth; Nitric oxide; Oxidative stress