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Tytuł pozycji:

Extremely high boron tolerance in Puccinellia distans (Jacq.) Parl. related to root boron exclusion and a well-regulated antioxidant system.

Tytuł:
Extremely high boron tolerance in Puccinellia distans (Jacq.) Parl. related to root boron exclusion and a well-regulated antioxidant system.
Autorzy:
Hamurcu M
Hakki EE
Demiral Sert T
Özdemir C
Minareci E
Avsaroglu ZZ
Gezgin S
Ali Kayis S
Bell RW
Źródło:
Zeitschrift fur Naturforschung. C, Journal of biosciences [Z Naturforsch C J Biosci] 2016; Vol. 71 (7-8), pp. 273-85.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Publication: Berlin : De Gruyter
Original Publication: Tübingen : Verlag der Zeitschrift für Naturforschung, 1986-
MeSH Terms:
Boron/*metabolism
Plant Leaves/*physiology
Plant Roots/*physiology
Plant Shoots/*physiology
Poaceae/*physiology
Adaptation, Physiological ; Antioxidants/metabolism ; Ascorbate Peroxidases/metabolism ; Biological Transport ; Catalase/metabolism ; Glutathione Reductase/metabolism ; Hydrogen Peroxide/metabolism ; Lipid Peroxidation ; Nitrogen/metabolism ; Peroxidase/metabolism ; Plant Leaves/metabolism ; Plant Roots/metabolism ; Plant Shoots/metabolism ; Poaceae/metabolism ; Reactive Oxygen Species/metabolism ; Soil/chemistry ; Superoxide Dismutase/metabolism ; Time Factors
Substance Nomenclature:
0 (Antioxidants)
0 (Reactive Oxygen Species)
0 (Soil)
BBX060AN9V (Hydrogen Peroxide)
EC 1.11.1.11 (Ascorbate Peroxidases)
EC 1.11.1.6 (Catalase)
EC 1.11.1.7 (Peroxidase)
EC 1.15.1.1 (Superoxide Dismutase)
EC 1.8.1.7 (Glutathione Reductase)
N762921K75 (Nitrogen)
N9E3X5056Q (Boron)
Entry Date(s):
Date Created: 20160630 Date Completed: 20170113 Latest Revision: 20191021
Update Code:
20240104
DOI:
10.1515/znc-2015-0226
PMID:
27356235
Czasopismo naukowe
Recent studies indicate an extremely high level of tolerance to boron (B) toxicity in Puccinellia distans (Jacq.) Parl. but the mechanistic basis is not known. Puccinellia distans was exposed to B concentrations of up to 1000 mg B L-1 and root B uptake, growth parameters, B and N contents, H2O2 accumulation and ·OH-scavenging activity were measured. Antioxidant enzyme activities including superoxide dismutase (SOD), ascorbate peroxidase, catalase, peroxidase and glutathione reductase, and lipid peroxidation products were determined. B appears to be actively excluded from roots. Excess B supply caused structural deformations in roots and leaves, H2O2 accumulation and simultaneous up-regulation of the antioxidative system, which prevented lipid peroxidation even at the highest B concentrations. Thus, P. distans has an efficient root B-exclusion capability and, in addition, B tolerance in shoots is achieved by a well-regulated antioxidant defense system.

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