scholarly journals Identification of physiological and biochemical markers for salt (NaCl) stress in the seedlings of mungbean [Vigna radiata (L.) Wilczek] genotypes

2019 ◽  
Vol 26 (5) ◽  
pp. 1053-1060 ◽  
Author(s):  
Hesham F. Alharby ◽  
Hassan S. Al-Zahrani ◽  
Khalid Rehman Hakeem ◽  
Muhammad Iqbal
Biologia ◽  
2021 ◽  
Author(s):  
Niharika ◽  
Narsingh Bahadur Singh ◽  
Shubhra Khare ◽  
Ajey Singh ◽  
Vijaya Yadav ◽  
...  

Planta ◽  
2015 ◽  
Vol 242 (4) ◽  
pp. 829-846 ◽  
Author(s):  
José-Ramón Acosta-Motos ◽  
Pedro Diaz-Vivancos ◽  
Sara Álvarez ◽  
Nieves Fernández-García ◽  
María Jesús Sanchez-Blanco ◽  
...  

Plants ◽  
2021 ◽  
Vol 10 (11) ◽  
pp. 2544
Author(s):  
Sami Hannachi ◽  
Stefaan Werbrouck ◽  
Insaf Bahrini ◽  
Abdelmuhsin Abdelgadir ◽  
Hira Affan Siddiqui

Previously, an efficient regeneration protocol was established and applied to regenerate plants from calli lines that could grow on eggplant leaf explants after a stepwise in vitro selection for tolerance to salt stress. Plants were regenerated from calli lines that could tolerate up to 120 mM NaCl. For further in vitro and in vivo evaluation, four plants with a higher number of leaves and longer roots were selected from the 32 plants tested in vitro. The aim of this study was to confirm the stability of salt tolerance in the progeny of these four mutants (‘R18’, ‘R19’, ‘R23’ and ‘R30’). After three years of in vivo culture, we evaluated the impact of NaCl stress on agronomic, physiological and biochemical parameters compared to the parental control (‘P’). The regenerated and control plants were assessed under in vitro and in vivo conditions and were subjected to 0, 40, 80 and 160 mM of NaCl. Our results show significant variation in salinity tolerance among regenerated and control plants, indicating the superiority of four regenerants (‘R18’, ‘R19’, ‘R23’ and ‘R30’) when compared to the parental line (‘P’). In vitro germination kinetics and young seedling growth divided the lines into a sensitive and a tolerant group. ‘P’ tolerate only moderate salt stress, up to 40 mM NaCl, while the tolerance level of ‘R18’, ‘R19’, ‘R23’ and ‘R30’ was up to 80 mM NaCl. The quantum yield of PSII (ΦPSII) declined significantly in ‘P’ under salt stress. The photochemical quenching was reduced while nonphotochemical quenching rose in ‘P’ under salt stress. Interestingly, the regenerants (‘R18’, ‘R19’, ‘R23’ and ‘R30’) exhibited high apparent salt tolerance by maintaining quite stable Chl fluorescence parameters. Rising NaCl concentration led to a substantial increase in foliar proline, malondialdehyde and soluble carbohydrates accumulation in ‘P’. On the contrary, ‘R18’, ‘R19’, ‘R23’ and ‘R30’ exhibited a decline in soluble carbohydrates and a significant enhancement in starch under salinity conditions. The water status reflected by midday leaf water potential (ψl) and leaf osmotic potential (ψπ) was significantly affected in ‘P’ and was maintained a stable level in ‘R18’, ‘R19’, ‘R23’ and ‘R30’ under salt stress. The increase in foliar Na+ and Cl− content was more accentuated in parental plants than in regenerated plants. The leaf K+, Ca2+ and Mg2+ content reduction was more aggravated under salt stress in ‘P’. Under increased salt concentration, ‘R18’, ‘R19’, ‘R23’ and ‘R30’ associate lower foliar Na+ content with a higher plant tolerance index (PTI), thus maintaining a normal growth, while foliar Na+ accumulation was more pronounced in ‘P’, revealing their failure in maintaining normal growth under salinity stress. ‘R18’, ‘R19’, ‘R23’ and ‘R30’ showed an obvious salt tolerance by maintaining significantly high chlorophyll content. In ‘R18’, ‘R19’, ‘R23’ and ‘R30’, the enzyme scavenging machinery was more performant in the roots compared to the leaves. Salt stress led to a significant augmentation of catalase, ascorbate peroxidase and guaiacol peroxidase activities in the roots of ‘R18’, ‘R19’, ‘R23’ and ‘R30’. In contrast, enzyme activities were less enhanced in ‘P’, indicating lower efficiency to cope with oxidative stress than in ‘R18’, ‘R19’, ‘R23’ and ‘R30’. ACC deaminase activity was significantly higher in ‘R18’, ‘R19’, ‘R23’ and ‘R30’ than in ‘P’. The present study suggests that regenerated plants ‘R18’, ‘R19’, ‘R23’ and ‘R30’ showed an evident stability in tolerating salinity, which shows their potential to be adopted as interesting selected mutants, providing the desired salt tolerance trait in eggplant.


1996 ◽  
Vol 74 (1) ◽  
pp. 135-139 ◽  
Author(s):  
Anupa Singh

Experiments were conducted under field conditions to assess selected growth, physiological, and biochemical responses of three leguminous plants (Vigna radiata L. (Wilczek) cv. PS-16, Phaseolus mungo L. (Hepper) cv. Mash-48, and Glycine max L. (Merr.) cv. Punjab 1) to enhanced UV-B radiation equivalent to 15% ozone depletion at 25°N latitude. Enhanced UV-B radiation adversely affected growth characteristics, chlorophyll and carotenoid contents, photosynthetic rate, ascorbic acid content, and catalase activity, whereas a reverse trend was found for phenol content and peroxidase activity in all three species. However, the magnitudes of increases or decreases were different among species, and there was no direct relationship between growth and biochemical responses across species. Keywords: chlorophyll, Glycine max, net photosynthesis, Phaseolus mungo, plant growth, Vigna radiata.


Weed Science ◽  
2015 ◽  
Vol 63 (SP1) ◽  
pp. 23-63 ◽  
Author(s):  
Franck E. Dayan ◽  
Daniel K. Owens ◽  
Natalia Corniani ◽  
Ferdinando Marcos Lima Silva ◽  
Susan B. Watson ◽  
...  

Herbicides inhibit biochemical and physiological processes or both with lethal consequences. The target sites of these small molecules are usually enzymes involved in primary metabolic pathways or proteins carrying out essential physiological functions. Herbicides tend to be highly specific for their respective target sites and have served as tools to study these physiological and biochemical processes in plants (Dayan et al. 2010b).


2014 ◽  
Vol 38 (1) ◽  
pp. 51-61 ◽  
Author(s):  
Rizwan Rasheed ◽  
Muhammad Arslan Ashraf ◽  
Iqbal Hussain ◽  
Abida Parveen ◽  
Rizwan Alam ◽  
...  

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