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Sharma N, Abrams SR, Waterer DR (2005) Uptake, movement,
activity, and persistence of an abscisic acid analog (80 acety-
lene ABA methyl ester) in marigold and tomato. J Plant
Growth Regul 24: 28-35.
Serraj R (2002) Response of symbiotic nitrogen fixation to
drought and salinity stresses. Phys Mol Biol 8: 77-86.
Serraj R, Fleurat-Lessard P, Benoit J, Drevon JJ (1995)
Structural changes in the inner-cortex cells of soybean root-
nodules are induced by short-term exposure to high salt or
oxygen concentrations. Plant Cell Environ 18: 455-462.
Serraj RH, Vasquez-Diaz G, Hernandez, Drevon JJ (2001)
Genotypic difference in response of nitrogenase activity
(C 2 H 2 reduction) to salinity and oxygen in common bean.
Agronomie 21: 645-650.
Shaharoona B, Arshad M, Zahir ZA (2006) Effect of plant
growth promoting rhizobacteria containing ACC-deaminase
on maize ( Zea mays L.) growth under axenic conditions and
on nodulation in mung bean ( Vigna radiata L.). Lett Appl
Microbiol 42: 155-159.
Shamseldin A, Werner D (2005) High salt and high pH toler-
ance of new isolated Rhizobium etli strains from Egyptian
soils. Curr Microb 50: 11-16.
Singh AK, Singh RA, Sharma SG (2001) Salt stress induced
changes in certain organic metabolites during seedling
growth of chickpea. Legume Res 24: 11-15.
Sindhu SS, Dadarwal KR (2001) Chitinolytic and cellulolytic
Pseudomonas sp. antagonistic to fungal pathogens enhances
nodulation by Mesorhizobium sp. cicer in chickpea. Microb Res
156: 353-358.
Soltani A, Khodarahmpour Z, Jafari AA, Nakhjavan S (2012)
Selection of alfalfa ( Medicago sativa L.) cultivars for salt stress
tolerance using germination indices. Afr J Biotech 11:
7899-7905.
Sridevi M, Mallaiah KV (2007) Bioproduction of indole acetic
acid by Rhizobium strains isolated from root nodules of green
manure crop Sesbania sesban (L.) Merr. Iran J Biotech 5: 3.
Sridhar KR, Arun AB, Narula N, Deubel A, Merbech W (2005)
Patterns of sole-carbon-utilization by fast growing coastal
and dune rhizobia of the Southwest coast of India. Eng Life Sci
5: 425-430.
Son TTN, Diep CN, Giang TTM (2006) Effect of Bradyrhizobia
and phosphate solubilizing bacteria application on soybean in
rotational system in the Mekong delta. Omonrice 14: 48-57.
Srinivasan PS, Gopal KS (1977) Effect of plantofix and NAA
formulation on groundnut var TMU-7. Curr Sci 46: 119-120.
Tanimoto E (2005) Regulation of root growth by plant
hormones: Roles for auxin and gibberellin. Crit Rev Plant Sci
24: 249-265.
Tejovathi G, Khadeer MA, Anwer SY (1988) Studies on certain
enzymes in salt tolerant and sensitive genotypes of sun-
flower. Indian J Bot 11: 113-117.
Tilak KVB, Ranganayaki N, Manoharachari C (2006) Synergistic
effects of plant-growth promoting rhizobacteria and Rhizobium
on nodulation and nitrogen fixation by pigeonpea ( Cajanus cajan ).
Europ J Soil Sci 57: 67-71.
Tsavkelova EA, Cherdyntseva TA, Klimova S, Shestakov AI,
Botina SG, Netrusov AI (2007) Orchid-associated bacteria
produce indole-3-acetic acid, promote seed germination, and
increase their microbial yield in response to exogenous
auxin. Arch Micr 188: 655-664.
UNEP (2008) In dead water. Merging of climate change with
pollution, over-harvest, and infestations in the world's
fishing grounds. UNEP/GRID-Arendal, Arendal, Norway.
Available at: http://www.grida.no/_res/site/file/publications/
InDeadWater_LR.pdf [accessed 28 June 2014]
UNEP (2009) The environmental food crisis: The environment's
role in averting future food crises. A UNEP rapid response
assessment. Nellemann C, MacDevette M, Manders T, et al .
(eds). United Nations Environment Programme/GRID-
Arendal. Available at: http://www.grida.no
Upadhyay SK, Singh JS, Singh D P (2011) Exopolysaccharide-
producing plant growth-promoting rhizobacteria under
salinity condition. Pedosphere 2: 214-222.
Vadez V, Krishnamurthy L, Serraj R, et al . (2007) Large varia-
tion in salinity tolerance in chickpea is explained by differ-
ences in sensitivity at the reproductive stage. Field Crops Res
104: 123-129.
Van Hoorn JW, Katerji N, Hamdy A, Mastrorilli M (2001) Effect
of salinity on yield and nitrogen uptake of four grain legumes
and on biological nitrogen contribution from the soil. Agr
Water Man 51: 87-98.
Wei GH, Yang XY, Zhang ZX, Yang YZ, Lindstrom K (2008)
Strain Mesorhizobium sp. CCNWGX035; a stress tolerant iso-
late from Glycyrrhiza glabra displaying a wide host range of
nodulation. Pedosphere 18: 102-112.
Yang J, Kloepper JW, Ryu C-M (2009) Rhizosphere bacteria
help plants tolerate abiotic stress. Trends Plant Sci 14: 1-4.
Zafar-ul-Hye M, Ahmad M, Shahzad SM (2013) Synergistic
effect of rhizobia and plant growth promoting rhizobacteria
on the growth and nodulation of lentil seedlings under
axenic conditions. Soil Env 32: 79-86.
Zahir ZA, Munir A, Asghar HN, Shaharoona B, Arshad M
(2008) Effectiveness of rhizobacteria containing ACC deami-
nase for growth promotion of peas ( Pisum sativum ) under
drought conditions. J Micr Biot 18: 958-963.
Zahir ZA, Zafar-ul-Hye M, Sajjad S, Naveed M (2011)
Comparative effectiveness of Pseudomonas and Serratia sp.
containing ACC-deaminase for coinoculation with Rhizobium
leguminosarum to improve growth, nodulation, and yield of
lentil. Biol Fert Soils 47: 457-465.
Zahran HH (1999) Rhizobium-legume symbiosis and nitrogen
fixation under severe conditions and in an arid climate.
Microbiol Mol Biol Rev 63: 968-989.
Zahran HH, Sprent JI (1986) Effects of sodium chloride and
polyethylene glycol on root-hair infection and nodulation of
Vicia faba L. plants by Rhizobium leguminosarum . Planta 167:
303-309.
Zou N, Dort PJ, Marcar NE (1995) Interaction of salinity and
rhizobial strains on growth and N 2 fixation by Acacia ampliceps .
Soil Biol Bioch 27: 409-413.
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