Effect of Calcium Salts on Salinity Stress on Morphology …
315
Maclean JL, Dawe DC, Hardy B et al (2002) Rice Almanac III Edition, 3rd edn. CABI Publishing,
Walligford, Oxon, p 253
Miller GL (1972) Use of DNS reagent for determination of reducing sugar. Anal Chem 31:426–428
Mishra NP, Mishra RK, Singhal GS (1995) Changes in the activities of anti-oxidant enzymes during
exposure of intact wheat leaves to strong visual light at different temperatures in the prescence
of protein synthesis inhibitors. Plant Physiol 102:903–910
Nakano Y, Asada K (1981) Hydrogen peroxide is scavenged by ascorbate peroxidase in spinach
chloroplasts. Plant Cell Physiol 22(5):867–880
Ornami E Nand Hammes PS (2006) Ameliorative effects of calcium ongrowth and mineral uptake
of salt-stressed amaranth. S Afr J Plant Soil 23(3):197–202
Parida AK, Das AB (2005) Salt tolerance and salinity effects on plants: a review. Ecotoxicol Environ
Saf 60:324–349
Popova LP, Stoinova ZG, Maslenkova LT (1995) Involvement of abscisic acid in photosynthetic
process in Hordeum vulgare L. during salinity stress. J Plant Growth Regul 14(4):211–218
Qadir M, Schubert S, Ghafoor A, Murtaza G (2001) Amelioration strategies for sodic soil: a review.
Land Degrad Dev 12:375–386
Rahman A, Nahar K, Hasanuzzaman M et al (2016) Calcium supplementation improves Na + /K +
ratio, antioxidant defense and glyoxalase systems in salt-stressed rice seedlings. Front Plant Sci
7(609):1–16
Sahi C, Singh A, Kumar K et al (2006) Salt stress response in rice: Genetics, molecular biology
and comparative genomics. Func Integr Genomics 6(4):263–284
Schaedle M, Bassham JM (1977) Chloroplast glutathione reductase. Plant Physio 59:1011–1012
Shim IS, Momose Y, Yamamoto A et al (2003) Inhibition of catalase activity by oxidative stress
and its relationship to salicylic acid accumulation in plants. Plant Growth Regul 39(3):285–292
Tahjib UA, Roy PR, Sohag AAM, Afrin S, Rady MM, M. Hossain A (2018) Exogenous calcium
supplementation improves salinity tolerance In Brri Dhan28; A salt-susceptible high-yielding
Oryza sativa Cultivar. J Crop Sci Biotech 21(4):383–394
315
Maclean JL, Dawe DC, Hardy B et al (2002) Rice Almanac III Edition, 3rd edn. CABI Publishing,
Walligford, Oxon, p 253
Miller GL (1972) Use of DNS reagent for determination of reducing sugar. Anal Chem 31:426–428
Mishra NP, Mishra RK, Singhal GS (1995) Changes in the activities of anti-oxidant enzymes during
exposure of intact wheat leaves to strong visual light at different temperatures in the prescence
of protein synthesis inhibitors. Plant Physiol 102:903–910
Nakano Y, Asada K (1981) Hydrogen peroxide is scavenged by ascorbate peroxidase in spinach
chloroplasts. Plant Cell Physiol 22(5):867–880
Ornami E Nand Hammes PS (2006) Ameliorative effects of calcium ongrowth and mineral uptake
of salt-stressed amaranth. S Afr J Plant Soil 23(3):197–202
Parida AK, Das AB (2005) Salt tolerance and salinity effects on plants: a review. Ecotoxicol Environ
Saf 60:324–349
Popova LP, Stoinova ZG, Maslenkova LT (1995) Involvement of abscisic acid in photosynthetic
process in Hordeum vulgare L. during salinity stress. J Plant Growth Regul 14(4):211–218
Qadir M, Schubert S, Ghafoor A, Murtaza G (2001) Amelioration strategies for sodic soil: a review.
Land Degrad Dev 12:375–386
Rahman A, Nahar K, Hasanuzzaman M et al (2016) Calcium supplementation improves Na + /K +
ratio, antioxidant defense and glyoxalase systems in salt-stressed rice seedlings. Front Plant Sci
7(609):1–16
Sahi C, Singh A, Kumar K et al (2006) Salt stress response in rice: Genetics, molecular biology
and comparative genomics. Func Integr Genomics 6(4):263–284
Schaedle M, Bassham JM (1977) Chloroplast glutathione reductase. Plant Physio 59:1011–1012
Shim IS, Momose Y, Yamamoto A et al (2003) Inhibition of catalase activity by oxidative stress
and its relationship to salicylic acid accumulation in plants. Plant Growth Regul 39(3):285–292
Tahjib UA, Roy PR, Sohag AAM, Afrin S, Rady MM, M. Hossain A (2018) Exogenous calcium
supplementation improves salinity tolerance In Brri Dhan28; A salt-susceptible high-yielding
Oryza sativa Cultivar. J Crop Sci Biotech 21(4):383–394
