African Journal of
Biotechnology

  • Abbreviation: Afr. J. Biotechnol.
  • Language: English
  • ISSN: 1684-5315
  • DOI: 10.5897/AJB
  • Start Year: 2002
  • Published Articles: 12487

Full Length Research Paper

Response of catalase to drought in barley (Hordeum vulgare L.) seedlings and its purification

Md. Motiar Rohman
  • Md. Motiar Rohman
  • Molecular Breeding Laboratory, Plant Breeding Division, Bangladesh Agricultural Research Institute, Gazipur-1701, Bangladesh.
  • Google Scholar
Sadia Sabrina Alam
  • Sadia Sabrina Alam
  • Molecular Breeding Laboratory, Plant Breeding Division, Bangladesh Agricultural Research Institute, Gazipur-1701, Bangladesh.
  • Google Scholar
Afsana Hoque Akhi
  • Afsana Hoque Akhi
  • Molecular Breeding Laboratory, Plant Breeding Division, Bangladesh Agricultural Research Institute, Gazipur-1701, Bangladesh.
  • Google Scholar
Ferdousi Begum
  • Ferdousi Begum
  • Molecular Breeding Laboratory, Plant Breeding Division, Bangladesh Agricultural Research Institute, Gazipur-1701, Bangladesh.
  • Google Scholar
Mohammad Amiruzzaman
  • Mohammad Amiruzzaman
  • Molecular Breeding Laboratory, Plant Breeding Division, Bangladesh Agricultural Research Institute, Gazipur-1701, Bangladesh.
  • Google Scholar


  •  Received: 30 May 2020
  •  Accepted: 13 July 2020
  •  Published: 31 July 2020

References

Apel K, Hirt H (2004). Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Annual Review of Plant Biology 55:373-399.
Crossref

 

Azevedo RA, Alas RM, Smith RJ, Lea PA (1998). Response of antioxidant enzymes to transfer from elevated carbon dioxide to air and ozone fumigation, in leaves and roots of wild-type and catalase-deficient mutant of barley. Physiologia Plantarum 104(2):280-92.
Crossref

 
 

Azpilicueta CE, Benavides MP, Tomaro ML, Gallego SM (2007). Mechanism of CATA3 induction by cadmium in sunflower leaves. Plant Physiology and Biochemistry 45(8):589-595.
Crossref

 
 

Badawi GH, Kawano N, Yamauchi Y, Shimada E, Sasaki R, Kubo A, Tanaka K (2004). Over‐expression of ascorbate peroxidase in tobacco chloroplasts enhances the tolerance to salt stress and water deficit. Physiologia Plantarum 121(2):231-238.
Crossref

 
 

Baik BK, Newman CW, Newman RK (2011). Barley: Production, Improvement, and Uses, edited by Ullrich SE. Wiley-Blackwell, Oxford, UK pp.3-14.

 
 

Balfagón D, Zandalinas SI, Baliño P, Muriach M, Gómez-Cadenas A (2018). Involvement of ascorbate peroxidase and heat shock proteins on citrus tolerance to combined conditions of drought and high temperatures. Plant Physiology and Biochemistry 127:194-199.
Crossref

 
 

Beulah K, Ramana T (2013). Purification, properties and kinetic studies of catalase from leaves of Phyllanthus reticulates. International Journal of Pharmacy and Biological Sciences 3(3):940-948.

 
 

Bradford MM (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochemistry 72(1-2):248-54.
Crossref

 
 

Cheng L, Wang Y, He Q, Li H, Zhang X, Zhang F (2016). Comparative proteomics illustrates the complexity of drought resistance mechanisms in two wheat (Triticum aestivum L.) cultivars under dehydration and rehydration. BMC Plant Biology 16(1):88.
Crossref

 
 

Choudhury S, Panda P, Sahoo L, Panda SK (2013). Reactive oxygen species signaling in plants under abiotic stress. Plant Signaling and Behavior 8(4):e23681.
Crossref

 
 

FAOSTAT (2018). FAOSTAT. Available at, http://www.fao.org/faostat/en/#compare Date 27.05.2020

 
 

Filiz E, Ozyigit II, Saracoglu IA, Uras ME, Sen U, Yalcin B (2019). Abiotic stress-induced regulation of antioxidant genes in different Arabidopsis ecotypes: Microarray data evaluation. Biotechnology and Biotechnological Equipment 33(1):128-143.
Crossref

 
 

Foyer CH, Noctor G (2012). Ascorbate and glutathione: The heart of the redox hub. Plant Physiology 155(1):2-18.
Crossref

 
 

Frugoli JA, Zhong HH, Nuccio ML, McCourt P, McPeek MA, Thomas TL, McClung CR (1996). Catalase is encoded by a multigene family in Arabidopsis thaliana (L.). Plant Physiology 112(1):327-336.
Crossref

 
 

Garg N, Manchanda G (2009). ROS generation in plants: Boon or bane? Plant Biosystems 143(1):81-96.
Crossref

 
 

Gill SS, Tujeta N (2010). Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants. Plant Physiology and Biochemistry 48(12):909-930.
Crossref

 
 

Guo Z, Ou W, Lu SY, Zhong Q (2006). Differential responses of antioxidative system to chilling and drought in four rice cultivars differing in sensitivity. Plant Physiology and Biochemistry 44(11-12):828-836.
Crossref

 
 

Halliwell B (2006). Reactive species and antioxidants, redox biology is fundamental theme of aerobic life. Plant Physiology 141(2):312-322.
Crossref

 
 

Jeong MS, Kim SH (2004). Aluminium stress in the roots of naked barley. Journal of Plant Biology 47(2):65.
Crossref

 
 

Jiang M, Zhang J (2002). Water stress‐induced abscisic acid accumulation triggers the increased generation of reactive oxygen species and up‐regulates the activities of antioxidant enzymes in maize leaves. Journal of Experimental Botany 53(379):2401-2410.
Crossref

 
 

Jung S (2004). Variation in antioxidant metabolism of young and mature leaves of Arabidopsis thaliana subjected to drought. Plant Science 166(2):459-466.
Crossref

 
 

Koussevitzky S, Suzuki N, Huntington S, Armijo L, Sha W, Cortes D, Shulaev V, Mittler R (2008). Ascorbate peroxidase 1 plays a key role in the response of Arabidopsis thaliana to stress combination. Journal of Biological Chemistry 283(49):34197-34203.
Crossref

 
 

Laemmli UK (1970). Cleavage of structural proteins during the assembly of head of bacteriophage T4. Nature 227:680-685.
Crossref

 
 

Lei Y, Yin C, Li C (2006). Differences in some morphological, physiological, and biochemical responses to drought stress in two contrasting populations of Populus przewalskii. Physiologia Plantarum 127(2):182-191.
Crossref

 
 

Lima ALS, DaMatta FM, Pinheiro HA, Totola MR, Loureiro ME (2002). Photochemical responses and oxidative stress in two clones of Coffea canephora under water deficit conditions. Environmental and Experimental Botany 47(3):239-247.
Crossref

 
 

Mallik S, Nayak M, Sahu BB, Panigrahi A.K, Shaw BP (2011). Response of antioxidant enzymes to high NaCl concentration in different salt-tolerant plants. Biologia Plantarum 55(1):191-195.
Crossref

 
 

Mhamdi A, Queval G, Chaouch S, Vanderauwera S, Van Breusegem F, Noctor G (2010). Catalase function in plants: a focus on Arabidopsis mutants as stress-mimic models. Journal of Experimental Botany 61(15):4197-4220.
Crossref

 
 

Mohammad B, Mostafa V, Mohammad MV (2015). Catalase and peroxidase antioxidant enzyme activities in barley cultivars seedling under salt stress. Bulletin of Environment, Pharmacology and Life Science 4:29-35.

 
 

Nevo E, Fu YB, Pavlicek T, Khalifa S, Tavasi M, Beiles A (2012). Evolution of wild cereals during 28 years of global warming in Israel. Proceedings of the National Academy of Sciences 109(9):3412-3415.
Crossref

 
 

Polidoros NA, Scandalios JG (1999). Role of hydrogen peroxide and different classes of antioxidants in the regulation of catalase and glutathione S-transferase gene expression in maize (Zea mays L.). Physiologia Plantarum 106(1):112-120.
Crossref

 
 

Powell N, Ji X, Ravash R, Edlington J, Dolferus R (2012). Yield stability for cereals in a changing climate. Functional Plant Biology 39(7):539-52.
Crossref

 
 

Ratnayaka HH, Molin WT, Sterling TM (2003). Physiological and antioxidant responses of cotton and spurred anoda under interference and mild drought. Journal of Experimental Botany 54(391):2293-2305.
Crossref

 
 

Rohman MM, Begum S, Talukder MZ, Akhi AH, Amiruzzaman M, Ahsan AF, Hossain Z (2016). Drought sensitive maize inbred shows more oxidative damage and higher ROS scavenging enzymes, but not glyoxalases than a tolerant one at seedling stage. Plant Omics 9(4):220.
Crossref

 
 

Rohman MM, Islam MR, Naznin T, Omy SH, Begum S, Alam SS, Amiruzzaman M, Hasanuzzaman M (2019a). Maize production under salinity and drought conditions: Oxidative stress regulation by antioxidant defense and glyoxalase systems. In Plant Abiotic Stress Tolerance. Springer, Cham, pp. 1-34.
Crossref

 
 

Rohman MM, Islam MR, Monsur MB, Amiruzzaman M, Fujita M, Hasanuzzaman M (2019b). Trehalose protects maize plants from salt stress and phosphorus deficiency. Plants 8(12):568.
Crossref

 
 

Rubio MC, González EM, Minchin FR, Webb KJ, Arrese‐Igor C, Ramos J, Becana M (2002). Effects of water stress on antioxidant enzymes of leaves and nodules of transgenic alfalfa overexpressing superoxide dismutases. Physiologia Plantarum 115(4):531-40.
Crossref

 
 

Safronov O, Kreuzwieser J, Haberer G, Alyousif MS, Schulze W, Al-Harbi N, Arab L, Ache P, Stempfl T, Kruse J, Mayer KX (2017). Detecting early signs of heat and drought stress in Phoenix dactylifera (date palm). PloS ONE 12(6):1-17.
Crossref

 
 

Salekjalali M, Haddad R, Jafari B (2012). Effects of soil water shortages on the activity of antioxidant enzymes and the contents of chlorophylls and proteins in barley. American-Eurasian Journal of Agricultural and Environmental Science 12:57-63.

 
 

Sattar SA, Islam MN (2010). Char lands of Bangladesh: Their extent, management and future research needs. Presented in a workshop on Soil Fertility, Fertilizer Management and Future Strategy held at Bangladesh Agricultural Research Council, Farmgate, Dhaka 18:1-9.

 
 

Scandalios JG (1990). Response of plant antioxidant defense genes to environmental stress. Advances in Genetics. Academic Press 28:1-41.
Crossref

 
 

Shan C, Zhang S, Ou X (2018). The roles of H2S and H2O2 in regulating AsA-GSH cycle in the leaves of wheat seedlings under drought stress. Protoplasma 255(4):1257-1262.
Crossref

 
 

Sharma I, Ahmad P (2014). Catalase: a versatile antioxidant in plants. In Oxidative Damage to Plants. Academic Press pp. 131-148.
Crossref

 
 

Sharma P, Jha AB, Dubey RS (2012). Reactive oxygen species, oxidative damage, and antioxidative defense mechanism in plants under stressful conditions. Journal of Botany 2012:1-26.
Crossref

 
 

Skadsen RW, Schulze-Lefert P, Herbst JM (1995). Molecular cloning, characterization and expression analysis of two catalase isozyme genes in barley. Plant Molecular Biology 29(5):1005-14.
Crossref

 
 

Trindade H, Karmali A, Pais MS (1988). One-step purification and properties of catalase from leaves of Zantedeschia aethiopica. Biochimie 70(12):1759-1764.
Crossref

 
 

Türkan I, Bor M, Özdemir F, Koca H (2005). Differential responses of lipid peroxidation and antioxidants in the leaves of drought-tolerant P. acutifolius Gray and drought-sensitive P. vulgaris L. subjected to polyethylene glycol mediated water stress. Plant Science 168(1):223-231.
Crossref

 
 

Wiegmann M, Maurer A, Pham A, March TJ, Al-Abdallat A, Thomas WT, Bull HJ, Shahid M, Eglinton J, Baum M, Flavell AJ (2019). Barley yield formation under abiotic stress depends on the interplay between flowering time genes and environmental cues. Scientific Reports 9(1):1-16.
Crossref

 
 

Woodbury W, Spencer AK, Stahmann MA (1971). An improved procedure using ferricyanide for detecting catalase isozymes. Analytical Biochemistry 44(1):301-305.
Crossref

 
 

Yamaguchi J, Nishimura M, Akazawa T (1984). Maturation of catalase precursor proceeds to a different extent in glyoxysomes and leaf peroxisomes of pumpkin cotyledons. Proceedings of the National Academy of Sciences 81(15):4809-13.
Crossref

 
 

Zandalinas SI, Balfagón D, Arbona V, Gómez-Cadenas A (2017). Modulation of antioxidant defense system is associated with combined drought and heat stress tolerance in citrus. Frontiers in Plant Science 8:953.
Crossref

 
 

Zhang H, Ni Z, Chen Q, Guo Z, Gao W, Su X, Qu Y (2016). Proteomic responses of drought-tolerant and drought-sensitive cotton varieties to drought stress. Molecular Genetics and Genomics 291(3):1293-1303.
Crossref

 
 

Zhang M, Fang Y, Ji Y, Jiang Z, Wang L (2013). Effects of salt stress on ion content, antioxidant enzymes and protein profile in different tissues of Broussonetia papyrifera. South African Journal of Botany 85:1-9.
Crossref

 
 

Zhou MX (2010). Genetics and improvement of barley malt quality, edited by Zhang G and Li C (Springer-Verlag Berlin Heidelberg, Berlin, Heidelberg), pp. 1-17.