Yıl: 2023 Cilt: 11 Sayı: 2 Sayfa Aralığı: 258 - 263 Metin Dili: İngilizce DOI: 10.24925/turjaf.v11i2.258-263.5530 İndeks Tarihi: 17-05-2023

Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress

Öz:
As a result of climate change and the ozone layer spoilage, harmful rays of the sun such as UV reach the world more and harm agricultural production. To be protected from the harmful effects of UV, not only human beings, but all living organisms have developed different characteristics. In recent years, pigments with radiation absorbing and antioxidant properties have been used against UV damages. In this study, the effect of carotenoid pigments obtained from bacteria and fungi on the lettuce plant (Lettuce Yedikule 5701) was investigated due to its high antioxidant and UV protection properties. Pigment solutions partially purified from microorganisms were sprayed onto the plants. While an increase was detected in the amounts of hydrogen peroxide (H2O2) and lipid peroxidation (LPO) in the lettuce plant with the effect of UV, a decrease was observed in these parameters when applied with pigment solutions. With the same application, microbial pigments protected the plant against the harmful effects of UV by increasing the antioxidant enzyme activities of superoxide dismutase (SOD), catalase (CAT), peroxidase (POX) and the amount of chlorophyll. As a result of this study; It has been determined that microbial pigments, which can be obtained easily and with low costs, have protection properties against the harmful effects of UV and provide the plants with properties to resist the stress.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Agarwal S, Pandey V. 2004. Antioxidant enzyme responses to NaCl stress in Cassia angustifoli. Biol Plant 48:555–560.
  • Akgül H, Mohammed FS, Kına E, Uysal İ, Sevindik M, Doğan M. 2022. Total Antioxidant and Oxidant Status and DPPH Free radical activity of Euphorbia eriophora. Turkish Journal of Agriculture-Food Science and Technology, 10(2): 272-275.
  • Akula R, Ravishankar GA. 2011. Influence of abiotic stress signals on secondary metabolites in plants. Plant signaling and behavior, 6(11): 1720-1731.
  • Avalos J, Limón MC. 2015. Biological roles of fungal carotenoids. Current Genetics, 61(3): 309-324.
  • Borić M, Danevčič T, Stopar D. 2011. Prodigiosin from Vibrio sp. DSM 14379; a new UV-protective pigment. Microbial ecology, 62(3): 528-536.
  • Coffey A, Prinsen E, Jansen MAK, Conway J. 2017. The UVB photoreceptor UVR8 mediates accumulation of UVabsorbing pigments, but not changes in plant morphology, under outdoor conditions. Plant, cell and environment, 40(10): 2250-2260.
  • Czégény G, Mátai A, Hideg É. 2016. UV-B effects on leaves— Oxidative stress and acclimation in controlled environments. Plant Science, 248: 57-63.
  • Haskirli H, Yilmaz O, Ozgur R, Uzilday B, Turkan I. 2021. Melatonin mitigates UV-B stress via regulating oxidative stress response, cellular redox and alternative electron sinks in Arabidopsis thaliana. Phytochemistry, 182: 112592.
  • Heath RL, Packer L. 1968. Photo peroxidation in isolated chloroplast I. Kinetics and stoichiometry of fatty acid peroxidation. Arch Biochem Biophys 25:189–198.
  • Jiang L, Wang Y, Olof Björn L, He JX, Li S. 2012. Sensing of UV-B radiation by plants. Plant signaling and behavior, 7(8): 999-1003.
  • Khare S, Singh NB, Singh A, Hussain I, Niharika K, Yadav V, Amist N. 2020. Plant secondary metabolites synthesis and their regulations under biotic and abiotic constraints. Journal of Plant Biology, 63(3): 203-216.
  • Kına E, Uysal İ, Mohammed FS, Doğan M, Sevindik M. 2021. In-vitro antioxidant and oxidant properties of Centaurea rigida. Turkish Journal of Agriculture-Food Science and Technology, 9(10): 1905-1907.
  • Krupodorova T, Barshteyn V, Sevindik M. 2022. Antioxidant and antimicrobial potentials of mycelial extracts of Hohenbuehelia myxotricha grown in different liquid culture media.
  • BioTechnologia. Journal of Biotechnology Computational Biology and Bionanotechnology, 103(1):19-28.
  • Mohammed FS, Kına E, Uysal İ, Mencik K, Dogan M, Pehlivan M, Sevindik M. 2022. Antioxidant and Antimicrobial Activities of Ethanol Extract of Lepidium spinosum. Turkish Journal of Agriculture-Food Science and Technology, 10(6): 1116-1119.
  • Mohana DC, Thippeswamy S, Abhishek RU. 2013. Antioxidant, antibacterial, and ultraviolet-protective properties of carotenoids isolated from Micrococcus spp. Radiation Protection and Environment, 36(4): 168.
  • Morales-Oyervides L, Oliveira J, Sousa-Gallagher M, Méndez- Zavala A, Montañez JC. 2017. Assessment of the Dyeing Properties of the Pigments Produced by Talaromyces spp. Journal of Fungi, 3(3): 38.
  • Nakabayashi R, Yonekura Sakakibara K, Urano K, Suzuki M, Yamada Y, Nishizawa, T, Saito, K. 2014. Enhancement of oxidative and drought tolerance in Arabidopsis by overaccumulation of antioxidant flavonoids. The Plant Journal, 77(3): 367-379.
  • Narendrababu BN, Shishupala S. 2017. Spectrophotometric detection of pigments from Aspergillus and Penicillium isolates. J. Appl. Biol. Biotechnol, 5: 53-58.
  • Ozgur R, Uzilday B, Yalcinkaya T, Akyol TY, Yildirim H, Turkan I. 2021. Differential responses of the scavenging systems for reactive oxygen species (ROS) and reactive carbonyl species (RCS) to UV-B irradiation in Arabidopsis thaliana and its high altitude perennial relative Arabis alpina. Photochemical and Photobiological Sciences, 1-13.
  • Pailliè-Jiménez ME, Stincone P, Brandelli A. 2020. Natural pigments of microbial origin. Frontiers in Sustainable Food Systems, 4. 160.
  • Pehlivan M, Mohammed FS, Şabik AE, Kına E, Dogan M, Yumrutaş Ö, Sevindik M. 2021. Some Biological activities of ethanol extract of Marrubium globosum. Turkish Journal of Agriculture-Food Science and Technology, 9(6): 1129-1132.
  • Poorniammal R, Balachandar D, Gunasekaran S. 2018. Evaluation of antioxidant property of some fungal pigments by DNA protection assay. Annals of Phytomedicine, 7(1): 106-111.
  • Poorniammal R, Prabhu S, Dufossé L, Kannan J. 2021. Safety Evaluation of Fungal Pigments for Food Applications. Journal of Fungi, 7(9): 692.
  • Pramono NA, Sofyan FI, Purwandani BA, Ghaisyani O. 2020. Application of ESP32 as a Media for Learning Ozone Damage in the Form of IoT-Based Ultraviolet Index Readers. Journal of Disruptive Learning Innovation (JODLI), 2(1): 22- 29.
  • Qiu ZB, Li JT, Zhang YJ, Bi ZZ, Wei HF. 2011. Microwave pretreatment can enhance tolerance of wheat seedlings to CdCl2 stress. Ecotoxicol Environ Saf 74:820–825.
  • Reis-Mansur MCP, Cardoso-Rurr JS, Silva JVMA, de Souza GR, da Silva Cardoso V, Mansoldo FRP, Vermelho AB. 2019. Carotenoids from UV-resistant Antarctic Microbacterium sp. LEMMJ01. Scientific reports, 9(1): 1-14.
  • Robson TM, Klem K, Urban O, Jansen MA. 2015. Reinterpreting plant morphological responses to UV B radiation. Plant, cell and environment, 38(5): 856-866.
  • Rodríguez-Calzada T, Qian M, Strid Å, Neugart S, Schreiner M, Torres-Pacheco I, Guevara-González RG. 2019. Effect of UV-B radiation on morphology, phenolic compound production, gene expression, and subsequent drought stress responses in chili pepper (Capsicum annuum L.). Plant Physiology and Biochemistry, 134: 94-102.
  • Sarghein SH, Carapetian J, Khara J. 2011. The effects of UV radiation on some structural and ultrastructural parameters in pepper (Capsicum longum A. DC.). Turkish journal of Biology, 35(1): 69-77.
  • Sevindik M, Akgul H, Pehlivan M, Selamoglu Z. 2017. Determination of therapeutic potential of Mentha longifolia ssp. longifolia. Fresen Environ Bull, 26(7): 4757-4763.
  • Shatila F, Yusef H, Holail H. 2013. Pigment production by Exiguobacterium aurantiacum FH, a novel Lebanese strain. Int. J. Curr. Microbiol. App. Sci, 2(12): 176-191.
  • Tiryaki D, Aydın İ, Atıcı Ö. 2019. Psychrotolerant bacteria isolated from the leaf apoplast of cold-adapted wild plants improve the cold resistance of bean (Phaseolus vulgaris L.) under low temperature. Cryobiology, 86: 111-119.
  • Unal O, Eraslan EC, Uysal I, Mohammed FS, Sevindik M, Akgul H. 2022. Biological activities and phenolic contents of Rumex scutatus collected from Türkiye. Fresenius Environmental Bulletin, 31(7): 7341-7346.
  • Uysal İ, Mohammed FS, Şabik AE, Kına E, Sevindik M. 2021. Antioxidant and Oxidant status of medicinal plant Echium italicum collected from different regions. Turkish Journal of Agriculture-Food Science and Technology, 9(10): 1902- 1904.
  • Venil CK, Velmurugan P, Dufossé L, Renuka Devi P, Veera Ravi A. 2020. Fungal pigments: Potential coloring compounds for wide ranging applications in textile dyeing. Journal of fungi, 6(2): 68.
  • Zhang JX, Kirkham MB. 1994. Drought stress-induced changes in activities of superoxide dismutase, catalase and peroxidase in wheat species. Plant Cell Physiol 35:785–791.
APA Gulmez O, Tiryaki D, barış ö (2023). Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. , 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
Chicago Gulmez Ozlem,Tiryaki Deniz,barış özlem Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. (2023): 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
MLA Gulmez Ozlem,Tiryaki Deniz,barış özlem Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. , 2023, ss.258 - 263. 10.24925/turjaf.v11i2.258-263.5530
AMA Gulmez O,Tiryaki D,barış ö Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. . 2023; 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
Vancouver Gulmez O,Tiryaki D,barış ö Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. . 2023; 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
IEEE Gulmez O,Tiryaki D,barış ö "Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress." , ss.258 - 263, 2023. 10.24925/turjaf.v11i2.258-263.5530
ISNAD Gulmez, Ozlem vd. "Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress". (2023), 258-263. https://doi.org/10.24925/turjaf.v11i2.258-263.5530
APA Gulmez O, Tiryaki D, barış ö (2023). Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. Türk Tarım - Gıda Bilim ve Teknoloji dergisi, 11(2), 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
Chicago Gulmez Ozlem,Tiryaki Deniz,barış özlem Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. Türk Tarım - Gıda Bilim ve Teknoloji dergisi 11, no.2 (2023): 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
MLA Gulmez Ozlem,Tiryaki Deniz,barış özlem Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. Türk Tarım - Gıda Bilim ve Teknoloji dergisi, vol.11, no.2, 2023, ss.258 - 263. 10.24925/turjaf.v11i2.258-263.5530
AMA Gulmez O,Tiryaki D,barış ö Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. Türk Tarım - Gıda Bilim ve Teknoloji dergisi. 2023; 11(2): 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
Vancouver Gulmez O,Tiryaki D,barış ö Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress. Türk Tarım - Gıda Bilim ve Teknoloji dergisi. 2023; 11(2): 258 - 263. 10.24925/turjaf.v11i2.258-263.5530
IEEE Gulmez O,Tiryaki D,barış ö "Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress." Türk Tarım - Gıda Bilim ve Teknoloji dergisi, 11, ss.258 - 263, 2023. 10.24925/turjaf.v11i2.258-263.5530
ISNAD Gulmez, Ozlem vd. "Investigation of The Protective Properties of Bacteria (Agrococcus citrus) and Fungus (Fusarium oxysporium) Pigments ın Lettuce Plant Exposed to UV Stress". Türk Tarım - Gıda Bilim ve Teknoloji dergisi 11/2 (2023), 258-263. https://doi.org/10.24925/turjaf.v11i2.258-263.5530