Antiviral activity of Eucheuma cottonii to control Pepper yellow leaf curl virus

##plugins.themes.bootstrap3.article.main##

I GEDE RAI MAYA TEMAJA
DEWA GEDE WIRYANGGA SELANGGA
I PUTU SUDIARTA
LISTIHANI LISTIHANI

Abstract

Abstract. Temaja IGRM, Selangga DGW, Sudiarta IP, Listhiani L. 2024. Antiviral activity of Eucheuma cottonii to control Pepper yellow leaf curl virus. Biodiversitas 25: 1615-1622. The chili pepper plant in Bali is often infected with yellow curl symptoms caused by Pepper yellow leaf curl Indonesia virus (PYLCIV). The virus is always present in the field and no control measure has been found effective to suppress the PYLCIV infection. Control efforts using macroalgae extract have been frequently used and are able to suppress plant virus infection, but no report on its effectiveness in suppressing PYLCIV infection. This research aimed to analyze the effect of Eucheuma cottonii Weber Bosse macroalgae extract in suppressing PYLCIV infection on chili pepper plants in Bali. The observed parameters were symptom changes, disease incidence and severity, virus confirmation by PCR, and phytochemical analysis. Chili pepper plants infected by PYLCIV before E. cottonii application showed moderate to severe symptoms, but after E. cottonii application plants turned symptomless or showed light symptoms. The PYLCIV disease incidence in chili pepper Seret and Pelita8 cultivars before application was 100%, and after application ranged from 45-55%. The PYLCIV disease severity in chili pepper Seret and Pelita 8 cultivars before application ranged between 68-72%, and after application ranged between 25-34%. PYLCV on chili pepper Seret and Pelita 8 cultivar that were treated with E. cottonii produced lighter DNA band compared to positive control (C+). Major compounds found in E. cottonii extract were propanoic acid, ethyl ester; n-propyl acetate; sec-Butyl acetate; Toluene; Bicyclo [4.2.0] octa-1, 3, 5- triene; and styrene. The E. cottonii extract was able to suppress the PYLCIV infection on chili pepper plants.

##plugins.themes.bootstrap3.article.details##

References
Barbosa M, Valentão P, Andrade PB. 2014. Bioactive compounds from macroalgae in the new millennium: implications for neurodegenerative diseases. Mar Drugs12:4934-4972. DOI: 10.3390/md12094934.
Besednova NN, Andryukov BG, Zaporozhets TS, Kryzhanovsky SP, Fedyanina LN, Kuznetsova TA, Zvyagintseva TN, Shchelkanov MY. 2021. Antiviral effects of polyphenols from marine algae. Biomedicines 9 (2): 200. DOI: 10.3390/biomedicines9020200.
Bhattacharyya R, Das TK, Sudhishri S, Dudwal B, Sharma AR, Bhatia A, Singh G. Conservation agriculture effects on soil organic carbon accumulation and crop productivity under a rice–wheat cropping system in the western Indo-gangetic plains. Eur J Agron 70: 11-21. DOI: 10.1016/j.eja.2015.06.006.
Cania D, Nova B, Runifah T, Hidayati R, Anwar A, Jamsar J. 2021. Molecular diversity of Pepper yellow leaf curl virus (PepYLCV) infecting Capsicum annuum in West Sumatra. IOP Conf Ser: Earth Environ Sci 741: 012038. DOI: 10.1088/1755-1315/741/1/012038.
Chintkuntlawar PS, Pramanik A, Chatterjee H. 2016. Biology and physical measurements of whitefly, Bemisia tabaci (Gennadius) on chilli in West Bengal, India. Int J Agric Sci 8:2063–2065.
Chojnacka K, Skrzypczak D, Izydorczyk G, Mikula K, Szopa D, Witek-Krowiak A. 2021. Antiviral properties of polyphenols from plants. Foods 10 (10): 2277. DOI: 10.3390/foods10102277.
Cruz SL, Rivera-García MT, Woodward JJ. 2014. Review of toluene action: clinical evidence, animal studies and molecular targets. J Drug Alcohol Res 3: 235840. DOI: 10.4303/jdar/235840.
Denaro M, Smeriglio A, Barreca D, De Francesco C, Occhiuto C, Milano G, Trombetta D. 2020. Antiviral activity of plants and their isolated bioactive compounds: An update. Phytother Res 34 (4): 742-768. DOI: 10.1002/ptr.6575.
Fadhila C, Lai A, Vo T, Ho PT. 2020. The threat of seed-transmissible pepper yellow leaf curl Indonesia virus in chili pepper. Microbial Pathogenesis 143: 104132. DOI: 10.1016/j.micpath.2020.104132.
Gadzekpo I, Akhiwu BA, Nyarko RA. 2020. The Effect of intercropping cabbage-cowpea on insects population, diversity and interactions. Sci J Biol & Life Sci 1(4): 1-5. DOI: 10.33552/SJBLS.2020.01.000516.
Hentati F, Tounsi L, Djomdi D, Pierre G, Delattre C, Ursu AV, Fendri I, Abdelkafi S, Michaud P. 2020. Bioactive polysaccharides from seaweeds.Molecules 25(14):3152.DOI: 10.3390/molecules25143152.
Hutasoit RT, Jihad M, Listihani L, Selangga DGW. 2023. The relationship between vector insect populations, natural enemies, and disease incidence of tungro virus during wet and dry seasons. Biodiversitas 24: 4001-4007. DOI: 10.13057/biodiv/d240737.
Inoue-Nagata AK, Lima MF, Gilbertson RL. 2016. A review of geminivirus (begomovirus) diseases in vegetables and other crops in Brazil: current status and approaches for management. Horticultura Brasileira 34: 008-018. DOI: 10.1590/S0102-053620160000100002.
KalitnikAA, Byankina Barabanova AO, Nagorskaya VP, Reunov AV,GlazunovVP, Soloveva TF. 2013. Low molecular weight derivativesof different carrageenan types and their antiviral activity. J Appl Phycol 25:65-72. DOI: 10.1007/s10811-012-9839-8.
Krapp S, Schuy C, Greiner E, Stephan I, Alberter B, Funk C, Marschall M, Wege C, Bailer SM, Kleinow T. 2017. Begomoviral movement protein effects in human and plant cells: towards new potential interaction partners. Viruses 9 (11): 334. DOI: 10.3390/v9110334.
Li Y, Qu C, Yan X, Sun X, Yin Z, Zhao H. 2022. Effect of feeding stage and density of whiteflies on subsequent aphid performance on tobacco plants. Agronomy 12 (5): 1025. DOI: 10.3390/agronomy12051025.
Listihani L, Ariati PEP, Yuniti IGAD, Selangga DGW. 2022a. The brown planthopper (Nilaparvata lugens) attack and its genetic diversity on rice in Bali, Indonesia. Biodiversitas 23(9): 4696-4704. DOI: 10.13057/biodiv/d230936.
Listihani L, Ariati PEP, Yuniti IGAD, Wijaya LGAS, Yuliadhi KA, Selangga DGW, Wirya GNAS, Sudiarta IP, Sutrawati M, Triwidodo H. 2023a. Relationship study between the brown planthopper population and the intensity of Rice ragged stunt virus and Rice grassy stunt virus, as well as the inoculum sources. Int J Agric Technol 19 (3): 1055-1068.
Listihani L, Damayanti TA, Hidayat SH, Wiyono S. 2019. Molecular characterization of begomovirus on cucumber in Java. Indonesian J Plant Protec 23 (2): 197-204. DOI: 10.22146/jpti.41402.
Listihani L, Pandawani NP, Damayanti TA, Sutrawati M, Selangga DGW, Yuliadhi KA, Phabiola TA, Wirya GNAS. 2022b. Distribution and molecular characterization of Squash mosaic virus on cucumber in Gianyar, Bali. J Trop Plant Pests Dis 22 (1): 48-54. DOI: 10.23960/jhptt.12248-54.
Listihani L, Yuniti IGAD, Ariati PEP, Pandawani NP, Selangga DGW, Temaja IGRM, Wirya GNAS, Sudiarta IP. 2023b. Beneficial interaction between rice stunt virus and its insect vector Nilaparvata lugens Stal based on life table. Biodiversitas 24: 4690-4698. DOI: 10.13057/biodiv/d240851.
Listihani L, Yuniti IGAD, Lestari PFK, Ariati PEP. 2022c. First report of Sweet potato leaf curl virus (SPLCV) on Ipomoea batatas in Bali, Indonesia. Indian Phytopathol 75: 595–598. DOI: 10.1007/s42360-022-00489-6.
Listihani L, Yuniti IGAD, Sapanca PLY, Pandawani NP, Selangga DGW. 2023c. The antiviral potential of macroalgae in suppressing Sweet potato leaf curl virus (SPLCV) infection in sweet potatoes. Biodiversitas 24 (7): 4079-4086. DOI: 10.13057/biodiv/d240746.
Naalden D, van Kleeff PJM, Dangol S, Mastop M, Corkill R, Hogenhout SA, Kant MR, Schuurink RC. 2021. Spotlight on the roles of whitefly effectors in insect–plant interactions. Front Plant Sci 12:661141. DOI: 10.3389/fpls.2021.661141.
Nowak MG, Skwarecki AJ, Milewska MJ. 2021. Amino acid based antimicrobial agents – synthesis and properties. ChemMedChem 1: 3513-3544. DOI: 10.1002/cmdc.202100503.
Prajapati VD, Maheriya PM, Jani GK, Solanki HK. 2014. Carrageenan: a natural seaweed polysaccharide and its applications. Carbohydr Polym 105:97-112. DOI: 10.1016/j.carbpol.2014.01.067.
Presidential Regulation. 2020. Presidential Regulation Number 59 of 2020 concerning Amendments to Presidential Regulation Number 71 of 2015 concerning Determination and Storage of Basic Necessities and Important Goods. Central government, Indonesia.
Priwiratama H, Hidayat SH, Widodo W. 2013. Effect of four isolates of plant growth-promoting rhizobacteriaand virus inoculation timeon intensity of pepper yellow leaf curl disease. Indonesian Phytopathol J 8 (1): 1-8. DOI: 10.14692/jfi.8.1.1.
Said, ASC, Riad N, Zahi MR, Sabour S, Akkal S, Zam W, Touafek O, El Hattab M. 2022. Screening of chemical composition, antimicrobial and antioxidant activities of essential oil and volatile fraction from olive mill wastewater. Chemosensors 10: 491. DOI: 10.3390/ chemosensors10110491.
Santosa SY. 2017. Compound Class and Phytochemical Content of Antiviral Macroalgae as Antivirus for Cucumber mosaic virus (CMV). [Undergraduate Thesis]. IPB University, Bogor. [Indonesian]
Selangga DGW, Hidayat SH, Susila AD, Wiyono S. 2019. The effect of silica (SiO2) to the severity of yellow leaf curl disease on chili pepper. Indonesian J Plant Protec 23 (1): 54–60. DOI: 10.22146/jpti.38951.
Selangga DGW, Listihani L, Temaja IGRM, Wirya GNAS, Sudiarta IP, Yuliadhi KA. 2023. Determinants of symptom variation of Pepper yellow leaf curl Indonesia virus in bell pepper and its spread by Bemisia tabaci. Biodiversitas 24 (2): 869-877. DOI: 10.13057/biodiv/d240224.
Selangga DGW, Listihani L. 2021. Molecular identification of Pepper yellow leaf curl Indonesia virus on chili pepper in Nusa Penida island. J Trop Plant Pests Dis 21 (2): 97-102. DOI: 10.23960/jhptt.22197-102.
Selangga DGW, Listihani L. 2022. Squash leaf curl virus: species of begomovirus as the cause of butternut squash yield losses in Indonesia. Hayati J Biosci 29 (6): 806-813. DOI:10.4308/hjb.29.6.806-813.
Selangga DGW, Temaja IGRM, Wirya GNAS, Sudiarta IP, Listihani L. 2022a. First report of Papaya ringspot virus-watermelon strain on melon (Cucumis melo L.) in Bali, Indonesia. Indian Phytopathol 75: 911–914. DOI: 10.1007/s42360-022-00519-3.
Selangga DGW, Wiyono S, Susila AD, Hidayat SH. 2022b. Distribution and identification of Pepper yellow leaf curl Indonesia virus infecting chili pepper in Bali Island. Indonesian Phytopathol J 17 (6): 217-224. DOI: 10.14692/jfi.17.6.217-224.
Subagyo VNO, Hidayat P. 2014. Life table of the silverleaf whitefly, Bemisia tabaci (Gennadius) (Hemiptera: Aleyrodidae) on chili pepper and goat weed at temperatures 25 °C and 29 °C. Indonesian Entomol J 11: 11-18. DOI: 10.5994/jei.11.1.11.
Temaja IGRM, Selangga DGW, Phabiola TA, Khalimi K, Listihani L. 2022. Relationship between viruliferous Bemisia tabaci population and disease incidence of Pepper yellow leaf curl Indonesia virus in chili pepper. Biodiversitas 23: 5360-5366. DOI: 10.13057/biodiv/d231046.
Tian M, Wei Y, Zhang S, Liu T. 2017. Suitability of Bemisia tabaci (Hemiptera: Aleyrodidae) biotype-B and Myzus persicae (Hemiptera: Aphididae) as prey for the ladybird beetle, Serangium japonicum (Coleoptera: Coccinellidae). Eur J Entomol 114: 603-608. DOI: 10.14411/eje.2017.073.
Triwidodo H, Listihani. 2020. High impact of PGPR on biostatistic of Aphis craccivora (Hemiptera: Aphididae) on yardlong bean. Biodiversitas 21: 4016-4021. DOI: 10.13057/biodiv/d210912.
VanDoorn A, de Vries M, Kant MR, Schuurink RC. 2015. Whiteflies glycosylate salicylic acid and secrete the conjugate via their honeydew. J Chem Ecol 41 (1): 52-8. DOI: 10.1007/s10886-014-0543-9.
Wahyuni Y, Ballester AR, Tikunov Y, de Vos RC, Pelgrom KT, Maharijaya A, Sudarmonowati E, Bino RJ, Bovy AG. 2013. Metabolomics and molecular marker analysis to explore pepper (Capsicum sp.) biodiversity. Metabolomics 9 (1): 130-144. DOI: 10.1007/s11306-012-0432-6.
Wang X, Broch OJ, Forbord S, Handa A, Skjermo J, Reitan KI, Vadstein O, Olsen Y. 2014. Assimilation of inorganic nutrients from salmon (Salmo salar) farming by the macroalgae (Saccharina latissima) in an exposed coastal environment: implications for integrated multi-trophic aquaculture. J Appl Phycol 26: 1869–1878. DOI: 10.1007/s10811-013-0230-1.
Wu H, Liu M, Kang B, Liu L, Hong N, Peng B, Gu Q. 2022. AC5 protein encoded by Squash leaf curl China virus is an RNA silencing suppressor and a virulence determinant. Front Microbiol 13:980147. DOI: 10.3389/fmicb.2022.980147.
Wu Y, Fei M, Qiu R, Liu W, Qiu J. 2019. A Review on styrene substitutes in thermosets and their composites. Polymers 11 (11): 1815. DOI: 10.3390/polym11111815.
Yang QY, Ding B, Zhou XP. 2017. Geminiviruses and their application in biotechnology. J Integr Agric 16 (12): 2761-2771. DOI: 10.1016/S2095-3119(17)61702-7.
Yazdizadeh SN, Jamei R, Heidari R. 2013. Antioxidant activities of two sweet pepper Capsicum annuum L. varieties phenolic extracts and the effects of thermal treatment. Avicenna J Phytomed 3 (1): 25-34.

Most read articles by the same author(s)

<< < 1 2