Application of Trichoderma Isolate consortium in organic fertilizer for controlling shallot twisted disease

Main Article Content

Lilies Supriati
Siti Zubaidah
Adrianson Agus Djaya
Oesin Oemar
M. M. Ramadhan

Abstract

The aim of the research was to determine the effect of applying a consortium of Trichoderma spp. isolates to a type of organic fertilizer that is effective in controlling twisted disease and on the growth and yield of shallot plants. The study utilized a completely randomized design (CRD) consisting of eight treatments with four replications. The treatments examined werea= as follows: P0 = control, P1 = 5 tons per ha of chicken manure fertilizer, P2 = 5 tons per ha of chicken manure fertilizer and consortium of two Trichoderma spp. isolates, P3 = 5 tons per ha of chicken manure fertilizer and consortium of three Trichoderma spp. isolates, P4 = 5 tons per ha of chicken manure fertilizer, 20 tons per ha trichocompost, and a consortium of two Trichoderma spp. isolates, P5 = 5 tons per ha of chicken manure fertilizer, 20 tons per ha trichocompost, and consortium of three Trichoderma spp. isolates, P6 = 20 tons per ha of trichocompost and a consortium of two Trichoderma spp. isolates, and P7 = 20 tons per ha of trichocompost and a consortium of three Trichoderma spp. isolates. The results showed that the twisted disease incidence in treatment P4 was the lowest (14.52%) at 8 weeks after planting. The plant height was of 39.10 cm, with 29.8 leaves per clump at 7 WAP, and the dried bulb weight was 112.4 g per clump. In conclusion, the application of chicken manure fertilizer at a dose of 5 ton per ha, combined with 20 tons per ha of trichocompost and a consortium of two Trichoderma spp. isolates, could control twisted disease in shallot.

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Supriati, L. .; Zubaidah, S. .; Djaya, A. A. .; Oemar, O. .; Ramadhan, M. M. . Application of Trichoderma Isolate Consortium in Organic Fertilizer for Controlling Shallot Twisted Disease. J Trop Plant Pests Dis 2024, 24, 233-242.


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References

Abdullah M. 2022. Aplikasi Trichoderma sp. dalam menekan penyakit moler pada tanaman bawang merah (Allium ascalonicum L.) [Application of Trichoderma sp. in suppressing moler disease in shallot plants (Allium ascalonicum L.)]. Jurnal Penelitian Agrosamudra. 9(1): 10–18. https://doi.org/10.33059/jupas.v9i1.5412

Adhi SR & Suganda T. 2020. Potensi jamur rizosfer bawang merah dalam menekan Fusarium oxysporum f.sp. cepae, penyebab penyakit busuk umbi bawang merah [The potential of shallot rhizosphere fungi in suppressing Fusarium oxysporum f.sp. cepae, the causal agent of basal rot disease]. Jurnal Kultivasi. 19(1): 1015–1022. https://doi.org/10.24198/kultivasi.v19i1.22877

Ahmad Z, Ramadhani C, Peranginangin CD, & Fuskhah E. 2020. Pengaruh pemberian kompos tablet diperkaya mineral dan Trichoderma sp. terhadap produktivitas bawang merah (Allium ascalonicum) [Effect of mineral-enriched compost and Trichoderma sp. on growth and the production of shallots plants]. J. Agro Complex. 4(2): 143–147.

Ali A, Zeshan MA, Mehtab M, Krursheed S, Mudasir M, Abid M, Mahdi M, Rauf HA, Ameer S, Younis M, Altaf MT, & Tahir A. 2021. A comprehensive note on Trichoderma as a potential biocontrol agent against soil borne fungal pathogens: A review. Plant Prot. 5(3): 171–196. https://doi.org/10.33804/pp.005.03.3934

Bhoki M, Jeksen J, & Beja HD. 2021. Pengaruh pemberian pupuk kandang ayam terhadap pertumbuhan dan hasil tanaman sawi hijau (Brassica juncea L.) [The effect of giving chicken manure on the growth and yieldof green mustard plants (Brassica juncea L.)]. Jurnal Agro Wiralodra. 4(2): 64–68.

BPS [Central Bureau of Statistics]. 2023. Produksi Tanaman Sayuran [Vegetable Crop Production].https://www.bps.go.id/id/statistics-table/2/NjEjMg==/produksi-tanaman-sayuran.html. Accessed 28 April 2024.

BPS Kota Palangka Raya [Palangka Raya City Central Bureau of Statistics]. 2021. Produksi Tanaman Sayuran Semusim menurut Jenis Tanaman [Production of annual vegetable crops according to plant type]. https://palangkakota.bps.go.id/indicator/55/341/1/produksi-tanaman-sayuran-semusim-menurut-jenis-tanaman-2020. Accessed 16 April 2021.

BPS Provinsi Kalimantan Tengah [Central Kalimantan Central Bureau of Statistics]. 2022. Produksi Bawang Merah (Ku) [Shallot Production (Ku)].https://kalteng.bps.go.id>indicator>produksi-bawang. Accessed 1 March 2024.

Dawood, Ara N, Khan MN, Sattar S, Irfan I, Shah SQ, Said B, & Bakhtiar M. 2019. Effect of trichoderma and compost manure on the growth and yield of onion. Pure Appl. Biol. 8(1): 321–330. https://doi.org/10.19045/bspab.2018.700192

Dirjen Perlindungan Tanaman Pangan [Directorate General of Food Crops Protection]. 2018. Petunjuk Teknis Pelaporan dan Pengamatan Organisme Pengganggu Tumbuhan dan Dampak Perubahan Iklim (OPT-DPI). [Technical Instructions for Reporting and Observing Plant Pest Organisms and the Impact of Climate Change]. Kementerian Pertanian. Jakarta.

Domsch KH, Gams W, & Anderson TH. 2008. Compendium of soil fungi. Eur. J. Soil Sci. 59(5): 1007–1007. https://doi.org/10.1111/j.1365-2389.2008.01052_1.x

Firmansyah MA & Anto A. 2013. Teknologi budidaya bawang merah di lahan marjinal di luar musim [Technology for cultivating shallots on marginal lands outside the season]. Kantor Perwakilan Bank Indonesia. Palangkaraya..

Ginanjar A, Yetti H, & Yoseva S. 2016. Pemberian pupuk tricho kompos jerami jagung terhadap pertumbuhan dan produksi bawang merah (Allium ascalonicum L.) [Giving corn straw compost tricho fertilizer on the growth and production of shallots (Allium ascalonicum L.)]. JOM Faperta. 3(1): 1–11.

Hendarto K, Widagdo S, Ramadiana S & Meliana FS. 2021. Pengaruh pemberian dosis pupuk NPK dan jenis pupuk hayati terhadap pertumbuhan dan produksi tanaman bawang merah (Allium ascalonicum L.) [Effect of NPK fertilizer dosage and bio-fertilizer types on growth and yield of shallot (Allium ascalonicum L.)]. Jurnal Agrotropika. 20(2): 110–119. https://doi.org/10.23960/ja.v20i2.5086

Hikmahwati, Auliah MR, Ramlah, & Fitrianti. 2020. Identifikasi cendawan penyebab penyakit moler pada tanaman bawang merah (Allium ascalonicum L.) di Kabupaten Enrekang [Identification of the fungus that causes twisted disease in shallot plants (Allium ascalonicum L.) in Enrekang district]. Agrovital: Jurnal Ilmu Pertanian. 5(2): 83–86. https://doi.org/10.35329/agrovital.v5i2.1745

Istifadah N, Fatiyah N, Fitriatin BN, & Djaya L. 2019. Effects of dosage and application frequensi of microbial consortium mixed with animal manure on bacterial wilt and late blight diseases of potato. IOP Conf. Ser.: Earth Environ. Sci. 334: 012038 https://doi.org/10.1088/1755-1315/334/1/012038

Istikorini Y & Budiman T. 2023. Uji potensi mikrob rizosfer sebagai pengendali hayati penyebab penyakit tanaman [Potential test of rhizosphere microbes as biological controls that cause plant diseases]. Jurnal Silvikultur Tropika. 4(3): 242–249.

Jaya A, Lautt BS, Antang EM, Supriati L, & Dohong S. 2021. Effect of individual and combined application of Trichoderma sp. and vermicompost on the management of Sclerotium rolfsii and growth of chilli under peatland agro-climate conditions. JEBAS. 9(4): 445-456. https://doi.org/10.18006/2021.9(4).445.456

Juwanda M, Khotimah K, & Amin M. 2016. Peningkatan ketahanan bawang merah terhadap penyakit layu fusarium melalui induksi ketahanan dengan asam salisilat secara invitro [The improvement of shallot resistance against fusarium wilt disease trough induction resistance by salisilyc acid in-vitro]. Agrin. 20(1): 15–28.

Kalay AM, Uluputty MR, Leklioy J, Hindersah R, & Talahaturuson A. 2016. Aplikasi pupuk hayati konsorsium dan inokulan padat Trichoderma harzianum terhadap produktivitas tanaman sawi pada lahan terkontaminasi Rhizoctonia solani [Application of Trichoderma harzianum solid inokulan and biofertilizer consortium on choy sum productivity grown on Rhizoctonia solani contaminated lands]. J. Agrolodia. 5(2): 78–86. https://doi.org/10.30598/a.v5i2.185

Kementerian Pertanian [Ministry of Agriculture]. 2021. Analisis kinerja perdagangan komoditas bawang merah [Analysis of shallot trading performance]. Pusat Data dan Sistim Informasi Pertanian [Center for Agricultural Data and Information Systems]. https://www.google.com/search?client=firefox-b-e&q=analisis+kinerja+perdagangan+komoditas+bawang+merah. Accessed 28 April 2024.

Kementerian Pertanian [Ministry of Agriculture]. 2022. Statistik konsumsi angan [Statistic of food consumption]. Pusat Data dan Sistim Informasi Pertanian [Center for Agricultural Data and Information Systems]. https://satudata.pertanian.go.id/details/publikasi/407. Accessed 28 April 2024.

Muhibbudin A, Setiyowati EM, & Sektiono AW. 2021. Mechanism antagonism of Trichoderma viride against several types of pathogens and production of secondary metabolites. Agrosaintifika: Jurnal Ilmu-ilmu Pertanian. 4(1): 243–253. https://doi.org/10.32764/agrosaintifika.v4i1.2375

Puspita F, Ali M, & Supriyadi. 2020. Kompatibilitas dan daya hambat konsorsium Trichoderma spp. endofit terhadap penyakit busuk buah kakao Phytophthora palmivora [Compatibility and inhibition activity of endophytic Trichoderma spp. consortium against cacao pod rot disease Phytophthora palmivora]. J. Agrikultura. 31(2): 126–133. https://doi.org/10.24198/agrikultura.v31i2.26063

Sataral M, Nurdiansyah D, & Lamandasa FH. 2020. The effect of Trichoderma sp. on the incidence fusarium disease and production of shallot. Jurnal Online Pertanian Tropik 7(2): 192–199. https://doi.org/10.32734/jpt.v7i2.4581

Sihombing NH. 2019. Pemberian konsorsium agens hayati Trichoderma sp. dan mikoriza untuk mengendalikan busuk pangkal batang (Ganoderma sp.) pada bibit kelapa sawit di media gambut [Application of a consortium of Trichoderma sp. and mycorrhizal biological agents to control stem rot (Ganoderma sp) in oil palm seedlings in pet media]. Undergraduate Thesis. Universitas Palangka Raya. Palangka Raya.

Sinaga SF, Simanungkalit T, & Hasanah Y. 2016. Respons pertumbuhan bawang merah (Allium ascalonicum L.) terhadap pemberian sampah kota dan pupuk [Response yield of shallot (Allium ascalonicum L.) on the application urban waste compost and fertilizer]. J. Agroteknologi. 4(3): 2181–2187.

Sinaga R, Waluyo N, Arief RW & Manurung GO. 2023. Uji adaptasi beberapa varietas bawang merah (Allium cepa var. agregatum L.) pada musim hujan (off season) di lahan kering masam Lampung [Adaption test of some varities shallots (Allium ascalonicum L.) on the rain season in acid dry land, Lampung. Jurnal Penelitian Pertanian Terapan. 23(2): 419–428. http://dx.doi.org/10.25181/jppt.v23i3.2524

Sudantha IM & Suwardji S. 2021. Trichoderma biofungicides formulations on shallot growth, yield and fusarium wilt disease resistance. IOP Conf. Ser.: Earth Environ. Sci. 824: 012032. https//doi.org//10.1088/1755-1315/824/1/012032

Sujatna I, Muchtar R, & Banu LS. 2017. Pengaruh trichokompos terhadap pertumbuhan dan hasil tanaman seledri (Apium graveolens L.) pada sistem wall garden [The effect trichocompost on the growth and yield of celery plants (Apium graveolens L.) in a wall garden system]. J. Ilmiah Respati Pertanian. 8(2): 731–738.

Supriati L, Basuki, Mulyani RB, Muliansyah, & Muliana. 2019. Peranan trichokompos dan pupuk KCl dalam mengendalikan penyakit layu fusarium pada tanaman bawang merah di tanah berpasir [The role of trichocompost and KCL fertilizer to control fusarium wilt disease on onion in sandy soil]. J. Agripeat. 20(1): 19–26. https://doi.org/10.36873/agp.v20i01.21

Suryadi MI, Dirmawati SR, Nurdin M, & Ginting C. 2023. Pengaruh pemberian pupuk kompos dan pupuk hayati cair terhadap intensitas moler (Fusarium oxysforum) dan pertumbuhan bawang merah (Allium ascalonicum L.) [The effect of fertilizing compost and fertilizer liquid biodivers on moler (Fusarium oxysforum) incidence and only growth (Allium ascalonicum L.)]. J. Agrotek Tropika. 11(4): 679–685. http://dx.doi.org/10.23960/jat.v11i4.7525

Susanti D, Mulyadi, & Wiyatiningsih S. 2016. Karakterisasi isolat-isolat Fusarium oxysporum f.sp. cepae penyebab penyakit moler pada bawang merah dari daerah Nganjuk dan Probolinggo [Characterization of isolates Fusarium oxysporum f.sp. cepae moler cause shallot of diseases in the region of Nganjuk and Propolinggo]. Plumula. 5(2): 153–160.

Syarifudin R, Kalay AM, & Uruilal C. 2021. Efek pemberian pupuk hayati dan fungisida kimia terhadap serangan penyakit layu Fusarium, pertumbuhan dan hasil pada bawang merah (Allium ascalonicum L.) [Effect of biological fertilizer and chemical fungicides on fusarium wilt disease, growth and yield in shallots (Allium ascalonicum L.)]. Agrolodia. 10(2): 69–79. https://doi.org/10.30598/ajibt.v10i2.1426

Yulianto S, Bolly YY, & Jeksen Y. 2021. Pengaruh pemberian pupuk kandang ayam terhadap pertumbuhan dan hasil mentimun (Cucumis sativus L.) di Kabupaten Sikka [The effect of giving chiken manure on the growth and yield of cucumbers (Cucumis sativus L.) in Sikka district]. Jurnal Inovasi Penelitian. 1(10): 2165–2170.