This is an outdated version published on 2023-09-30. Read the most recent version.

Growth Parameter Characteristics of Radish Microgreen on The Type of Planting Media and The Use of

Authors

  • Mus’ab Az Zubairi Program Studi Teknik Pertanian dan Biosistem, Fakultas Teknologi Pertanian, Universitas Udayana, Badung, Bali, Indonesia
  • Ni Nyoman Sulastri Program Studi Teknik Pertanian dan Biosistem, Fakultas Teknologi Pertanian, Universitas Udayana, Badung, Bali, Indonesia
  • I Putu Gede Budisanjaya Program Studi Teknik Pertanian dan Biosistem, Fakultas Teknologi Pertanian, Universitas Udayana, Badung, Bali, Indonesia

DOI:

https://doi.org/10.24843/JBETA.2023.v11.i02.p18

Keywords:

microgreen, raphanus sativus, planting media, LED grow light

Abstract

Microgreen has the potential to be developed in urban farming systems because of the ease of obtaining
planting media and tools to use and can be cultivated on a limited land space. Microgreen radish (Raphanus
sativus) is an antioxidant that is good for health and acts as a source of polyphenols. This study aims to
determine the growth characteristics of microgreen radish on the effect of variations in planting media and
LED grow light and determine the treatment that produces the best growth. The experimental design used
in this study was a completely randomized design (CRD) with two factors: the planting media and
irradiation with a factorial pattern of 3 x 3 with three replications, so there were 27 treatments. The results
showed no significant effect (P>0.05) between the growing media and grow light on several microgreen
growth parameters. However, using grow light and sand media visually showed the best results in several
growth parameters. The image acquisition on the whole microgreen planting tray is needed instead of
randomly picking a single microgreen for analysis to get more accurate data in determining the effect of
planting media and grow light on microgreen growth parameters.

References

Aini, S. N., M, S. A., & Murwani, I. (2021). Pengaruh

Warna Cahaya Led Merah, Biru, Kuning dan

Media Tanam terhadap Pertumbuhan dan

Produksi

Microgreen

Bayam

Merah

(Amaranthus gangeticus). Jurnal Agronisma,

9(2), 379-389.

Anggraeni, S. M., Mardiyani, S. A., & Rosyidah, A.

(2022). Peningkatan Performa Pertumbuhan

Microgreen Red Radish Melalui Aplikasi CaCl2

Menggunakan Beberapa Jenis Air Enhancing.

Jurnal Agronisma, (10)2

Anindyarasmi, D., Budiyanto, S., & Purbajanti, E. .

(2021). Respon Selada Merah (Lactuca Sativa

Var. Crispa) Akibat Perlakuan Daya Led (Light

Emiting Diode) Dan Posisi Tanaman Pada

Sistem Hidproponik Tower. Journal of Agro

Complex, 5(1), 49–56.

As’adiya, L., & Murwani, I. (2021). Pengaruh Lama

Penyinaran Lampu LED Merah, Biru, Kuning

terhadap Pertumbuhan Microgreen Kangkung

(Ipomoea reptant). Folium : Jurnal Ilmu

Pertanian,

5(1),

14-25.

https://doi.org/10.33474/folium.v5i1.10358

Bui, F., Lelang, M. A., & Taolin, R. I. C. O. (2016).

Pengaruh Komposisi Media Tanam Dan Ukuran Polybag Terhadap Pertumbuhan Dan

Hasil Tomat (Licopercicum escelentum Mill).

Savana

Cendana,

1(1),

1–7.

https://doi.org/10.32938/sc.v1i01.1

Dewi, A. F., Sari, T. M., & Carolina, H. S. (2020).

Pengaruh Media Tanam Pasir, Arang Sekam,

dan Aplikasi Pupuk LCN terhadap Jumlah

Tunas Tanaman Tin (Ficus carica L.) sebagai

Sumber Belajar Biologi. Jurnal Bioeducation,

7(1), 1–7.

Febriani, L., Gunawan, & Gafur, A. (2021). Review:

Pengaruh Jenis Media Tanam Terhadap

Pertumbuhan Tanaman. Bioeksperimen: Jurnal

Penelitian

Biologi,

7(2),

93–104).

https://doi.org/10.23917/bioeksperimen.v7i2.1

0902

Febriani, V., Nasrika, E., Munasari, T., Permatasari,

Y., & Widiatningrum, T. (2019). Analisis

Produksi Microgreens Brassica oleracea

Berinovasi

Urban

Gardening

untuk

Peningkatan Mutu Pangan Nasional. Journal of

Creativity

Student,

2(2),

58

66. https://doi.org/10.15294/jcs.v2i2.19840

Gautama, D. P. Y., Wijaya, I. M. A. S., & Widia, I.

W. (2018). Musik Gamelan Bali Meningkatkan

Pertumbuhan Dan Produktivitas Tanaman Sawi

Pakcoy (Brassica Rafa L.). Jurnal Beta

(Biosistem Dan Teknik Pertanian), 6(2), 73-81.

https://doi.org/10.24843/JBETA.2018.v06.i02.

p03.

Lobiuc, A., Vasilache, V., Pintilie, O., Stoleru, T.,

Burducea, M., Oroian, M., & Zamfirache, M.

M. (2017). Blue and Red Led Illumination

Improves Growth and Bioactive Compounds

Contents In Acyanic and Cyanic Ocimum

basilicum L. Microgreens. Molecules, 22(12).

10.3390/molecules22122111

Miranda, S., Martino, D., & Alia, Y. (2017).

Efektivitas Cocopeat dan Arang Sekam dalam

Mensubstitusi Media Tanam Rockwool Pada

Tanaman Mint (Mentha arvensis L.) secara

Hidroponik dengan Sistem Sumbu. Artikel

Ilmiah Jurusan Agroekoteknologi Fakultas

Pertanian Universotas Jambi

Https://Repository.Unja.Ac.Id/Id/Eprint/2531

Murtianta, B., Danis Ronaldo, S., & Susilo, D.

(2022). Perancangan Prototype Smart Indoor

Greenhouse

IoT

untuk

Membantu

Permasalahan Budidaya Tanaman Selada di

Kota

Kupang. Techné : Jurnal Ilmiah

Elektroteknika,

21(2),

297–310.

https://doi.org/10.31358/techne.v21i2.331

Nugraha, P. A., Rosdiana, E., & Qurthobi, A. (2020).

Analisis

Pengaruh Intensitas dan Pola

Pencahayaan Led (Light Emitting Diode)

Berwarna Putih pada Pertumbuhan Tanaman

Pakchoi (Brassica rapa L) di dalam Ruang. E-Proceeding Of Engineering, 7(1), 1155–1162.

Perdana, A. (2019). Pertumbuhan dan Hasil Tanaman

Lobak Putih (Raphanus sativus L.) terhadap

Pemberian POC Keong Mas dan Bokashi

Kotoran Kambing. Skripsi. Fakultas Pertanian

Universitas Muhammadiyah Sumatera Utara

Pratamaningtyas, S., Wardhani, T., & Suprihana, S.

(2019). Potensi Aplikasi Substansi Konsorsium

Mikroorganisme

Indigen

(MOI)

untuk

Memperbaiki Produksi Microgreens. Prosiding:

Conference on Innovation and Application of

Science and Technology (CIASTECH 2019), 2

3 Oktober 2019

Putri, A. D., Sudiarso, & Islami, T. (2013). Pengaruh

Komposisi Media Tanam Pada Teknik Bud

Chip

Tiga

Varietas Tebu (Saccharum

officinarum L.). Jurnal Produksi Tanaman,

1(1), 16–23. 10.21176/protan.v1i1.3

Runkle, E. (2018). Purple Vs. Pink Vs. White Led

Fixtures.

September

2018.

Https://Gpnmag.Com/Article/Purple-Vs-Pink

Vs-White-Led-Fixtures/ (Terakhir diakses 18

12-2022)

Salim, M. A. (2019). Budidaya Microgreens:

Sayuran Kecil Kaya Nutrisi dan Menyehatkan.

Yayasan Lembaga Pendidikan Dan Pelatihan

Multiliterasi. Bandung

Sari, K. R., Hadie, J., & Nisa, C. (2016). Pengaruh

Media Tanam pada Berbagai Konsentrasi

Nutrisi terhadap Pertumbuhan dan Hasil Seledri

dengan Sistem Tanam Hidroponik NFT. Jurnal

Daun, 3(1), 7–14.

Sigramawan, G. T., Wijaya, I. M. A. S., &

Budisanjaya, I. P. G. (2020). Efek Kombinasi

Musik Gamelan Gong Kebyar dan Cahaya LED

(Light Emitting Diode) terhadap Pertumbuhan

dan Produktivitas Sawi Pakcoy (Brassica rapa

L.). Jurnal BETA (Biosistem dan Teknik

Pertanian),

8(1),

1-9.

https://doi.org/10.24843/JBETA.2020.v08.i01.

p01

Sisriana, S., Suryani, S., & Sholihah, S. M. (2021).

Pengaruh Berbagai Media Tanam terhadap

Pertumbuhan dan Kadar Pigmen Microgreens

Selada. Jurnal Ilmiah Respati, 12(2), 163

176. https://doi.org/10.52643/jir.v12i2.1886

Sun, J., Xiao, Z., Lin, L., Lester, G. E., Wang, Q.,

Harnly, J. M., & Chen, P. (2013). Profiling

Polyphenols

in

Five Brassica Species

Microgreens By UHPLC-PDA-ESI/HRMSN.

Journal of Agricultural and Food Chemistry,

61(46), 10960–10970. 10.1021/jf401802n

Warjoto, R. E., Mulyawan, J., & Barus, T. (2017).

Pengaruh Media Tanam Hidroponik terhadap

Pertumbuhan Bayam (Amaranthus sp.) dan

Selada (Lactuca sativa). Jurnal Penelitian

Pertanian

Terapan,

20(2),

118–125.

https://doi.org/10.25181/jppt.v20i2.1610

Published

2023-09-30

Versions

How to Cite

Zubairi, M. A., Sulastri, N. N., & Budisanjaya, I. P. G. (2023). Growth Parameter Characteristics of Radish Microgreen on The Type of Planting Media and The Use of . Jurnal BETA (Biosistem Dan Teknik Pertanian), 11(2), 402–410. https://doi.org/10.24843/JBETA.2023.v11.i02.p18

Issue

Section

Articles