Selection of Isolates of Local Endophytic Bacteria Cellulolytic Strains from Mangrove Roots Ceriops tagal (Perr) C. B. Rob

  • Itnawita Universitas Riau
  • Silvera Devy Universitas Riau
  • Mukhlis Universitas Riau
  • Alfika Sari Universitas Riau
Keywords: Bacteria, Endophytic, Cellulolytic, Mangrove root

Abstract

Cellulose agricultural waste is a source of environmental pollution and an alternative solution to overcome it is to degrade this waste with the help of cellulolytic enzymes. The Biochemistry Laboratory of FMIPA Riau University has a number of endophytic bacterial isolates from the roots of Mangrove Ceriops tagal (Perr) C. B. Rob in the Bengkalis area whose potential to produce cellulolytic enzymes is not yet known. Qualitative selection in carboxy methyl cellulose (CMC) solid media from 24 isolates of endophytic bacteria that were able to live because they produced cellulolytic enzymes, only 22 isolates. Quantitatively using the DNS (Dinitro Salicylic Acid) method, 3 of these 22 isolates had relatively higher activity than other isolates. The activity of isolate C-9 (LBKURCC332) was 572x10-4±0.0069U/mL, isolate C-23(LBKURCC346) was 423x10-4±0.0027U/mL and isolate C-30 (LBKURCC353) was 384x10-4± 0.0003 U/mL and statistically these 3 cellulolytic activities were significantly different

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References

Compant, S., Reiter, B., Sessitsch, A., Nowak, J., Clément, C., & Barka, E. A. (2005). Endophytic colonization of Vitis vinifera L. by plant growth-promoting bacterium Burkholderia sp. strain PsJN. Applied and Environmental Microbiology, 71(4). https://doi.org/10.1128/AEM.71.4.1685-1693.2005
Deshmukh, S. K., Verekar, S. A., & Bhave, S. V. (2014). Endophytic fungi: A reservoir of antibacterials. In Frontiers in Microbiology. https://doi.org/10.3389/fmicb.2014.00715
Hasanah, N., & Iwan, S. (2015). Aktivitas selulase isolat jamur dari limbah media tanam jamur merang. Jurnal Prosedium Seminar Masyarakat BIODIV Indonesia, 1(Imas 2009), 1110–1115. https://doi.org/10.13057/psnmbi/m010524
Hidayat, A. (2009). Sumberdaya Lahan Indonesia: Potensi, Permasalahan, dan Strategi Pemanfaatan. Jurnal Sumberdaya Lahan, 3(2), 107–117. https://media.neliti.com/media/publications/133835-ID-none.pdf
Ingle, S. S., Panchal, V., & Chhatpar, H. S. (2006). Studies on carbohydrate metabolism in Bacillus sphaericus 1593. African Journal of Biotechnology. https://doi.org/10.5897/AJB06.054
Kaga, H., Mano, H., Tanaka, F., Watanabe, A., Kaneko, S., & Morisaki, H. (2009). Rice Seeds as Sources of Endophytic Bacteria. Microbes Environ, 24(2), 154–162. https://doi.org/10.1264/jsme2.ME09113
Kavitha, S., & Nagarajan, P. (2011). Production of Endoglucanase in Mixed Culture of Trichderma viride and Aspergillus niger-Kinetics and Modeling. International Journal of ChemTech Research.
Meryandini, A., Widosari, W., Maranatha, B., Sunarti, T. C., Rachmania, N., & Satria, H. (2010). ISOLASI BAKTERI SELULOLITIK DAN KARAKTERISASI ENZIMNYA. MAKARA of Science Series. https://doi.org/10.7454/mss.v13i1.369
Nurrochman, F. (2015). Eksplorasi Bakteri Selulolitik Dari Tanah Hutan Mangrove Kretek, Bantul, Yogyakarta. Naskah Publikasi, Universitas Muhammadiyah Surakarta.
Okunowo, W. O., Gbenle, G. O., Osuntoki, A. A., Adekunle, A. A., & Ojokuku, S. A. (2010). Production of cellulolytic and xylanolytic enzymes by a phytopathogenic Myrothecium roridum and some avirulent fungal isolates from water hyacinth. African Journal of Biotechnology.
Pimentel, M. R., Molina, G., Dionísio, A. P., Maróstica Junior, M. R., & Pastore, G. M. (2011). The Use of Endophytes to Obtain Bioactive Compounds and Their Application in Biotransformation Process. Biotechnology Research International. https://doi.org/10.4061/2011/576286
Pranoto, E., Fauzi, G., & Hingdri. (2014). Isolasi dan Karakterisasi Bakteri Endofit Pada Tanaman Teh (Camellia Sinensis (L.) O.Kuntze) Produktif dan Belum Menghasilkan klon GMB 7 Dataran Tinggi. Biospecies, 7(1), 1–7.
Pratiwi, Y. H., Ratnayani, O., & Wirajana, I. N. (2018). Perbandingan Metode Uji Gula Pereduksi Dalam Penentuan Aktivitas ?-L-Arabinofuranosidase Dengan Substrat Janur Kelapa (Cocos Nucifera). Jurnal Kimia, 134. https://doi.org/10.24843/jchem.2018.v12.i02.p07
Qu, Y., Zhu, M., Liu, K., Bao, X., & Lin, J. (2006). Studies on cellulosic ethanol production for sustainable supply of liquid fuel in China. In Biotechnology Journal. https://doi.org/10.1002/biot.200600067
Rafi, M. I., & Cheah, Y. K. (2018). Bacterial Endophytes: A Reservoir of Bioactive Anti-Microbial Compounds. Life Sciences, Medicine and Biomedicine. https://doi.org/10.28916/lsmb.2.1.2018.8
Retno, D. T., & Nuri, W. (2011). Pembuatan Bioetanol dari Kulit Pisang. Prosiding Seminar Nasional Teknik Kimia “Kejuangan” Pengembangan Teknologi Kimia untuk Pengolahan Sumber Daya Alam Indonesia, E11-1-E11-7.
Saropah, D. A., Jannah, A., & Maunatin, A. (2012). KINETIKA REAKSI ENZIMATIS EKSTRAK KASAR ENZIM SELULASE BAKTERI SELULOLITIK HASIL ISOLASI DARI BEKATUL. ALCHEMY, 2(1–2), 34–45.
Yogyaswari, S. A., Rukmi, M. G. I., & Raharjo, B. (2016). Ekplorasi Bakteri Selulolitik Dari Cairan Rumen Sapi Peranakan Fries Holland (PFH) Dan Limousine Peranakan Ongole (Limpo). Jurnal Biologi, 5(4), 70–80.
Published
2022-07-14
How to Cite
Itnawita, I., Devy, S., Mukhlis, M., & Sari, A. (2022). Selection of Isolates of Local Endophytic Bacteria Cellulolytic Strains from Mangrove Roots Ceriops tagal (Perr) C. B. Rob. Photon: Jurnal Sain Dan Kesehatan, 12(2), 41-49. https://doi.org/10.37859/jp.v12i2.3371
Section
Chemistry Sciences
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