Review

Endophytic microorganisms and their biotechnological potentials

Volume: 7 Number: 1 January 30, 2026

Endophytic microorganisms and their biotechnological potentials

Abstract

Endophytes generally include bacterial and fungal species that spend all or a certain period of their life cycles in the internal tissues of plants. These microorganisms colonize plant tissues and do not harm the plant, but they promote plant growth and support the plant's defense mechanism. These beneficial properties can be associated with secondary metabolites synthesized by endophytes. Bioactive substances and secondary metabolites produced by endophytes are very important from a biotechnological perspective. There is a potential to produce bioproducts from endophytes within the scope of microbial, agricultural, soil, fungal and industrial biotechnology. The features revealed by studies conducted with endophytes attract attention. Endophyte bacteria and fungi support soil and plant sustainability and biological environmental cleaning by taking part in processes such as phytoremediation and fixation. They constitute a source of bioproducts such as biofertilizers due to the roles they play in various biological processes and the substances they synthesize. It is the subject of various studies, from phytopathogen antagonist activity tests to biological control research. When more diverse studies are carried out using plant, pathogen, and endophyte combinations that have not yet been studied using biotechnological methods, the potential use of endophytes for biological control will be understood in more detail. Almost all plants are known to host endophytes, which represent highly important resources for biotechnological research. However, further studies are required to achieve a more comprehensive understanding of endophytes. This study was carried out to express the biotechnological potential of endophytes in terms of their general characteristics.

Keywords

References

  1. E. Khare, J. Mishra and N. K. Arora, “Multifaceted interactions between endophytes and plant: developments and prospects”, Frontiers in Microbiology, vol. 9, pp. 2732, 2018. https://doi.org/10.3389/fmicb.2018.02732
  2.   D. Wilson, “Endophyte: the evolution of a term, and clarification of its use and definition”, Oikos, pp. 274-276, 1995. https://doi.org/10.2307/3545919
  3.   I. Zabalgogeazcoa, “Fungal endophytes and their interaction with plant pathogens: a review”, Spanish Journal of Agricultural Research, vol. 6, pp. 138-146, 2008. https://doi.org/10.1016/j.fbr.2009.07.001.
  4.   Z. A. Wani, N. Ashraf, T. Mohiuddin and S. Riyaz-Ul-Hassan, “Plant-endophyte symbiosis, an ecological perspective”, Applied Microbiology and Biotechnology, vol. 99(7), pp. 2955-2965, 2015. https://doi.org/10.1007/s00253-015-6487-3
  5.   R. P. Ryan, K. Germaine, A. Franks, D. J. Ryan and D. N. Dowling, “Bacterial endophytes: recent developments and applications”, FEMS Microbiology Letters, vol. 278(1), pp. 1-9, 2008. https://doi.org/10.1111/j.1574-6968.2007.00918.x.
  6.   A. Mesaroš, M. Nedeljković, I. Atanasković, M. Anđelković, D. Danojević, S. Stanković and J. Lozo, “The Role of Root Endophyte Pseudomonas putida A32 in the Protection of Two Pepper Genotypes from Pseudomonas syringae pv. aptata”, Horticulturae, vol. 11(5), pp. 536, 2025. https://doi.org/10.3390/horticulturae11050536.
  7.   G. A. Strobel, “Endophytes as sources of bioactive products”, Microbes and Infection, vol. 5(6), pp. 535-544, 2003. https://doi.org/10.1016/S1286-4579(03)00073-X
  8.   B. Guo, Y. Wang, X. Sun and K. Tang, “Bioactive natural products from endophytes: a review”, Applied Biochemistry and Microbiology, vol. 44(2), pp. 136-142, 2008. https://doi.org/10.1134/S0003683808020026

Details

Primary Language

English

Subjects

Horticultural Production (Other)

Journal Section

Review

Publication Date

January 30, 2026

Submission Date

December 31, 2025

Acceptance Date

January 19, 2026

Published in Issue

Year 2026 Volume: 7 Number: 1

APA
Karabulut, C. B., & Yürümez Canpolat, E. (2026). Endophytic microorganisms and their biotechnological potentials. Eurasian Journal of Science Engineering and Technology, 7(1), 21-29. https://doi.org/10.55696/ejset.1852536
AMA
1.Karabulut CB, Yürümez Canpolat E. Endophytic microorganisms and their biotechnological potentials. (EJSET). 2026;7(1):21-29. doi:10.55696/ejset.1852536
Chicago
Karabulut, Ceyda Berceste, and Elif Yürümez Canpolat. 2026. “Endophytic Microorganisms and Their Biotechnological Potentials”. Eurasian Journal of Science Engineering and Technology 7 (1): 21-29. https://doi.org/10.55696/ejset.1852536.
EndNote
Karabulut CB, Yürümez Canpolat E (January 1, 2026) Endophytic microorganisms and their biotechnological potentials. Eurasian Journal of Science Engineering and Technology 7 1 21–29.
IEEE
[1]C. B. Karabulut and E. Yürümez Canpolat, “Endophytic microorganisms and their biotechnological potentials”, (EJSET), vol. 7, no. 1, pp. 21–29, Jan. 2026, doi: 10.55696/ejset.1852536.
ISNAD
Karabulut, Ceyda Berceste - Yürümez Canpolat, Elif. “Endophytic Microorganisms and Their Biotechnological Potentials”. Eurasian Journal of Science Engineering and Technology 7/1 (January 1, 2026): 21-29. https://doi.org/10.55696/ejset.1852536.
JAMA
1.Karabulut CB, Yürümez Canpolat E. Endophytic microorganisms and their biotechnological potentials. (EJSET). 2026;7:21–29.
MLA
Karabulut, Ceyda Berceste, and Elif Yürümez Canpolat. “Endophytic Microorganisms and Their Biotechnological Potentials”. Eurasian Journal of Science Engineering and Technology, vol. 7, no. 1, Jan. 2026, pp. 21-29, doi:10.55696/ejset.1852536.
Vancouver
1.Ceyda Berceste Karabulut, Elif Yürümez Canpolat. Endophytic microorganisms and their biotechnological potentials. (EJSET). 2026 Jan. 1;7(1):21-9. doi:10.55696/ejset.1852536