References
- C.O. Santana, P. Spealman, V.M.M. Melo, D. Gresham, T.B. Jesus,
F.A. Chinalia, Microbial community structure and ecology
in sediments of a Pristine Mangrove Forest, Biogeosciences,
(2019), doi: 10.1101/833814.
- K. Kachanuban, P. Yan, P. Fu, W. Zhu, P. Wilaipun, Identification
of antibiotic compounds from Thai mangrove soil-derived
Streptomyces iconiensis, J. Fish. Environ., 46 (2022) 145–162.
- A.A. Bhatti, S. Haq, R.A. Bhat, Actinomycetes benefaction role
in soil and plant health, Microb. Pathogen., 111 (2017) 458–467.
- S. Lu, T. Zhou, K. Fukaya, E. Harunari, N. Oku, D. Urabe,
Y. Igarashi, Krasilnikolides A and B and Detalosylkrasilnikolide
A, cytotoxic 20-membered macrolides from the genus
Krasilnikovia: assignment of anomeric configuration by J-based
configuration analysis, J. Nat. Prod., 85 (2022) 2796–2803.
- C. Liu, Z. Zhang, K. Fukaya, D. Urabe, E. Harunari, N. Oku,
Y. Igarashi, Catellatolactams A–C, plant growth-promoting
Ansamacrolactams from a rare actinomycete of the genus
Catellatospora, J. Nat. Prod., 85 (2022) 1993–1999.
- F. Zhang, T.P. Wyche, Y. Zhu, D.R. Braun, J.-X. Yan, S. Chanana,
Y. Ge, I. Guzei, M.G. Chevrette, C.R. Currie, M.G. Thomas,
S.R. Rajski, T.S. Bugni, MS-derived isotopic fine structure
reveals Forazoline A as a thioketone-containing marine-derived
natural product, Org. Lett., 22 (2020) 1275–1279.
- C.-L. Xie, Q. Liu, J.-M. Xia, Y. Gao, Q. Yang, Z.-Z. Shao, G.
Liu, X.-W. Yang, Anti-allergic compounds from the deep-seaderived
actinomycete Nesterenkonia flava MCCC 1K00610, Mar.
Drugs, 15 (2017) 71, doi: 10.3390/md15030071.
- C. Indananda, A. Matsumoto, Y. Inahashi, Y. Takahashi,
K. Duangmal, A. Thamchaipenet, Actinophytocola oryzae gen. nov., sp. nov., isolated from the roots of Thai glutinous rice plants, a new member of the family Pseudonocardiaceae,
Int. J. Syst. Evol. Microbiol., 60 (2010) 1141–1146.
- M. Otoguro, H. Yamamura, T. Tamura, R. Irzaldi,
S. Ratnakomala, R. Ridwan, G. Kartina, E. Triana, A. Nurkanto,
Y. Lestari, P. Lisdiyanti, Y. Widyastuti, K. Ando, Actinophytocola
timorensis sp. nov. and Actinophytocola corallina sp. nov., isolated
from soil, Int. J. Syst. Evol. Microbiol., 61 (2011) 834–838.
- I. Ara, B. Tsetseg, D. Daram, M. Suto, K. Ando, Actinophytocola
burenkhanensis sp. nov., isolated from Mongolian soil,
Int. J. Syst. Evol. Microbiol., 61 (2011) 1033–1038.
- X. Guo, D. Qiu, J. Ruan, Y. Huang, Actinophytocola xinjiangensis sp. nov., isolated from virgin forest soil, Int. J. Syst. Evol.
Microbiol., 61 (2011) 2928–2932.
- D.-F. Zhang, Z. Jiang, X.-M. Zhang, L.-L. Yang, X.-P. Tian,
L.-J. Long, S. Zhang, W.-J. Li, Actinophytocola sediminis sp. nov.,
an actinomycete isolated from a marine sediment, Int. J. Syst.
Evol. Microbiol., 64 (2014) 2834–2840.
- H.M. Sun, T. Zhang, L.Y. Yu, X.X. Lu, X.Z. Mou, Y.Q. Zhang,
Actinophytocola gilvus sp. nov., isolated from desert soil
crusts, and emended description of the genus Actinophytocola
Indananda et al. 2010, Int. J. Syst. Evol. Microbiol., 64 (2014)
3120–3125.
- K. Bouznada, N. Bouras, P. Schumann, C. Spröer, N. Sabaou,
H. Klenk, Actinophytocola algeriensis sp. nov., an actinobacterium
isolated from Saharan soil, Int. J. Syst. Evol. Microbiol.,
66 (2016) 2760–2765.
- W. Wang, B. Wang, H. Meng, Z. Xing, Q. Lai, L. Yuan,
Actinophytocola xanthii sp. nov., an actinomycete isolated from
rhizosphere soil of the plant Xanthium sibiricum, Int. J. Syst.
Evol. Microbiol., 67 (2017) 1152–1157.
- C. Cao, Y. Sun, B. Wu, S. Zhao, B. Yuan, S. Qin, J. Jiang,
Y. Huang, Actinophytocola glycyrrhizae sp. nov. isolated from the
rhizosphere of Glycyrrhiza inflata, Int. J. Syst. Evol. Microbiol.,
68 (2018) 2504–2508.
- X. Ge, S. Yang, C. Zhen, W. Liu, Actinophytocola gossypii sp. nov.
and Streptomyces gossypii sp. nov., two novel actinomycetes
isolated from rhizosphere soil of cotton, Int. J. Syst. Evol.
Microbiol., 73 (2023), doi: 10.1099/ijsem.0.005832.
- Z.A. Zainal Abidin, K.C.A. Jalal, N. Abdul Malek, Z. Zainuddin,
Diversity, antimicrobial capabilities, and biosynthetic potential
of mangrove actinomycetes from coastal waters in Pahang,
Malaysia, J. Coastal Res., 82 (2018) 174–179.
- Z.A. Zainal Abidin, N. Abdul Malek, Z. Zainuddin, K.C.A Jalal,
Selective isolation and antagonistic activity of actinomycetes
from mangrove forest of Pahang, Malaysia, Front. Life Sci.,
9 (2016) 24–31.
- N. Abdul Malek, Z. Zainuddin, A.J.K. Chowdhury, Z.A. Zainal
Abidin, Diversity and antimicrobial activity of mangrove
soil actinomycetes isolated from Tanjung Lumpur, Kuantan,
Jurnal Teknologi, 77 (2015) 37–43.
- A. Ayuso-Sacido, O. Genilloud, New PCR primers for the
screening of NRPS and PKS-I systems in actinomycetes:
detection and distribution of these biosynthetic gene sequences
in major taxonomic groups, Microb. Ecol., 49 (2005) 10–24.
- K.V.R. Rao, P. Mani, B. Satyanarayana, T.R. Rao, Purification and
structural elucidation of three bioactive compounds isolated
from Streptomyces coelicoflavus BC 01 and their biological
activity, 3 Biotech, 7 (2017) 1–12.
- A. Seenivasan, R. Manikkam, M. Kaari, A.M. Sahu, S.M. Said,
S.G. Dastager, 2,4-Di-tert-butylphenol (2,4-DTBP) purified
from Streptomyces sp. KCA1 from Phyllanthus niruri: isolation,
characterization, antibacterial and anticancer properties,
J. King Saud Univ. Sci., 34 (2022) 102088, doi: 10.1016/j.jksus.2022.102088.
- M. Kaari, J. Joseph, R. Manikkam, R. Kalyanasundaram,
A. Sivaraj, S. Anbalmani, S. Murthy, A. Kumar Sahu, M. Said,
S.G. Dastager, B. Ramasamy, A novel finding: 2,4-di-tertbutylphenol
from Streptomyces bacillaris ANS2 effective
against Mycobacterium tuberculosis and cancer cell lines,
Appl. Biochem. Biotechnol., 195 (2023) 6572–6585.
- D. Viszwapriya, U. Prithika, S. Deebika, K. Balamurugan,
S.K. Pandian, In vitro and in vivo antibiofilm potential of
2,4-di-tert-butylphenol from seaweed surface associated
bacterium Bacillus subtilis against group A Streptococcus,
Microbiol. Res., 191 (2016) 19–31.
- M. Duan, L. Wang, X. Song, Assessment of the rhizosphere
fungi and bacteria recruited by sugarcane during smut
invasion, Braz. J. Microbiol., 54 (2023) 385–395.
- Y. Zhou, Z. Pang, H. Jia, Z. Yuan, R. Ming, Responses of
roots and rhizosphere of female papaya to the exogenous
application of GA3, BMC Plant Biol., 23 (2023) 35, doi: 10.1186/s12870-022-04025-6.
- A.J. Fernández-González, J.A. Ramírez-Tejero, M.P. Nevado-Berzosa, F. Luque, M. Fernández-López,
J. Mercado-Blanco, Coupling the endophytic microbiome with the host
transcriptome in olive roots, Comput. Struct. Biotechnol. J.,
19 (2021) 4777–4789.