References
- A. Alvin, K.I. Miller, B.K. Neilan, Exploring the potential of
endophytes from medicinal plants of Andrographis paniculata for their antimicrobial compounds, Microbiol. Res., 169 (2014)
483–495.
- U.F. Castillo, G.A. Strobel, E.J. Ford, W.M. Hess, J.B. Jensen,
H. Albert, R. Robison, M.A. Condron, D.B. Teplow, D. Steven,
Munumbicins, wide-spectrum antibiotics produced by
Streptomyces NRRL 30562, endophytic on Kennedia nigriscansa,
Microbiology, 148 (2002) 2675–2685.
- U. Castillo, J.K. Harper, G. Strobel, J. Sears, K. Alesi, E. Ford,
J. Lin, M. Hunter, M. Maranta, H. Ge, H.D. Yaver, Kakadumycins,
novel antibiotics from Streptomyces sp. NRRL30566, an
endophyte of Grevillea pteridifolia, FEMS Microbiol. Lett.,
224 (2003) 183–190.
- L. Ding, A. Maier, H.H. Fiebig, W.H. Lin, C. Hertweck, A family
of multicyclic indolosesquiterpenes from a bacterial endophyte,
Org. Biomol. Chem., 9 (2011) 4029–4031.
- M.M. Alshaibani, N. Mohamad Zin, J. Jalil, N.M. Sidik,
S.J. Ahmad, N. Kamal, R. Edrada-Ebel, Isolation, purification,
and characterization of five active diketopiperazine derivatives
from endophytic Streptomyces SUK 25 with antimicrobial
and cytotoxic activities, J. Microbiol. Biotechnol., 27 (2017)
1249–1256.
- D.N. Nair, S. Padmavathy, Impact of endophytic microorganisms
on plants, environment and humans, Sci. World J., 2014 (2014)
1–11.
- H.C. Ong, Tumbuhan Liar. Khasiat Ubatan and Kegunaan Lain,
Utusan Publication & Distributors, Kuala Lumpur, 2006.
- S.H. Goh, K.H. Lee, C.H. Chuah, H.C. Ong, L. Madani, J.T. Pereira,
A phytochemical study of borneo: selected plants from Sabah
Lowland Forests, J. Herbs Spices Med. Plants, 5 (1997) 29–52.
- M.S. Roshan-Jahn, K. Getha, A. Mohd-Ilham, I. Norhayati,
J. Muhammad-Haffiz, A.S. Amyra, In vitro anti-leismanial
activity of Malaysian medicinal and forest plant species, J. Trop.
For. Sci., 30 (2018) 234–241
- D. Rajasekaran, E.A. Palombo, T.C. Yeo, D.S.S. Lim, T.C. Lee,
F. Malherbe1, L. Grollo, Identification of traditional medicinal
plant extracts with novel antiinfluenza activity, PLoS One,
8 (2013) e79293, doi: 10.1371/journal.pone.0079293.
- K.H. Wilson, R.B. Blitchington, R.C. Greene, Amplification of
bacterial 16S ribosomal DNA with polymerase chain reaction,
J. Clin. Microbiol., 1 (1990) 57–63.
- K. Pisarska, S.J. Pietr, Biodiversity of dominant cultivable
endophytic bacteria inhabiting tissues of six different cultivars
of maize (Zea mays L. ssp. mays) cropped under field conditions,
Pol. J. Microbiol., 64 (2015) 163–170.
- M.W. Yaish, I. Anthony, B.R. Glick, Isolation and characterization
of endophytic plant growth-promoting bacteria from date palm
tree (Phoenix dactylifera L.) and their potential role in salinity
tolerance, Antonie van Leeuwenhoek, 107 (2015) 1519–1532.
- B. El-Deeb, K. Fayez, Y. Gherbawy, Isolation and characterization
of endophytic bacteria from Plectranthus tenuiflorus medicinal
plant in Saudi Arabia desert and their antimicrobial activities,
J. Plant Interact., 8 (2013) 56–64.
- L.J. Zhu, D.X. Guan, L. Luo, B. Rathinasabapathi, L.Q. Ma,
Characterization of arsenic-resistant endophytic bacteria
from hyperaccumulators Pteris vittata and Pteris multifida,
Chemosphere, 113 (2014) 9–16.
- S.J. Bhore, R. Nithya, Y.L. Chye, Screening of endophytic bacteria
isolated from leaves of Sambung Nyawa [Gynura procumbens (Lour.) Merr.] for cytokinin-like compounds, Bioinformation,
5 (2010) 191–197.
- D. Miñana-Galbis, D.L. Pinzón, J.G. Loren, A. Manresa,
R.M. Oliart-Ros, Reclassification of Geobacillus pallidus as Aeribacillus pallidus gen. nov.,
comb. nov., Int. J. Syst. Evol. Microbiol., 60 (2010) 1600–1604.
- I. Finore, A. Gioiello, L. Leone, P. Orlando, I. Romano,
B. Nicolas, A. Poli, Aeribacillus composti sp. nov., a thermophilic
bacillus isolated from olive mill pomace compost, Int. J. Syst.
Evol. Microbiol., 67 (2017) 4830–4835.
- A. Arab, S. Bakour, R. Lalaoui, N. Aissaoui, F. Nas, A. Hoceini,
P.-E. Fournier, N. Klouche-Khelil, Diversity of aerobic Bacilli
analysis using molecular and culture-based approaches in
Debagh Hot Spring, Geomicrobiol. J., 36 (2019) 137–147.
- D.K. Neelam, A. Agrawal, A.K. Tomer, P.K. Dadheech,
Characterization, phylogenetic analysis and potential
applications of heterotrophic bacteria inhabit sand dunes of
Thar Desert, India, J. Pure Appl. Microbiol., 12 (2018) 1887–1898.
- F. Gagné-Bourque, A. Bertrand, A. Claessens, K.A. Aliferis,
S. Jabaji, Alleviation of drought stress and metabolic changes in
timothy (Phleum pratense L.) colonized with Bacillus subtilis B26,
Front Plant Sci., 7 (2016) 584.
- S. Asaf, M.A. Khan, A.L. Khan, M. Waqas, R. Shahzad, A.Y. Kim,
S.M. Kang, I.J. Lee, Bacterial endophytes from arid land plants
regulate endogenous hormone content and promote grow
thin crop plants: an example of Sphingomonas sp. and Serratia
marcescens, J. Plant Interact., 12 (2017) 31–38.
- H. Müller, C. Berg, B.B. Landa, A. Auerbach, C. Moissl-
Eichinger, G. Berg, Plant genotype-specific archaeal and
bacterial endophytes but similar Bacillus antagonists colonize
Mediterranean olive trees, Front Microbiol., 6 (2015) 138, doi:
10.3389/fmicb.2015.00138.
- B. Jasim, A.A. Joseph, C.J. John, J. Mathew, E.K. Radhakrishnan,
Isolation and characterization of plant growth promoting
endophytic bacteria from the rhizome of Zingiber officinale,
3 Biotech, 4 (2014) 197–204.
- V. Chaudhry, S. Sharma, K. Bansal, P.B. Patil, Glimpse into the
genomes of rice endophytic bacteria: diversity and distribution
of firmicutes, Front. Microbiol., 7 (2016) 1–5.
- F. Rasche, R. Trondl, C. Naglreiter, T.G. Reichenauer,
A. Sessitsch, Chilling and cultivar type affect the diversity of
bacterial endophytes colonizing sweet pepper (Capsicum anuum L.), Can. J. Microbiol., 52 (2006) 1036–1045.
- V.M. Conn, C.M. Franco, Analysis of the endophytic
actinobacterial population in the roots of wheat (Triticum aestivum L.) by terminal restriction fragment length polymorphism and
sequencing of 16S rRNA clones, Appl. Environ. Microbiol.,
70 (2004) 1787–1794.
- M. Quambusch, J. Brümmer, K. Haller, T. Winkelmann,
M. Bartsch, Dynamics of endophytic bacteria in plant in vitro
culture: quantification of three bacterial strains in Prunus avium,
Plant Cell Tissue Organ Culture, 126 (2016) 305–317.
- E. Menéndez, M.H. Ramírez-Bahena, L. Carro, M. Fernández-Pascual, H.P. Klenk, E. Velázquez, P.F. Mateos, A. Peix, M.R.
Scotti, Paenibacillus periandrae sp. nov., isolated from nodules
of Periandra mediterranea, Int. J. Syst. Evol. Microbiol., 66 (2016)
1838–1843.
- R.L. Melnick, C. Suárez, B.A. Bailey, P.A. Backman, Isolation of
endophytic endospore-forming bacteria from Theobroma cacao
as potential biological control agents of cacao diseases, Biol.
Control, 57 (2011) 236–245.
- L. Ma, Y.H. Cao, M.H. Cheng, Y. Huang, M.H. Mo, Y. Wang,
J.Z. Yang, F.X. Yang, Phylogenetic diversity of bacterial
endophytes of Panax notoginseng with antagonistic
characteristics towards pathogens of root-rot disease complex,
Antonie van Leeuwenhoek, 103 (2013) 299–312.
- S. Caulier, C. Nannan, A. Gillis, F. Licciardi, C. Bragard,
J. Mahillon, Overview of the antimicrobial compounds
produced by members of the Bacillus subtilis group, Front.
Microbiol., 10 (2019) 302, doi: 10.3389/fmicb.2019.00302.
- C.S. Lee, Y.T. Jung, S. Park, T.K. Oh, J.H. Yoon, Lysinibacillus
xylanilyticus sp. nov., a xylan-degrading bacterium isolated from
forest humus, Int. J. Syst. Evol. Microbiol., 60 (2010) 281–286.