6 Microbial Endophytes: New Direction to Natural Sources
153
Shi Y, Yang H, Zhang T, Sun J, Lou K (2014) Illumina-based analysis of endophytic bacterial
diversity and space-time dynamics in sugar beet on the north slope of Tianshan mountain. Appl
Microbiol Biotechnol 98(14):6375–6385
Shu S, Zhao X, Wang W, Zhang G, Cosoveanu A, Ahn Y, Wang M (2014) Identification of a
novel endophytic fungus from Huperzia serrata which produces huperzine A. World J Microbiol
Biotechnol 30(12):3101–3109. https://doi.org/10.1007/s11274-014-1737-6
Sikora RA, Schäfer K, Dababat AA (2007) Modes of action associated with microbially induced
in planta suppression of plant-parasitic nematodes. Australas Plant Path 36(2):124–134
Singh BP (2019) Advances in endophytic fungal research: present status and future challenges, 1st
edn. Springer, Switzerland
Spry C, Sewell AL, Hering Y, Villa MV, Weber J, Hobson SJ et al (2018) Structure-activity analysis
of CJ-15,801 analogues that interact with Plasmodium falciparum pantothenate kinase and inhibit
parasite proliferation. Eur J Med Chem 143:1139–1147
Stierle A, Strobel G, Stierle D (1993(Taxol and taxane production by Taxomyces andreanae, an
endophytic fungus of Pacific yew. Sci 260:214–216
Stone JK, Bacon CW, White JF (2000) An overview of endophytic microbes: endophytism defined.
In: Bacon CW, White JF (eds) Microbial endophytes. Dekker, New York, pp 3–30
Strobel G, Daisy B (2003) Bioprospecting for microbial endophytes and their natural products.
Microbiol Mol Biol Rev 67(4):491–502
Sturz AV, Christie BR, Nowak J (2000) Bacterial endophytes: potential role in developing sustainable
systems of crop production. Crit Rev Plant Sci 19(1):1–30
Sumarah MW, Miller JD (2009) Anti-insect secondary metabolites from fungal endophytes of
conifer trees. Nat Prod Commun 4(11):1497–1504
Suryanarayanan TS, Rajulu G, Vidal S (2016) Biological control through fungal endophytes: gaps
in knowledge hindering success. Curr Biotechnol 5:1–13
Taechowisan T, Wanbanjob A, Tuntiwachwuttikul P, Taylor WC (2006) Identification of Streptomyces sp. Tc022, an endophyte in Alpinia galanga, and the isolation of actinomycin D. Ann
Microbiol. 2006(56):113–117. https://doi.org/10.1007/BF03174991
Tang L, Hamid Y, Sahito ZA, Gurajala HK, He Z, Yang X (2019) Effects of CO2 application coupled
with endophyte inoculation on rhizosphere characteristics and cadmium uptake by Sedum alfredii
Hance in response to cadmium stress. J Environ Manage 239:287–298
Tawfike AF, Romli M, Clements C et al (2019) Isolation of anticancer and anti-trypanosome
secondary metabolites from the endophytic fungus Aspergillus flocculus via bioactivity guided
isolation and MS based metabolomics. J Chromatogr B 1106:71–83. https://doi.org/10.1016/j.
jchromb.2018.12.032
Tomasino SF, Leister RT, Dimock MB, Beach RM, Kelly JL (1995) Field performance of Clavibacter xyli subsp. cynodontis expressing the insecticidal protein gene cryIA (c) of Bacillus
thuringiensis against European corn borer in field corn. Biol Control 5(3):442–448
Ullah A, Heng S, Farooq M, Munis H, Fahad S, Yang X (2015) Phytoremediation of heavy metals
assisted by plant growth promoting (PGP) bacteria: a review. Environ Exp Bot 117:28–40
Vázquez-Chimalhua E, Ruíz-Herrera LF, Barrera-Ortiz S, Valencia-Cantero E, López-Bucio J
(2019) The bacterial volatile dimethyl-hexa-decylamine reveals an antagonistic interaction
between jasmonic acid and cytokinin in controlling primary root growth of Arabidopsis seedlings.
Protoplasma 256(3):643–654. https://doi.org/10.1007/s00709-018-1327-9
Verma P, Yadav AN, Khannam KS, Mishra S, Kumar S, Saxena AK et al (2019) Appraisal of diversity
and functional attributes of thermotolerant wheat associated bacteria from the peninsular zone of
India. Saudi J Biol Sci 26(7):1882–1895. https://doi.org/10.1016/j.sjbs.2016.01.042
Verma P, Yadav AN, Khannam KS, Panjiar N, Kumar S, Saxena AK et al (2015) Assessment of
genetic diversity and plant growth promoting attributes of psychrotolerant bacteria allied with
wheat (Triticum aestivum) from the northern hills zone of India. Ann Microbiol 65(4):1885–1899.
https://doi.org/10.1007/s13213-014-1027-4
Vicente-Hernández A, Salgado-Garciglia R, Valencia-Cantero E et al (2019) Bacillus methylotrophicus M4-96 stimulates the growth of strawberry (Fragaria x ananassa “Aromas”) plants in vitro
153
Shi Y, Yang H, Zhang T, Sun J, Lou K (2014) Illumina-based analysis of endophytic bacterial
diversity and space-time dynamics in sugar beet on the north slope of Tianshan mountain. Appl
Microbiol Biotechnol 98(14):6375–6385
Shu S, Zhao X, Wang W, Zhang G, Cosoveanu A, Ahn Y, Wang M (2014) Identification of a
novel endophytic fungus from Huperzia serrata which produces huperzine A. World J Microbiol
Biotechnol 30(12):3101–3109. https://doi.org/10.1007/s11274-014-1737-6
Sikora RA, Schäfer K, Dababat AA (2007) Modes of action associated with microbially induced
in planta suppression of plant-parasitic nematodes. Australas Plant Path 36(2):124–134
Singh BP (2019) Advances in endophytic fungal research: present status and future challenges, 1st
edn. Springer, Switzerland
Spry C, Sewell AL, Hering Y, Villa MV, Weber J, Hobson SJ et al (2018) Structure-activity analysis
of CJ-15,801 analogues that interact with Plasmodium falciparum pantothenate kinase and inhibit
parasite proliferation. Eur J Med Chem 143:1139–1147
Stierle A, Strobel G, Stierle D (1993(Taxol and taxane production by Taxomyces andreanae, an
endophytic fungus of Pacific yew. Sci 260:214–216
Stone JK, Bacon CW, White JF (2000) An overview of endophytic microbes: endophytism defined.
In: Bacon CW, White JF (eds) Microbial endophytes. Dekker, New York, pp 3–30
Strobel G, Daisy B (2003) Bioprospecting for microbial endophytes and their natural products.
Microbiol Mol Biol Rev 67(4):491–502
Sturz AV, Christie BR, Nowak J (2000) Bacterial endophytes: potential role in developing sustainable
systems of crop production. Crit Rev Plant Sci 19(1):1–30
Sumarah MW, Miller JD (2009) Anti-insect secondary metabolites from fungal endophytes of
conifer trees. Nat Prod Commun 4(11):1497–1504
Suryanarayanan TS, Rajulu G, Vidal S (2016) Biological control through fungal endophytes: gaps
in knowledge hindering success. Curr Biotechnol 5:1–13
Taechowisan T, Wanbanjob A, Tuntiwachwuttikul P, Taylor WC (2006) Identification of Streptomyces sp. Tc022, an endophyte in Alpinia galanga, and the isolation of actinomycin D. Ann
Microbiol. 2006(56):113–117. https://doi.org/10.1007/BF03174991
Tang L, Hamid Y, Sahito ZA, Gurajala HK, He Z, Yang X (2019) Effects of CO2 application coupled
with endophyte inoculation on rhizosphere characteristics and cadmium uptake by Sedum alfredii
Hance in response to cadmium stress. J Environ Manage 239:287–298
Tawfike AF, Romli M, Clements C et al (2019) Isolation of anticancer and anti-trypanosome
secondary metabolites from the endophytic fungus Aspergillus flocculus via bioactivity guided
isolation and MS based metabolomics. J Chromatogr B 1106:71–83. https://doi.org/10.1016/j.
jchromb.2018.12.032
Tomasino SF, Leister RT, Dimock MB, Beach RM, Kelly JL (1995) Field performance of Clavibacter xyli subsp. cynodontis expressing the insecticidal protein gene cryIA (c) of Bacillus
thuringiensis against European corn borer in field corn. Biol Control 5(3):442–448
Ullah A, Heng S, Farooq M, Munis H, Fahad S, Yang X (2015) Phytoremediation of heavy metals
assisted by plant growth promoting (PGP) bacteria: a review. Environ Exp Bot 117:28–40
Vázquez-Chimalhua E, Ruíz-Herrera LF, Barrera-Ortiz S, Valencia-Cantero E, López-Bucio J
(2019) The bacterial volatile dimethyl-hexa-decylamine reveals an antagonistic interaction
between jasmonic acid and cytokinin in controlling primary root growth of Arabidopsis seedlings.
Protoplasma 256(3):643–654. https://doi.org/10.1007/s00709-018-1327-9
Verma P, Yadav AN, Khannam KS, Mishra S, Kumar S, Saxena AK et al (2019) Appraisal of diversity
and functional attributes of thermotolerant wheat associated bacteria from the peninsular zone of
India. Saudi J Biol Sci 26(7):1882–1895. https://doi.org/10.1016/j.sjbs.2016.01.042
Verma P, Yadav AN, Khannam KS, Panjiar N, Kumar S, Saxena AK et al (2015) Assessment of
genetic diversity and plant growth promoting attributes of psychrotolerant bacteria allied with
wheat (Triticum aestivum) from the northern hills zone of India. Ann Microbiol 65(4):1885–1899.
https://doi.org/10.1007/s13213-014-1027-4
Vicente-Hernández A, Salgado-Garciglia R, Valencia-Cantero E et al (2019) Bacillus methylotrophicus M4-96 stimulates the growth of strawberry (Fragaria x ananassa “Aromas”) plants in vitro
