196
H. B. Slama et al.
Ahemad M, Kibret M (2014) Mechanisms and applications of plant growth promoting rhizobacteria:
current perspective. J King Saud Univ Sci 26:1–20. https://doi.org/10.1016/j.jksus.2013.05.001
Ahmad P, Alyemeni MN, Wijaya L, Alam P, Ahanger MA, Alamri SA (2017) Jasmonic acid
alleviates negative impacts of cadmium stress by modifying osmolytes and antioxidants in faba
bean (Vicia faba L.). Arch Agron Soil Sci 63:1889–1899. https://doi.org/10.1080/03650340.2017.
1313406
Akinsanya MA, Goh JK, Lim SP, Ting ASY (2015) Metagenomics study of endophytic bacteria in
Aloe vera using next-generation technology. Genom Data 6:159–163. https://doi.org/10.1016/j.
gdata.2015.09.004
Akone SH, Mándi A, Kurtán T, Hartmann R, Lin W, Daletos G, Proksch P (2016) Inducing
secondary metabolite production by the endophytic fungus Chaetomium sp. through fungal–
bacterial co-culture and epigenetic modification. Tetrahedron 72:6340–6347. https://doi.org/10.
1016/j.tet.2016.08.022
Alenezi FN, Rekik I, Belka M, Ibrahim AF, Luptakova L, Jaspars M, Woodward S, Belbahri L
(2016) Strain-level diversity of secondary metabolism in the biocontrol species Aneurinibacillus
migulanus. Microbiol Res 182:116–124. https://doi.org/10.1016/j.micres.2015.10.007
Alenezi FN, Rekik I, Chenari Bouket A, Luptakova L, Weitz HJ, Rateb ME, Jaspars M, Woodward
S, Belbahri L (2017) Increased biological activity of Aneurinibacillus migulanus strains correlates
with the production of new gramicidin secondary metabolites. Front Microbiol 8:517. https://doi.
org/10.3389/fmicb.2017.00517
Alvin A, Miller KI, Neilan BA (2014) Exploring the potential of endophytes from medicinal plants as
sources of antimycobacterial compounds. Microbiol Res 169:483–495. https://doi.org/10.1016/
j.micres.2013.12.009
Azevedo JL, Maccheroni W Jr, Pereira JO, de Araújo WL (2000) Endophytic microorganisms: a
review on insect control and recent advances on tropical plants. Electron J Biotechnol 3:15–16.
https://doi.org/10.2225/vol3-issue1-fulltext-4
Babu AG, Shea PJ, Sudhakar D, Jung I-B, Oh B-T (2015) Potential use of Pseudomonas koreensis
AGB-1 in association with Miscanthus sinensis to remediate heavy metal (loid)-contaminated
mining site soil. J Environ Manag 151:160–166. https://doi.org/10.1016/j.jenvman.2014.12.045
Bary A (1866) Morphologie und physiologie der pilze, flechten und myxomyceten. W Engelmann.
https://doi.org/10.5962/bhl.title.120970
Belbahri L, Chenari Bouket A, Rekik I, Alenezi FN, Vallat A, Luptakova L, Petrovova E, Oszako T,
Cherrad S, Vacher S (2017) Comparative genomics of Bacillus amyloliquefaciens strains reveals a
core genome with traits for habitat adaptation and a secondary metabolites rich accessory genome.
Front Microbiol 8:1438. https://doi.org/10.3389/fmicb.2017.01438
Bera S, Sharma VP, Dutta S, Dutta D (2016) Biological decolorization and detoxification of
malachite green from aqueous solution by Dietzia maris NIT-D. J Taiwan Inst Chem E 67:271–284
Bharagava RN, Chowdhary P, Saxena G (2017) Bioremediation: an eco-sustainable green technology: its applications and limitations. In: Environmental pollutants and their bioremediation
approaches. CRC Press, Boca Raton, pp 1–22
Bhatt K, Maheshwari DK (2020) Zinc solubilizing bacteria (Bacillus megaterium) with multifarious
plant growth promoting activities alleviates growth in Capsicum annuum L. 3 Biotech 10(2):36
Bueso E, Muñoz-Bertomeu J, Campos F, Martínez C, Tello C, Martínez-Almonacid I, Ballester P,
Simón-Moya M, Brunaud V, Yenush L (2016) Arabidopsis COGWHEEL 1 links light perception
and gibberellins with seed tolerance to deterioration. The Plant J 87:583–596. https://doi.org/10.
1111/tpj.13220
Campisano A, Antonielli L, Pancher M, Yousaf S, Pindo M, Pertot I (2014) Bacterial endophytic
communities in the grapevine depend on pest management. PLoS One 9:e112763. https://doi.
org/10.1371/journal.pone.0112763
Cappellari L del R, Chiappero J, Banchio E (2019) Invisible signals from the underground: A
practical method to investigate the effect of microbial volatile organic compounds emitted by
rhizobacteria on plant growth. Biochem Mol Biol Educ 47(4):388–393. http://doi.org/10.1002/
bmb.21243
H. B. Slama et al.
Ahemad M, Kibret M (2014) Mechanisms and applications of plant growth promoting rhizobacteria:
current perspective. J King Saud Univ Sci 26:1–20. https://doi.org/10.1016/j.jksus.2013.05.001
Ahmad P, Alyemeni MN, Wijaya L, Alam P, Ahanger MA, Alamri SA (2017) Jasmonic acid
alleviates negative impacts of cadmium stress by modifying osmolytes and antioxidants in faba
bean (Vicia faba L.). Arch Agron Soil Sci 63:1889–1899. https://doi.org/10.1080/03650340.2017.
1313406
Akinsanya MA, Goh JK, Lim SP, Ting ASY (2015) Metagenomics study of endophytic bacteria in
Aloe vera using next-generation technology. Genom Data 6:159–163. https://doi.org/10.1016/j.
gdata.2015.09.004
Akone SH, Mándi A, Kurtán T, Hartmann R, Lin W, Daletos G, Proksch P (2016) Inducing
secondary metabolite production by the endophytic fungus Chaetomium sp. through fungal–
bacterial co-culture and epigenetic modification. Tetrahedron 72:6340–6347. https://doi.org/10.
1016/j.tet.2016.08.022
Alenezi FN, Rekik I, Belka M, Ibrahim AF, Luptakova L, Jaspars M, Woodward S, Belbahri L
(2016) Strain-level diversity of secondary metabolism in the biocontrol species Aneurinibacillus
migulanus. Microbiol Res 182:116–124. https://doi.org/10.1016/j.micres.2015.10.007
Alenezi FN, Rekik I, Chenari Bouket A, Luptakova L, Weitz HJ, Rateb ME, Jaspars M, Woodward
S, Belbahri L (2017) Increased biological activity of Aneurinibacillus migulanus strains correlates
with the production of new gramicidin secondary metabolites. Front Microbiol 8:517. https://doi.
org/10.3389/fmicb.2017.00517
Alvin A, Miller KI, Neilan BA (2014) Exploring the potential of endophytes from medicinal plants as
sources of antimycobacterial compounds. Microbiol Res 169:483–495. https://doi.org/10.1016/
j.micres.2013.12.009
Azevedo JL, Maccheroni W Jr, Pereira JO, de Araújo WL (2000) Endophytic microorganisms: a
review on insect control and recent advances on tropical plants. Electron J Biotechnol 3:15–16.
https://doi.org/10.2225/vol3-issue1-fulltext-4
Babu AG, Shea PJ, Sudhakar D, Jung I-B, Oh B-T (2015) Potential use of Pseudomonas koreensis
AGB-1 in association with Miscanthus sinensis to remediate heavy metal (loid)-contaminated
mining site soil. J Environ Manag 151:160–166. https://doi.org/10.1016/j.jenvman.2014.12.045
Bary A (1866) Morphologie und physiologie der pilze, flechten und myxomyceten. W Engelmann.
https://doi.org/10.5962/bhl.title.120970
Belbahri L, Chenari Bouket A, Rekik I, Alenezi FN, Vallat A, Luptakova L, Petrovova E, Oszako T,
Cherrad S, Vacher S (2017) Comparative genomics of Bacillus amyloliquefaciens strains reveals a
core genome with traits for habitat adaptation and a secondary metabolites rich accessory genome.
Front Microbiol 8:1438. https://doi.org/10.3389/fmicb.2017.01438
Bera S, Sharma VP, Dutta S, Dutta D (2016) Biological decolorization and detoxification of
malachite green from aqueous solution by Dietzia maris NIT-D. J Taiwan Inst Chem E 67:271–284
Bharagava RN, Chowdhary P, Saxena G (2017) Bioremediation: an eco-sustainable green technology: its applications and limitations. In: Environmental pollutants and their bioremediation
approaches. CRC Press, Boca Raton, pp 1–22
Bhatt K, Maheshwari DK (2020) Zinc solubilizing bacteria (Bacillus megaterium) with multifarious
plant growth promoting activities alleviates growth in Capsicum annuum L. 3 Biotech 10(2):36
Bueso E, Muñoz-Bertomeu J, Campos F, Martínez C, Tello C, Martínez-Almonacid I, Ballester P,
Simón-Moya M, Brunaud V, Yenush L (2016) Arabidopsis COGWHEEL 1 links light perception
and gibberellins with seed tolerance to deterioration. The Plant J 87:583–596. https://doi.org/10.
1111/tpj.13220
Campisano A, Antonielli L, Pancher M, Yousaf S, Pindo M, Pertot I (2014) Bacterial endophytic
communities in the grapevine depend on pest management. PLoS One 9:e112763. https://doi.
org/10.1371/journal.pone.0112763
Cappellari L del R, Chiappero J, Banchio E (2019) Invisible signals from the underground: A
practical method to investigate the effect of microbial volatile organic compounds emitted by
rhizobacteria on plant growth. Biochem Mol Biol Educ 47(4):388–393. http://doi.org/10.1002/
bmb.21243
