3 Microbial Endophytes: Sustainable Approach …
73
Sorensen J, Sessitsch A (2015) Plant-associated bacteria lifestyle and molecular interactions. In:
van Elsas JD, et al (eds) Modern soil Microbiology, 2nd edn. CRC Press, 2006, pp 211–236
Spaepen S, Vanderleyden J (2011) Auxin and plant-microbe interactions. Cold Spring Harb Perspect
Biol 3(4):a001438
Spagnoletti FN, Tobar NE, Di Pardo AF, Chiocchio VM, Lavado RS (2017) Dark septate endophytes
present different potential to solubilize calcium, iron and aluminum phosphates. Appl Soil Ecol
111:25–32
Sprent JI, deFaria SM (1998) Mechanisms of infection of plants by nitrogen fixing organisms. Plant
Soil 110:157–165
Sturz A, Nowak J (2000) Endophytic communities of rhizobacteria and the strategies required to
create yield enhancing associations with crops. Appl Soil Ecol 15:183–190
Sturz AV, Christie BR, Matheson BG, Nowak J (1997) Biodiversity of endophytic bacteria which
colonize red clover nodules, roots, stems and foliage and their influence on host growth. Biol
Fertil Soils 25:13–19
Sturz AV, Christie BR, Nowak J (2000) Bacterial endophytes: potential role in developing sustainable
systems of crop production. Crit Rev Plant Sci 19:1–30
Sun H, Kong L, Du H, Chai Z, Gao J, Cao Q (2019) Benefits of Pseudomonas poae s61 on Astragalus
mongholicus growth and bioactive compound accumulation under drought stress. J Plant Interact
14(1):205–212
Sun LN, Zhang YF, He LY, Chen ZJ, Wang QY, Qian M, Sheng XF (2010) Genetic diversity and
characterization of heavy metal resistant- endophytic bacteria from two copper-tolerant plant
species on copper mine wasteland. Biores Technol 101:501–509
Sun Y, Cheng Z, Glick BR (2009) The presence of a 1-aminocyclopropane-1-carboxylate (ACC)
deaminase deletion mutation alters the physiology of the endophytic plant growth promoting
bacterium Burkholderia phytofirmans PsJN. FEMS Microbiol Lett 296:131–136
Sziderics AH, Rasche F, Trognitz F, Sessitsch A, Wilhelm E (2007) Bacterial endophytes contribute
to abiotic stress adaptation in pepper plants (Capsicum annuum L.). Can J Microbiol 53:1195–
1202
Taghavi S, Garafola C, Monchy S, Newman L, Hoffman A, Weyens N, Barac T, Vangronsveld J,
vander Lelie D (2009) Genome survey and characterization of endophytic bacteria exhibiting a
beneficial effect on growth and development of poplar trees. Appl Environ Microbiol 75:748–757
Tao GC, Tian SJ, Cai MY, Xie GH (2008) Phosphate- solubilizing and mineralizing abilities of
bacteria isolated from soils. Pedosphere 18:515–523
Thakore Y (2006) The biopesticide market for global agricultural use. Indust Biotechnol 2:194–208
Thomas P, Upreti R (2014) Testing of bacterial endophytes from non-host sources as potential
antagonistic agents against tomato wilt pathogen Ralstonia solanacearum. Adv Microbiol 4:656
Timmusk S, Paalme V, Pavlicek T, Bergquist J, Vangala A, Danilas T (2011) Bacterial distribution
in the rhizosphere of wild barley under contrasting microclimates. PLoS One 6:e17968
Torsvik V, Øvreås L (2002) Microbial diversity and function in soil: from genes to ecosystems. Curr
Opin Microbiol 5:240–245
Trivedi P, Duan Y, Wang N (2010) Huanglongbing, a systemic disease, restructures the bacterial
community associated with citrus roots. Appl Environ Microbiol 76:3427–3436
Trognitz F, Scherwinski K, Fekete A, Schmidt S, Eberl L, Rodewald J, Schmid M, Compant S, Hartmann A, Schmitt-Kopplin P (2008) Interaction between potato and the endophyte Burkholderia
phytofirmans
Trotel-Aziz P, Couderchet M, Biagianti S, Aziz A (2008) Characterization of new bacterial biocontrol agents Acinetobacter Bacillus, Pantoea and Pseudomonas spp. mediating grapevine resistance
against Botrytis cinerea. Environ Exp Bot 64:21–32
Truyens S, Weyens N, Cuypers A, Vangronsveld J (2014) Bacterial seed endophytes: genera, vertical
transmission and interaction with plants. Environ Microbiol Rep 7:40–50
Turan M, Ataoglu N, Sahin F (2006) Evaluation of the capacity of phosphate solubilizing bacteria
and fungi on different forms of phosphorus in liquid culture. J Sustain Agric 28:99–108
73
Sorensen J, Sessitsch A (2015) Plant-associated bacteria lifestyle and molecular interactions. In:
van Elsas JD, et al (eds) Modern soil Microbiology, 2nd edn. CRC Press, 2006, pp 211–236
Spaepen S, Vanderleyden J (2011) Auxin and plant-microbe interactions. Cold Spring Harb Perspect
Biol 3(4):a001438
Spagnoletti FN, Tobar NE, Di Pardo AF, Chiocchio VM, Lavado RS (2017) Dark septate endophytes
present different potential to solubilize calcium, iron and aluminum phosphates. Appl Soil Ecol
111:25–32
Sprent JI, deFaria SM (1998) Mechanisms of infection of plants by nitrogen fixing organisms. Plant
Soil 110:157–165
Sturz A, Nowak J (2000) Endophytic communities of rhizobacteria and the strategies required to
create yield enhancing associations with crops. Appl Soil Ecol 15:183–190
Sturz AV, Christie BR, Matheson BG, Nowak J (1997) Biodiversity of endophytic bacteria which
colonize red clover nodules, roots, stems and foliage and their influence on host growth. Biol
Fertil Soils 25:13–19
Sturz AV, Christie BR, Nowak J (2000) Bacterial endophytes: potential role in developing sustainable
systems of crop production. Crit Rev Plant Sci 19:1–30
Sun H, Kong L, Du H, Chai Z, Gao J, Cao Q (2019) Benefits of Pseudomonas poae s61 on Astragalus
mongholicus growth and bioactive compound accumulation under drought stress. J Plant Interact
14(1):205–212
Sun LN, Zhang YF, He LY, Chen ZJ, Wang QY, Qian M, Sheng XF (2010) Genetic diversity and
characterization of heavy metal resistant- endophytic bacteria from two copper-tolerant plant
species on copper mine wasteland. Biores Technol 101:501–509
Sun Y, Cheng Z, Glick BR (2009) The presence of a 1-aminocyclopropane-1-carboxylate (ACC)
deaminase deletion mutation alters the physiology of the endophytic plant growth promoting
bacterium Burkholderia phytofirmans PsJN. FEMS Microbiol Lett 296:131–136
Sziderics AH, Rasche F, Trognitz F, Sessitsch A, Wilhelm E (2007) Bacterial endophytes contribute
to abiotic stress adaptation in pepper plants (Capsicum annuum L.). Can J Microbiol 53:1195–
1202
Taghavi S, Garafola C, Monchy S, Newman L, Hoffman A, Weyens N, Barac T, Vangronsveld J,
vander Lelie D (2009) Genome survey and characterization of endophytic bacteria exhibiting a
beneficial effect on growth and development of poplar trees. Appl Environ Microbiol 75:748–757
Tao GC, Tian SJ, Cai MY, Xie GH (2008) Phosphate- solubilizing and mineralizing abilities of
bacteria isolated from soils. Pedosphere 18:515–523
Thakore Y (2006) The biopesticide market for global agricultural use. Indust Biotechnol 2:194–208
Thomas P, Upreti R (2014) Testing of bacterial endophytes from non-host sources as potential
antagonistic agents against tomato wilt pathogen Ralstonia solanacearum. Adv Microbiol 4:656
Timmusk S, Paalme V, Pavlicek T, Bergquist J, Vangala A, Danilas T (2011) Bacterial distribution
in the rhizosphere of wild barley under contrasting microclimates. PLoS One 6:e17968
Torsvik V, Øvreås L (2002) Microbial diversity and function in soil: from genes to ecosystems. Curr
Opin Microbiol 5:240–245
Trivedi P, Duan Y, Wang N (2010) Huanglongbing, a systemic disease, restructures the bacterial
community associated with citrus roots. Appl Environ Microbiol 76:3427–3436
Trognitz F, Scherwinski K, Fekete A, Schmidt S, Eberl L, Rodewald J, Schmid M, Compant S, Hartmann A, Schmitt-Kopplin P (2008) Interaction between potato and the endophyte Burkholderia
phytofirmans
Trotel-Aziz P, Couderchet M, Biagianti S, Aziz A (2008) Characterization of new bacterial biocontrol agents Acinetobacter Bacillus, Pantoea and Pseudomonas spp. mediating grapevine resistance
against Botrytis cinerea. Environ Exp Bot 64:21–32
Truyens S, Weyens N, Cuypers A, Vangronsveld J (2014) Bacterial seed endophytes: genera, vertical
transmission and interaction with plants. Environ Microbiol Rep 7:40–50
Turan M, Ataoglu N, Sahin F (2006) Evaluation of the capacity of phosphate solubilizing bacteria
and fungi on different forms of phosphorus in liquid culture. J Sustain Agric 28:99–108
