Beijerinck MW (1901) On oligonitrophilous bacteria. In: Proceedings of the Koninklijke
Nederlandse Akademie van Wetenschappen, vol 3, pp 586–595
Bertalan M, Albano R, de Pádua V et al (2009) Complete genome sequence of the sugarcane
nitrogen-fixing endophyte Gluconacetobacter diazotrophicus Pal5. BMC Genomics 10:450.
https://doi.org/10.1186/1471-2164-10-450
Beyerinck MW (1888) Die Bacterien der Papilionaceen-Knöllchen. Bot Ztg (46):725–735;
(47):741–750; (48):757–771; (49):781–790; (50):797–804
Biswas JC, Ladha JK, Dazzo FB, Yanni YG, Rolfe BG (2000) Rhizobial inoculation influences
seedling vigor and yield of rice. Agron J 92:880–886
Boddey RM, Baldani VLD, Baldani JI, Dobereiner J (1986) Effect of inoculation of Azospirillum
spp. on nitrogen accumulation by field-grown wheat. Plant Soil 95:109–121
Boddey RM, Urquiaga S, Reis V, Döbereiner J (1991) Biological nitrogen fixation associated with
sugar cane. Plant Soil 137:111–117
Böhm M, Hurek T, Reinhold-Hurek B (2007) Twitching motility is essential for endophytic rice
colonization by the N2-fixing endophyte Azoarcus sp. strain BH72. Mol Plant Microbe Interact
20:526–533
Bowen GD, Rovira AD (1999) The rhizosphere and its management to improve plant growth. Adv
Agron 66:1–102
Bray F (1986) The rice economics. Technology and development in Asian societies. Basil Blackwell, Oxford, p 254
Brown ME, Burlingham SK, Jackson RM (1964) Studies on Azotobacter species in soil.
II. Populations of Azotobacter in the rhizosphere and effects of artificial inoculation. Plant
and Soil 17:320–332
Buschart A, Sachs S, Chen X, Herglotz J, Krause A, Reinhold-Hurek B (2012) Flagella mediate
endophytic competence rather than act as MAMPS in rice–Azoarcus sp. strain BH72 interactions. Mol Plant-Microbe Interact 25:191–199
Caballero-Mellado J, Martínez-Romero E (1994) Limited genetic diversity in the endophytic
sugarcane bacterium Acetobacter diazotrophicus. Appl Environ Microbiol 60:1532–1537
Camilios-Neto D, Bonato P, Wassem R, Tadra-Sfeir MZ, Brusamarello-Santos LC, Valdameri G,
Donatti L, Faoro H, Weiss VA, Chubatsu LS (2014) Dual RNA-seq transcriptional analysis of
wheat roots colonized by Azospirillum brasilense reveals up-regulation of nutrient acquisition
and cell cycle genes. BMC Genom. 15:378
Carvalho TL, Ballesteros HG, Thiebaut F, Ferreira PC, Hemerly AS (2016) Nice to meet you:
genetic, epigenetic and metabolic controls of plant perception of beneficial associative and
endophytic diazotrophic bacteria in non-leguminous plants. Plant Mol Biol 90:561–574
Cases I, de Lorenzo V (2005) Promoters in the environment transcriptional regulation in its natural
context. Nature Rev Microbiol 3:105–118. https://doi.org/10.1038/nrmicro1084
Cavalcante VA, Döbereiner J (1988) A new acid tolerant nitrogen fixing bacterium associated with
sugar cane. Plant Soil 108:23–31. https://doi.org/10.1007/BF02370096
Chaintreuil C, Giraud E, Prin Y, Lorquin J, Ba A, Gillis M, de Laudie P, Dreyfus B (2000)
Photosynthetic bradyrhizobia are natural endophyte of the African wild rice Oryza breviligulata.
Appl Environ Microbiol 66:5437–5447
Chen W-M, Laevens S, Lee T-M, Coenye T, DeVos P, Mergeay M, Vandamme P (2001) Ralstonia
taiwanensis sp. nov., isolated from root nodules of Mimosa species and sputum of a cystic
fibrosis patient. Int J Syst Evol Bacteriol 51:1729–1735
Church MJ, Böttjer D (2013) Diversity, ecology, and biogeochemical influence of N 2 fixing
microorganisms in the sea. In: Levin SA (ed) Encyclopedia of biodiversity, vol 2, 2nd edn.
Academic Press, Waltham, MA, pp 608–625. https://doi.org/10.1016/B978-0-12-384719-5.
00403-2
Cleenwerck I, Vandemeulebroecke K, Janssens D, Swing J (2002) Re-examination of the genus
Acetobacter, with descriptions of Acetobacter cerevisiae sp. nov. and Acetobacter malorum
sp. Nov Inter Jour Syst Evol Microbiol 52:1551–1558
20 The Diazotroph as an Endophyte and How a Diazotroph Interacts with Its. . .
415
Nederlandse Akademie van Wetenschappen, vol 3, pp 586–595
Bertalan M, Albano R, de Pádua V et al (2009) Complete genome sequence of the sugarcane
nitrogen-fixing endophyte Gluconacetobacter diazotrophicus Pal5. BMC Genomics 10:450.
https://doi.org/10.1186/1471-2164-10-450
Beyerinck MW (1888) Die Bacterien der Papilionaceen-Knöllchen. Bot Ztg (46):725–735;
(47):741–750; (48):757–771; (49):781–790; (50):797–804
Biswas JC, Ladha JK, Dazzo FB, Yanni YG, Rolfe BG (2000) Rhizobial inoculation influences
seedling vigor and yield of rice. Agron J 92:880–886
Boddey RM, Baldani VLD, Baldani JI, Dobereiner J (1986) Effect of inoculation of Azospirillum
spp. on nitrogen accumulation by field-grown wheat. Plant Soil 95:109–121
Boddey RM, Urquiaga S, Reis V, Döbereiner J (1991) Biological nitrogen fixation associated with
sugar cane. Plant Soil 137:111–117
Böhm M, Hurek T, Reinhold-Hurek B (2007) Twitching motility is essential for endophytic rice
colonization by the N2-fixing endophyte Azoarcus sp. strain BH72. Mol Plant Microbe Interact
20:526–533
Bowen GD, Rovira AD (1999) The rhizosphere and its management to improve plant growth. Adv
Agron 66:1–102
Bray F (1986) The rice economics. Technology and development in Asian societies. Basil Blackwell, Oxford, p 254
Brown ME, Burlingham SK, Jackson RM (1964) Studies on Azotobacter species in soil.
II. Populations of Azotobacter in the rhizosphere and effects of artificial inoculation. Plant
and Soil 17:320–332
Buschart A, Sachs S, Chen X, Herglotz J, Krause A, Reinhold-Hurek B (2012) Flagella mediate
endophytic competence rather than act as MAMPS in rice–Azoarcus sp. strain BH72 interactions. Mol Plant-Microbe Interact 25:191–199
Caballero-Mellado J, Martínez-Romero E (1994) Limited genetic diversity in the endophytic
sugarcane bacterium Acetobacter diazotrophicus. Appl Environ Microbiol 60:1532–1537
Camilios-Neto D, Bonato P, Wassem R, Tadra-Sfeir MZ, Brusamarello-Santos LC, Valdameri G,
Donatti L, Faoro H, Weiss VA, Chubatsu LS (2014) Dual RNA-seq transcriptional analysis of
wheat roots colonized by Azospirillum brasilense reveals up-regulation of nutrient acquisition
and cell cycle genes. BMC Genom. 15:378
Carvalho TL, Ballesteros HG, Thiebaut F, Ferreira PC, Hemerly AS (2016) Nice to meet you:
genetic, epigenetic and metabolic controls of plant perception of beneficial associative and
endophytic diazotrophic bacteria in non-leguminous plants. Plant Mol Biol 90:561–574
Cases I, de Lorenzo V (2005) Promoters in the environment transcriptional regulation in its natural
context. Nature Rev Microbiol 3:105–118. https://doi.org/10.1038/nrmicro1084
Cavalcante VA, Döbereiner J (1988) A new acid tolerant nitrogen fixing bacterium associated with
sugar cane. Plant Soil 108:23–31. https://doi.org/10.1007/BF02370096
Chaintreuil C, Giraud E, Prin Y, Lorquin J, Ba A, Gillis M, de Laudie P, Dreyfus B (2000)
Photosynthetic bradyrhizobia are natural endophyte of the African wild rice Oryza breviligulata.
Appl Environ Microbiol 66:5437–5447
Chen W-M, Laevens S, Lee T-M, Coenye T, DeVos P, Mergeay M, Vandamme P (2001) Ralstonia
taiwanensis sp. nov., isolated from root nodules of Mimosa species and sputum of a cystic
fibrosis patient. Int J Syst Evol Bacteriol 51:1729–1735
Church MJ, Böttjer D (2013) Diversity, ecology, and biogeochemical influence of N 2 fixing
microorganisms in the sea. In: Levin SA (ed) Encyclopedia of biodiversity, vol 2, 2nd edn.
Academic Press, Waltham, MA, pp 608–625. https://doi.org/10.1016/B978-0-12-384719-5.
00403-2
Cleenwerck I, Vandemeulebroecke K, Janssens D, Swing J (2002) Re-examination of the genus
Acetobacter, with descriptions of Acetobacter cerevisiae sp. nov. and Acetobacter malorum
sp. Nov Inter Jour Syst Evol Microbiol 52:1551–1558
20 The Diazotroph as an Endophyte and How a Diazotroph Interacts with Its. . .
415
