Goswami D, Thakker JN, Dhandhukia PC, Tejada Moral M (2016) Portraying mechanics of plant
growth promoting rhizobacteria (PGPR): a review. Cogent Food Agric 2:1127500
Grover M, Ali SK, Sandhya V, Rasul A, Venkateswarlu B (2011) Role of microorganisms in
adaptation of agriculture crops to abiotic stresses. World J Microbiol Biotechnol 27:1231–1240.
https://doi.org/10.1007/s11274-010-0572-7
Hallmann J (1997) Bacterial endophytes in agricultural crops bacterial endophytes in agricultural
crops. Can J Microbiol 43:895–914
Han HS, Lee KD (2005) Plant growth promoting rhizobacteria effect on antioxidant status,
photosynthesis, mineral uptake and growth of lettuce under soil salinity. Res J Agri BioI Sci
1(3):210–215
Hardoim PR, van Overbeek LS, van Elsas JD (2008) Properties of bacterial endophytes and their
proposed role in plant growth. Trends Microbiol 16:463–471. https://doi.org/10.1016/j.tim.
2008.07.008
Hashidoko Y, Hayashi H, Hasegawa T, Purnomo E, Osaki M, Tahara S (2006) Frequent isolation of
sphingomonads from local rice varieties and other weeds grown on acid sulfate soil in South
Kalimantan, Indonesia. Tropics 15:391–395
Hendriyani E, Warseno T, Oktavia GAE (2019) Growth of slipper orchid Paphiopedilum javanicum
(Reinw ex Lindl) Pfitzer during acclimatization stage. J Biodjati 4:2
Ibijbijen J, Urquiage S, Ismaili M, Alves BJR, Boodey RM (1996) Effect of arbuscular mycorrhiza
on uptake of nitrogen by Brachiaria arrecta and Sorghum vulgare from soil labelled for several
years with 15N. New Phytol 133:487494
Khan AL, Lee I (2013) Endophytic Penicillium funiculosum LHL06 secretes gibberellin that
reprograms Glycine max L. growth during copper stress. BMC Plant Biol 13:86. https://doi.
org/10.1186/1471-2229-13-86
Khan MS, Zaidi A, Wani PA, Oves M (2009) Role of plant growth promoting rhizobacteria in the
remediation of metal contaminated soils. Environ Chem Lett 7:1–19
Khan MS, Zaidi A, Ahemad M, Oves M, Wani PA (2010) Plant growth promotion by phosphate
solubilizing fungi—current perspective. Arch Agron Soil Sci 56(1):73–98. https://doi.org/10.
1080/03650340902806469
Klopper JW, Leon J, Teintze M, Schroth MN (1980) Pseudomonas siderophores: a mechanism
explaining disease suppressive soils. Curr Microbiol 4:317–320
Koornneef A, Pieterse CMJ (2008) Cross-talk in defense signaling. Plant Physiol 146:839–844
Kudoyarova GR, Arkhipova TN, Melent’ev AI (2015) Role of bacterial phytohormones in plant
growth regulation and their development in bacterial metabolites in sustainable agroecosystem.
In: Maheshwari DK (ed) Sustainable development and biodiversity, vol 12. Springer, Cham, pp
69–86. https://doi.org/10.1007/978-3-319-24654-3_4
Kumar S (2011) Composting of municipal solid waste. Crit Rev Biotechnol 31:112–136
Laili N, Antonius S, Kartika Y, Agustiyani D (2016) Pilot scale technology for production organic
biofertilizer powder starter to support sustainable agriculture development. Proceedings of
international conference on appropriate technology development (ICATDev)
Lugtenberg B, Kamilova F (2009) Plant growth promoting rhizobacteria. Annu Rev Microbiol 63
(1):541–556. https://doi.org/10.1146/annurev.micro.62.081307.162918
Ma JF (2005) Plant root responses to three abundant soil minerals: silicon, aluminum and iron. Crit
Rev Plant Sci 24(4):267–281. https://doi.org/10.1080/07352680500196017
Machuca G, Pereira A, Aguiar AM, Milagres (2007) Metal-chelating compounds produced by
ectomycorrhizal fungi collected from pine plantations. Lett Appl Microbiol 44:7–12
Mahanty T, Bhattacharjee S, Goswami M, Bhattacharyya P, Das B, Ghosh A, Tribedi P (2017)
Biofertilizers: a potential approach for sustainable agriculture development. Environ Sci Pollut
Res 24(4):3315–3335. https://doi.org/10.1007/s11356-016-8104-0
Meena VS, Maurya BR, Verma JP (2014) Does a rhizospheric microorganism enhance K+
availability in agricultural soils? Microbiol Res 169:337–347
9 Plant Growth-Promoting Rhizobacteria (PGPR) and Compost Materials for. . .
323
growth promoting rhizobacteria (PGPR): a review. Cogent Food Agric 2:1127500
Grover M, Ali SK, Sandhya V, Rasul A, Venkateswarlu B (2011) Role of microorganisms in
adaptation of agriculture crops to abiotic stresses. World J Microbiol Biotechnol 27:1231–1240.
https://doi.org/10.1007/s11274-010-0572-7
Hallmann J (1997) Bacterial endophytes in agricultural crops bacterial endophytes in agricultural
crops. Can J Microbiol 43:895–914
Han HS, Lee KD (2005) Plant growth promoting rhizobacteria effect on antioxidant status,
photosynthesis, mineral uptake and growth of lettuce under soil salinity. Res J Agri BioI Sci
1(3):210–215
Hardoim PR, van Overbeek LS, van Elsas JD (2008) Properties of bacterial endophytes and their
proposed role in plant growth. Trends Microbiol 16:463–471. https://doi.org/10.1016/j.tim.
2008.07.008
Hashidoko Y, Hayashi H, Hasegawa T, Purnomo E, Osaki M, Tahara S (2006) Frequent isolation of
sphingomonads from local rice varieties and other weeds grown on acid sulfate soil in South
Kalimantan, Indonesia. Tropics 15:391–395
Hendriyani E, Warseno T, Oktavia GAE (2019) Growth of slipper orchid Paphiopedilum javanicum
(Reinw ex Lindl) Pfitzer during acclimatization stage. J Biodjati 4:2
Ibijbijen J, Urquiage S, Ismaili M, Alves BJR, Boodey RM (1996) Effect of arbuscular mycorrhiza
on uptake of nitrogen by Brachiaria arrecta and Sorghum vulgare from soil labelled for several
years with 15N. New Phytol 133:487494
Khan AL, Lee I (2013) Endophytic Penicillium funiculosum LHL06 secretes gibberellin that
reprograms Glycine max L. growth during copper stress. BMC Plant Biol 13:86. https://doi.
org/10.1186/1471-2229-13-86
Khan MS, Zaidi A, Wani PA, Oves M (2009) Role of plant growth promoting rhizobacteria in the
remediation of metal contaminated soils. Environ Chem Lett 7:1–19
Khan MS, Zaidi A, Ahemad M, Oves M, Wani PA (2010) Plant growth promotion by phosphate
solubilizing fungi—current perspective. Arch Agron Soil Sci 56(1):73–98. https://doi.org/10.
1080/03650340902806469
Klopper JW, Leon J, Teintze M, Schroth MN (1980) Pseudomonas siderophores: a mechanism
explaining disease suppressive soils. Curr Microbiol 4:317–320
Koornneef A, Pieterse CMJ (2008) Cross-talk in defense signaling. Plant Physiol 146:839–844
Kudoyarova GR, Arkhipova TN, Melent’ev AI (2015) Role of bacterial phytohormones in plant
growth regulation and their development in bacterial metabolites in sustainable agroecosystem.
In: Maheshwari DK (ed) Sustainable development and biodiversity, vol 12. Springer, Cham, pp
69–86. https://doi.org/10.1007/978-3-319-24654-3_4
Kumar S (2011) Composting of municipal solid waste. Crit Rev Biotechnol 31:112–136
Laili N, Antonius S, Kartika Y, Agustiyani D (2016) Pilot scale technology for production organic
biofertilizer powder starter to support sustainable agriculture development. Proceedings of
international conference on appropriate technology development (ICATDev)
Lugtenberg B, Kamilova F (2009) Plant growth promoting rhizobacteria. Annu Rev Microbiol 63
(1):541–556. https://doi.org/10.1146/annurev.micro.62.081307.162918
Ma JF (2005) Plant root responses to three abundant soil minerals: silicon, aluminum and iron. Crit
Rev Plant Sci 24(4):267–281. https://doi.org/10.1080/07352680500196017
Machuca G, Pereira A, Aguiar AM, Milagres (2007) Metal-chelating compounds produced by
ectomycorrhizal fungi collected from pine plantations. Lett Appl Microbiol 44:7–12
Mahanty T, Bhattacharjee S, Goswami M, Bhattacharyya P, Das B, Ghosh A, Tribedi P (2017)
Biofertilizers: a potential approach for sustainable agriculture development. Environ Sci Pollut
Res 24(4):3315–3335. https://doi.org/10.1007/s11356-016-8104-0
Meena VS, Maurya BR, Verma JP (2014) Does a rhizospheric microorganism enhance K+
availability in agricultural soils? Microbiol Res 169:337–347
9 Plant Growth-Promoting Rhizobacteria (PGPR) and Compost Materials for. . .
323
