Bacillus
sp., Pantoea
sp., Pseudomonas
sp., Staphylococcus
sp.,
Paenibacillus
sp., Advenella,
Arthrobacter,
and Variovorax
Selenium (Se)
Stanleya pinnata, Astragalus bisulcatus
Reduce selenite and nitrite, produce siderophores, plant growth
promotion
Sura-de Jong
et al. (2015)
Microbacterium
sp. EIKU5,
Shinella
sp. EIKU6, and Micrococcus
sp. EIKU8
Arsenic (As) and uranium (U)
–
Resistance and oxidation, U
removal
Bhakat et al.
(2019)
Pantoea
sp. BRM17
Phosphogypsum
(PG) (a by-product of the phosphate fertilizer industry)
Canola (Brassica napus)
Siderophores, IAA,
exopolysaccharides (EPS),
ammonia (NH
3 ), and ACC
deaminase activity
Trifi et al.
(2020)
Bacillus subtilis
Plasticizer Di-butyl phthalate
(DBP)
Ageratum conyzoides,
Youngia japonica
Degradation into mono-butyl
phthalate and phthalic acid, use as
C source
Huang et al.
(2018)
8 Bioremediation of Polluted Soil by Using Plant Growth–Promoting Rhizobacteria
217
sp., Pantoea
sp., Pseudomonas
sp., Staphylococcus
sp.,
Paenibacillus
sp., Advenella,
Arthrobacter,
and Variovorax
Selenium (Se)
Stanleya pinnata, Astragalus bisulcatus
Reduce selenite and nitrite, produce siderophores, plant growth
promotion
Sura-de Jong
et al. (2015)
Microbacterium
sp. EIKU5,
Shinella
sp. EIKU6, and Micrococcus
sp. EIKU8
Arsenic (As) and uranium (U)
–
Resistance and oxidation, U
removal
Bhakat et al.
(2019)
Pantoea
sp. BRM17
Phosphogypsum
(PG) (a by-product of the phosphate fertilizer industry)
Canola (Brassica napus)
Siderophores, IAA,
exopolysaccharides (EPS),
ammonia (NH
3 ), and ACC
deaminase activity
Trifi et al.
(2020)
Bacillus subtilis
Plasticizer Di-butyl phthalate
(DBP)
Ageratum conyzoides,
Youngia japonica
Degradation into mono-butyl
phthalate and phthalic acid, use as
C source
Huang et al.
(2018)
8 Bioremediation of Polluted Soil by Using Plant Growth–Promoting Rhizobacteria
217
