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Endophytic Bacteria In The Phytodegradation Of Persistent Organic Pollutants


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Examples of endophytic bacteria, in whose genomes the presence of genes involved in the degradation of organic pollutants has been found

Bacterial endophyte Host plant(s) Gene Coded enzyme References
Pseudomonas sp. ITRI53 Pseudomonas mandelii 6FXS Lolium multiflorum L. Lotus corniculatus alkB alkane monooxygenase [4][51]
Rhodococcus fascians L11 Rhodococcus sp. 4WK Lolium multiflorum L., Oenothera biennis alkH alkane hydroxylase [29][51]
Enterobacter ludwigii ISI10-3 E. ludwigii ISI10-4 E. ludwigii BRI10-9 Stenotrophomonas maltophilia 5XS Pseudomonas umsongensis 8.1WK Lolium multiflorum var. Taurus, Lotus corniculatus var. Leo, Medicago sativa var. Harpe Lotus corniculatus, Oenothera biennis CYP153 cytochrome P450 hydroxylase [82][51]
Burkholderia cepacia FX2 Zea mays, Tricticum durum c23o catechol 2,3-dioxygenase [74]
Pseudomonas putdia VM1441 (pNAH7) Pisum sativum ndoB naphthalene dioxygenase [15]
Pseudomonas fluorescens ATCC 17397 Elymus angustus Trin. nidA naphthalene dioxygenase [54]
Pseudomonas syringae Lz4W Pseudomonas poae DSM Agropyron elongatum phnAc phenanthrene dioxygenase [54]
Rhodococcus fascians L11 Lolium multiflorum L. pah alpha subunit of the PAH-ringhydroxylating dioxygenases [29]
Pseudomonas sp. BF1-3 Platycodon grandiflorus ophB organophosphorus hydrolase [44]
Burholderia cepacia VM1468 Populus deltoides x(trichocarpa x deltoides) tomA toluene monooxygenase [70]
Burkolderia phytofirmans PSJN Zea mays GST glutathione-S-transferase [41]

Examples of endophytic bacteria promoting the growth of plants and exhibiting the ability to degrade organic pollutants

Bacterial endophyte Host plant(s) Plant growth-promoting traits Degraded organic pollutants References
Pseudomonas putida L1 Lolium perenne L. production of IAA, production of siderophores, production of HCN diesel oil [29]
Enterobacter asburiae 4FJK Hieracium piloselloides production of ACC deaminase, production of IAA, production of HCN, production of NH3 diesel oil [50]
Pseudomonas sp. 1FWK Oenothera biennis production of ACC deaminase, production of IAA, production of siderophores diesel oil [51]
Enterobacter ludwigii ISI10-3, E. ludwigii ISI10-4, E. ludwigii BRI10-9 Lolium multiflorum var. Taurus, Lotus corniculatus var. Leo, Medicago sativa var. Harpe production of ACC deaminase alkanes [82]
Bacillus sp. SBER3 Populus deltoides production of ACC deaminase, production of IAA, production of siderophores, production of lytic enzymes anthracene, naphthalene, benzene, toluene, xylene [7]
Enterobacter sp. 12J1 Allium macrostemon production of IAA, production of siderophores, phosphate solubilization pyrene [65]
Achromobacter xylosoxidans F3B Chrysopogon zizanioides production of IAA, nitrogen fixation toluene [19]
Burkholderia cepacia FX2 Zea mays, Tricticum durum production of siderophores, phosphate solubilization toluene [74]
Burkolderia phytofirmans PSJN Acacia amplicep production of ACC deaminase textile wastewaters [2]
Pseudomonas sp. E46 Spirodela polyrhiza production of IAA fenpropathrin [75]
eISSN:
2545-3149
Języki:
Angielski, Polski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Life Sciences, Microbiology and Virology