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Use of Bacillus-siamensis-inoculated biochar to decrease uptake of dibutyl phthalate in leafy vegetables

机译:使用暹罗芽孢杆菌接种的生物炭减少多叶蔬菜中邻苯二甲酸二丁酯的摄取

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Dibutyl phthalate (DBP) is a frequently detected farmland contaminant that is harmful to the environment and human health. In this study, a DBP-degrading endophytic Bacillus siamensis strain T7 was immobilized in rice husk-derived biochar for bioremediation of DBP-polluted agricultural soils. The effects of this microbe-biochar composite on the soil prokaryotic community and the mechanism by which it regulates DBP degradation, were also investigated. A supplement of T7-biochar composite not only significantly boosted DBP biodegradation in soil by raising the DBP degradation rate constant and half-life from 0.1979 d(-1) and 2.3131 d to 0.2434 d(-1) and 2.1062 d, respectively, but also impeded DBP uptake by leafy vegetables. The general bioremediation effect of T7-biochar alliance excelled pure T7 suspensions and biochar, by trapping more DBP and boosting its complete degradation in soil. Besides, the combination of strain T7 and biochar can increase the proportion of some beneficial bacteria and boost the functional diversity of soil prokaryotic community, then to a certain extent may reverse the negative effect of DBP pollution on the agricultural soils. These results indicate that the rice-husk-derived biochar is a proper media when utilizing functional microbes into environmental treatment. Overall, T7-biochar composite is a promising soil modifier for soil bioremediation and the production of DBP-free crops.
机译:邻苯二甲酸二丁酯(DBP)是一种经常被发现的农田污染物,对环境和人类健康有害。在这项研究中,将降解DBP的内生芽孢杆菌T7菌株固定在稻壳衍生的生物炭中,以生物修复DBP污染的农业土壤。还研究了这种微生物-生物炭复合物对土壤原核生物的影响及其调节DBP降解的机理。补充T7-生物炭复合物不仅可以通过将DBP降解速率常数和半衰期分别从0.1979 d(-1)和2.3131 d提高到0.2434 d(-1)和2.1062 d来显着促进土壤中DBP的生物降解,而且也阻碍了多叶蔬菜吸收DBP。通过捕获更多的DBP并促进其在土壤中的完全降解,T7-生物炭联盟的一般生物修复效果优于纯T7悬浮液和生物炭。此外,菌株T7和生物炭的结合可以增加一些有益细菌的比例,提高土壤原核生物群落的功能多样性,从而在一定程度上可以逆转DBP污染对农业土壤的负面影响。这些结果表明,当将功能性微生物用于环境处理时,源自稻壳的生物炭是合适的培养基。总体而言,T7-生物炭复合材料是用于土壤生物修复和无DBP作物生产的有前途的土壤改良剂。

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