Zhu Xuezhu, Wang Wanqing, Crowley David E, Sun Kai, Hao Shupeng, Waigi Michael Gatheru, Gao Yanzheng
Institute of Organic Contaminant Control and Soil Remediation, College of Resources and Environmental Sciences, Nanjing Agricultural University, 1 Weigang Road, Nanjing, 210095, People's Republic of China.
The Department of Environmental Sciences, University of California, Riverside, CA, USA.
Environ Sci Pollut Res Int. 2017 Mar;24(7):6648-6656. doi: 10.1007/s11356-016-8345-y. Epub 2017 Jan 12.
This research was conducted to isolate polycyclic aromatic hydrocarbon-degrading (PAH-degrading) endophytic bacteria and investigate their potential in protecting plants against PAH contamination. Pyrene-degrading endophytic bacteria were isolated from plants grown in PAH-contaminated soil. Among these endophytic bacteria, strain PW7 (Serratia sp.) isolated from Plantago asiatica was selected to investigate the suppression of pyrene accumulation in Triticum aestivum L. In the in vitro tests, strain PW7 degraded 51.2% of the pyrene in the media within 14 days. The optimal biodegradation conditions were pH 7.0, 30 °C, and MS medium supplemented with additional glucose, maltose, sucrose, and peptones. In the in vivo tests, strain PW7 successfully colonized the roots and shoots of inoculated (E) wheat plants, and its colonization decreased pyrene accumulation and pyrene transportation from roots to shoots. Remarkably, the concentration of pyrene in shoots decreased much more than that in roots, suggesting that strain PW7 has the potential for protecting wheat against pyrene contamination and mitigating the threat of pyrene to human health via food consumption.
本研究旨在分离多环芳烃降解内生细菌,并研究其在保护植物免受多环芳烃污染方面的潜力。从生长在多环芳烃污染土壤中的植物中分离出芘降解内生细菌。在这些内生细菌中,从车前草中分离出的菌株PW7(沙雷氏菌属)被选来研究其对普通小麦中芘积累的抑制作用。在体外试验中,菌株PW7在14天内降解了培养基中51.2%的芘。最佳生物降解条件为pH 7.0、30℃,以及添加了额外葡萄糖、麦芽糖、蔗糖和蛋白胨的MS培养基。在体内试验中,菌株PW7成功定殖于接种的(E)小麦植株的根和地上部分,其定殖减少了芘的积累以及芘从根到地上部分的转运。值得注意的是,地上部分芘的浓度下降幅度远大于根中,这表明菌株PW7有潜力保护小麦免受芘污染,并减轻芘通过食物消费对人类健康造成的威胁。