[1] ERIKSEN M, LEBRETON L C M, CARSON H S, et al. Plastic pollution in the world’s oceans: more than 5 trillion plastic pieces weighing over 250 000 tons afloat at sea [J]. PLoS One, 2014, 9(12): e111913. 
[2] ELVERS D, SONG C H, STEINBüCHEL A, et al. Technology trends in biodegradable polymers: evidence from patent analysis [J]. Polymer Reviews, 2016, 56(4): 584-606. 
[3] ANSTEY A, MUNIYASAMY S, REDDY M M, et al. Processability and biodegradability evaluation of composites from poly(butylene succinate) (PBS) bioplastic and biofuel co-products from Ontario [J]. Journal of Polymers and the Environment, 2014, 22(2): 209-218. 
[4] BARRETO L S, DA SILVA E E G, HENRIQUE M A, et al. Study of biodegradation of poly(butylene adipate co-terephthalate) (PBAT) by maritime microorganisms from the Atlhantic Coast of Recife-PE (Brazil) [J]. Research, Society and Development, 2021, 10(17): e164101724579. 
[5] TRINH TAN F, COOPER D G, MARI? M, et al. Biodegradation of a synthetic co-polyester by aerobic mesophilic microorganisms [J]. Polymer Degradation and Stability, 2008, 93(8): 1479-1485. 
[6] URBANEK A K, RYMOWICZ W, STRZELECKI M C, et al. Isolation and characterization of Arctic microorganisms decomposing bioplastics [J]. AMB Express, 2017, 7(1): 148. 
[7] LIU J X, HOU L J, LIU T T, et al. Isolation of PBAT plastic-degrading bacteria and their degradation characteristics [J]. Journal of Agro-Environment Science, 2021, 40(1). 
[8] R Development CORE TEAM. R A language and environment for statistical computing [M]. 1nd ed. Durhan:R Foundation for Satistical Computing, 2014.
[9] IBM Corp. Ibm S PSS Statistics for windows, version 25.0 [CP]. Armonk, NY: IBM Corp, 2017.
[10] DEVI D. Biodegradation of low density polyethylene by selected bacillus sp [J]. Gazi University Journal of Science, 2019, 32(3): 802-813. 
[11] ABDULLAH A, WAQAS M, HARIS M, et al. Biodegradable potential of bacillus amyloliquefaciens and bacillus safensis using low density polyethylene thermoplastic (LDPE) substrate [J]. European Journal of Environment and Public Health, 2021, 5(2): em0069. 
[12] MOHAPATRA S, MAITY S, DASH H R, et al. Bacillus and biopolymer: prospects and challenges [J]. Biochemistry and Biophysics Reports, 2017, 12: 206-213. 
[13] SINGH R S, GILCREASE E B, GOEL R, et al. Biodegradation of petroleum-based plastic using bacillus sp [C]//ed. TMS 2023 152nd Annual Meeting & Exhibition Supplemental Proceedings. Cham: Springer, 2023: 675-685. 
[14] MESSER L F, LEE C E, WATTIEZ R, et al. Novel functional insights into the microbiome inhabiting marine plastic debris: critical considerations to counteract the challenges of thin biofilms using multi-omics and comparative metaproteomics [J]. Microbiome, 2024, 12(1): 36. 
[15] CHEN M, CAO M, ZHANG W, et al. Effect of biodegradable PBAT microplastics on the C and N accumulation of functional organic pools in tropical latosol [J]. Environment International, 2024, 183: 108393. 
[16] KANWAL A, MIN Z, SHARAF F, et al. Screening and characterization of novel lipase producing Bacillus species from agricultural soil with high hydrolytic activity against PBAT poly (butylene adipate co terephthalate) co-polyesters [J]. Polymer Bulletin, 2022, 79(11): 10053-10076. 
[17] 张敏, 贾昊, 翁云宣, 等. 聚乳酸/聚己二酸-对苯二甲酸丁二酯对土壤细菌群落结构的影响及其降解菌的筛选[J]. 微生物学通报, 2020, 47(2): 420-430. 
[18] WUFUER R, LI W F, WANG S Z, et al. Isolation and degradation characteristics of PBAT film degrading bacteria [J]. International Journal of Environmental Research and Public Health, 2022, 19(24): 17087. 
[19] MADDISON C, SATHISH C I, LAKSHMI D, et al. An advanced analytical approach to assess the long-term degradation of microplastics in the marine environment [J]. NPJ Materials Degradation, 2023, 7: 59. 
[20] 刘佳茜, 侯丽君, 刘婷婷, 等. PBAT地膜降解菌的筛选及其降解特性研究[J]. 农业环境科学学报, 2021, 40(1): 129-136. 
[21] RADDADI N, FAVA F. Biodegradation of oil-based plastics in the environment: existing knowledge and needs of research and innovation [J]. Science of the Total Environment, 2019, 679: 148-158. 
[22] CORRADINI F, MEZA P, EGUILUZ R, et al. Evidence of microplastic accumulation in agricultural soils from sewage sludge disposal [J]. Science of the Total Environment, 2019, 671: 411-420. 
[23] 韩震, 张恺, 凌铭煌, 等. 海洋真菌沃氏霍塔霉Hortaea werneckii 13对聚氨酯塑料的降解特性[J]. 菌物学报, 2024, 43(5): 117-129. 
[24] WILKES R A, ARISTILDE L. Degradation and metabolism of synthetic plastics and associated products by Pseudomonas sp. capabilities and challenges [J]. Journal of Applied Microbiology, 2017, 123(3): 582-593.