| [1] | LI Y L, LIU Y, HAN X, et al. Arsenic species in Cordyceps sinensis and its potential health risks[J]. Front pharmacol, 2019, 10:1471. | 
																													
																						| [2] | FALANDYSZ J, TREU R, MELONI D. Distribution and bioconcentration of some elements in the edible mushroom Leccinum scabrum from locations in Poland[J]. J environ sci health b., 2021, 56(4):396-414. | 
																													
																						| [3] | YANG Z L. Ophiocordyceps sinensis[R]. The IUCN Red List of Threatened Species, 2020:e.T58514773A58514845. | 
																													
																						| [4] | LIU S H, ZENG G M, NIU Q Y, et al. Bioremediation mechanisms of combined pollution of PAHs and heavy metals by bacteria and fungi: a mini review[J]. Bioresource technology, 2017, 224:25-33. | 
																													
																						| [5] | 卢恒, 徐宁, 孟繁蕴. 冬虫夏草重金属的含量测定和健康风险评价[J]. 环境化学, 2017, 36(5):1003-1008. | 
																													
																						| [6] | HUANG Q, LI W, GUO X, et al. Research progress on accu mulation of heavy metal in edible fungi[J]. Edible fungi of China, 2014, 33(2):4-6. | 
																													
																						| [7] | SEVEROGLU Z, SUMER S, YALCIN B, et al. Trace metal levels in edible wild fungi[J]. Environmental science and technology, 2013, 10(2):295-304. | 
																													
																						| [8] | ZHU F, QU L, FAN W, et al. Assessment of heavy metals in some wild edible mushrooms collected from Yunnan province, China[J]. Environmental monitoring assessment, 2011, 179(4):191-199. | 
																													
																						| [9] | AKIN C, MÜNEVVER C, MAHMUT C. The heavy metal content of wild edible mushroom samples collected in canakkale province, Turkey[J]. Biol trace elem res., 2010, 134(2):212-219.  doi: 10.1007/s12011-009-8464-0    
																																																	pmid: 19618133
 | 
																													
																						| [10] | VETTER J. Data on arsenic and cadmium contents of some common mushrooms[J]. Toxicon, 1994, 32:11-15.  pmid: 9237332
 | 
																													
																						| [11] | 毛雄明, 赵世明, 曹莉, 等. 不同产地冬虫夏草无性型的形态观察[J]. 环境昆虫学报, 2013, 35(3):343-353. | 
																													
																						| [12] | 谢福全, 黎志银, 陈仁财, 等. 4种重金属元素在茶树菇栽培过程中的迁移特性研究[J]. 福建农业学报, 2015, 30(3):303-306. | 
																													
																						| [13] | 李耀磊, 徐健, 金红宇, 等. 冬虫夏草及产区土壤中5种重金属及有害元素污染评价[J]. 药物分析杂志, 2019, 39(4):677-684. | 
																													
																						| [14] | 陈蓉, 李阳, 白静, 等. 微波消解电感耦合等离子体质谱法测定冬虫夏草铅、砷、镉、铬、铜含量[J]. 中药与临床, 2018, 9(4):1-4. | 
																													
																						| [15] | XIAO Y C, LI C, XU W, et al. Arsenic content, speciation, and distribution in wild cordyceps sinensis[J]. Evidence-based complementary and alternative medicine, 2021, 19:1-9. | 
																													
																						| [16] | 郑伟华, 王成, 张红艳, 等. 7种食用菌铅、镉、汞、砷含量监测及质量安全风险评价[J]. 西南农业学报, 2016, 29(2):396-401. | 
																													
																						| [17] | 韩承华, 严吴炜, 朱丽丽, 等. 硒对镉胁迫下豆瓣菜生长、生理特性及镉积累的影响[J]. 扬州大学学报(农业与生命科学版), 2017, 38(1):115-119. | 
																													
																						| [18] | GARBINSKI L D, ROSEN B P, CHEN J. Pathways of arsenic uptake and efflux[J]. Environ Int, 2019, 126:585-597.  doi: S0160-4120(18)32658-8    
																																																	pmid: 30852446
 | 
																													
																						| [19] | 黄晓辉, 王春晖, 徐宁, 等. 金针菇、杏鲍菇菌丝对四种重金属耐受和富集特性的研究[J]. 北方园艺, 2019(3):143-150. | 
																													
																						| [20] | TIJVE T, VELLINGA E C, HERMANN A. Arsenic accumulation in some higher fungi[J]. Persoonia, 1990, 14 (21):161-166. |