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亚硒酸钠、酵母硒和纳米硒对丝光绿蝇幼虫毒性、生长和硒生物积累的影响。

Effects of sodium selenite, yeast selenium, and nano-selenium on toxicity, growth, and selenium bioaccumulation in Lucilia sericata maggots.

机构信息

College of Environment, Sichuan Agricultural University, Chengdu, China.

Consortium On Health, Environment, Education, and Research (CHEER), and Department of Science and Environment Studies, The Education University of Hong Kong, Tai Po, Hong Kong, China.

出版信息

Environ Sci Pollut Res Int. 2024 Mar;31(13):20510-20520. doi: 10.1007/s11356-024-32505-9. Epub 2024 Feb 20.

Abstract

In this study, we investigated the effects of different types of selenium (Se) (sodium selenite [SS], yeast selenium [YS], and nano-selenium [NS]) on the toxicity, growth, Se accumulation, and transformation of Lucilia sericata maggots (LSMs). We found that the 50% lethal concentration of LSMs exposed to SS was 2.18 and 1.96 times that of YS and NS, respectively. LSM growth was significantly promoted at exposure concentrations of 10-50 mg kg in group SS and 10-30 mg kg in group YS, whereas NS inhibited LSMs growth at all concentrations (p < 0.05). Total Se content in LSMs, conversion efficiency to organic and other forms of Se, and bioaccumulation factor of Se were the highest in the SS group when exposed to 50 mg kg (81.6 mg kg, 94.6%, and 1.63, respectively). Transcriptomic results revealed that LSMs significantly upregulated the amino acid (alanine, aspartate, glutamic, and tyrosine) and tricarboxylic acid cycle signaling pathways (p < 0.05) on exposure to Se, resulting in a significant increase in LSMs biomass and quality. In conclusion, our study indicates that LSMs exhibit good tolerance to SS and can convert it into bioorganic or other forms of Se.

摘要

在这项研究中,我们研究了不同类型的硒(Se)(亚硒酸钠[SS]、酵母硒[YS]和纳米硒[NS])对丝光绿蝇幼虫(LSMs)毒性、生长、Se 积累和转化的影响。我们发现,SS 处理组 LSMs 的 50%致死浓度分别是 YS 和 NS 处理组的 2.18 倍和 1.96 倍。在 SS 处理组的 10-50mg/kg 和 YS 处理组的 10-30mg/kg 暴露浓度下,LSMs 的生长显著促进,而 NS 在所有浓度下均抑制 LSMs 的生长(p<0.05)。当暴露于 50mg/kg 时,SS 处理组 LSMs 中的总 Se 含量、向有机和其他形式 Se 的转化率以及 Se 的生物积累因子最高(分别为 81.6mg/kg、94.6%和 1.63)。转录组结果表明,LSMs 在暴露于 Se 时显著上调了氨基酸(丙氨酸、天冬氨酸、谷氨酸和酪氨酸)和三羧酸循环信号通路(p<0.05),导致 LSMs 生物量和质量显著增加。综上所述,我们的研究表明,LSMs 对 SS 具有良好的耐受性,并能将其转化为生物有机或其他形式的 Se。

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