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高氯酸钠会干扰林蛙(林蛙属)蝌蚪的发育,并影响与变态和生长相关的基因表达。

Sodium perchlorate disrupts development and affects metamorphosis- and growth-related gene expression in tadpoles of the wood frog (Lithobates sylvaticus).

作者信息

Bulaeva Elizabeth, Lanctôt Chantal, Reynolds Leslie, Trudeau Vance L, Navarro-Martín Laia

机构信息

Centre for Advanced Research in Environmental Genomics, Biology Department, University of Ottawa, Ontario K1N 6N5, Canada.

Centre for Advanced Research in Environmental Genomics, Biology Department, University of Ottawa, Ontario K1N 6N5, Canada.

出版信息

Gen Comp Endocrinol. 2015 Oct 1;222:33-43. doi: 10.1016/j.ygcen.2015.01.012. Epub 2015 Jan 24.

Abstract

Numerous endocrine disrupting chemicals can affect the growth and development of amphibians. We investigated the effects of a targeted disruption of the endocrine axes modulating development and somatic growth. Wood frog (Lithobates sylvaticus) tadpoles were exposed for 2weeks (from developmental Gosner stage (Gs) 25 to Gs30) to sodium perchlorate (SP, thyroid inhibitor, 14mg/L), estradiol (E2, known to alter growth and development, 200nM) and a reduced feeding regime (RF, to affect growth and development in a chemically-independent manner). All treatments experienced developmental delay, and animals exposed to SP or subjected to RF respectively reached metamorphic climax (Gs42) approximately 11(±3) and 17(±3) days later than controls. At Gs42, only SP-treated animals showed increased weight and snout-vent length (P<0.05) relative to controls. Tadpoles treated with SP had 10-times higher levels of liver igf1 mRNA after 4days of exposure (Gs28) compared to controls. Tadpoles in the RF treatment expressed 6-times lower levels of liver igf1 mRNA and 2-times higher liver igf1r mRNA (P<0.05) at Gs30. Tadpoles treated with E2 exhibited similar developmental and growth patterns as controls, but had increased liver igf1 mRNA levels at Gs28, and tail igf1r at Gs42. Effects on tail trβ mRNA levels were detected in SP-treated tadpoles at Gs42, 40days post-exposure, suggesting that the chemical inhibition of thyroid hormone production early in development can have long-lasting effects. The growth effects observed in the SP-exposed animals suggest a relationship between TH-dependent development and somatic growth in L. sylvaticus tadpoles.

摘要

许多内分泌干扰化学物质会影响两栖动物的生长和发育。我们研究了有针对性地破坏调节发育和体细胞生长的内分泌轴的影响。将林蛙(Lithobates sylvaticus)蝌蚪暴露2周(从发育的戈斯纳阶段(Gs)25到Gs30)于高氯酸钠(SP,甲状腺抑制剂,14mg/L)、雌二醇(E2,已知会改变生长和发育,200nM)以及减少喂食方案(RF,以化学独立的方式影响生长和发育)。所有处理组均出现发育延迟,暴露于SP或接受RF处理的动物分别比对照组晚约11(±3)天和17(±3)天达到变态高峰期(Gs42)。在Gs42时,相对于对照组,只有经SP处理的动物体重和吻肛长度增加(P<0.05)。与对照组相比,暴露4天后(Gs28),经SP处理的蝌蚪肝脏igf1 mRNA水平高10倍。RF处理组的蝌蚪在Gs30时肝脏igf1 mRNA表达水平低6倍,肝脏igf1r mRNA水平高2倍(P<0.05)。经E2处理的蝌蚪表现出与对照组相似的发育和生长模式,但在Gs28时肝脏igf1 mRNA水平增加,在Gs42时尾部igf1r增加。在暴露40天后的Gs42时,在经SP处理的蝌蚪中检测到对尾部trβ mRNA水平的影响,这表明发育早期甲状腺激素产生的化学抑制可能具有长期影响。在暴露于SP的动物中观察到的生长效应表明,林蛙蝌蚪中甲状腺激素依赖性发育与体细胞生长之间存在关联。

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