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Ribosomal genes as early targets of cadmium-induced toxicity in Chironomus riparius larvae

机译:核糖体基因作为镉致毒性幼虫中镉诱导的早期靶标

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Cadmium is a widespread environmental pollutant that causes severe impacts in organisms. Although the effects of cadmium on aquatic insects have been studied in terms of their toxicity and changes in developmental parameters, little is known about its molecular and genetic effects. We have investigated the alterations in the pattern of gene expression provoked by acute exposure to cadmium in Chironomus riparius Mg. (Diptera, Chironomidae), a sentinel organism widely used in aquatic toxicity testing. The early cytotoxic effects were evaluated using immunocytochemistry and specific fluorescent probes in fourth instar larvae after 12 h of 10 mM cadmium treatments; under these conditions no significant effect on larvae mortality was detected until after 36 h of exposure. The changes in the pattern of gene expression were analysed by means of DNA/RNA hybrid antibodies in the polytene chromosomes from salivary gland cells. A decrease in the activity of the nucleolus is especially remarkable, accompanied by a significant reduction in size and the modification in nucleolar architecture, as shown by FISH. The inhibition of rDNA transcription was further evaluated by Northern blot analysis, which showed a marked decrease in the level of preribosomal rRNA (54% 45S 12 h). However, the BR genes, whose products are the giant polypeptides that constitute the silk-like secretion for constructing housing tubes, remain active. Simultaneously, decondensation and activation take place at some chromosomal regions, especially at the centromeres. The changes observed in the pattern of gene expression do not resemble those found after heat shock or other cell stressors. These data provide the first evidence that cadmium interacts with ribosomal genes and results in a drastic impairment of the functional activity of the nucleolus, an essential organelle for cellular survival. Therefore, the depletion of ribosomes would be a long-term effect of Cd-induced cellular damage. These findings may have important implications for understanding the adverse biological effects of cadmium and its toxic mechanism, as yet not clearly defined, and provide a sensitive biomarker of cadmium exposure.
机译:镉是一种广泛的环境污染物,会对生物造成严重影响。尽管已经从镉的毒性和发育参数的变化方面研究了镉对水生昆虫的影响,但对其分子和遗传作用知之甚少。我们已经研究了急性暴露于南美白对虾中镉引起的基因表达模式的变化。 (Diptera,Chironomidae),一种前哨生物,广泛用于水生毒性测试。 10 mM镉处理12小时后,使用免疫细胞化学和特异性荧光探针评估四龄幼虫的早期细胞毒性作用。在这些条件下,直到暴露36小时后,对幼虫的死亡率均无明显影响。利用唾液腺细胞的聚丙烯染色体中的DNA / RNA杂合抗体分析基因表达模式的变化。如FISH所示,核仁活性的下降尤为明显,伴随着大小的显着减小和核仁结构的改变。 rDNA转录的抑制作用通过Northern blot分析进一步评估,显示核糖体前rRNA的水平显着降低(54%45S 12 h)。但是,BR基因的产物仍然是活跃的,而BR基因的产物是构成丝状分泌物的巨大多肽,这些分泌物构成了丝状分泌物。同时,在某些染色体区域,特别是在着丝粒处,发生缩合和活化。基因表达模式的变化与热休克或其他细胞应激后的变化不同。这些数据提供了第一个证据,即镉与核糖体基因相互作用并导致核仁功能活性的急剧受损,核仁是细胞存活的重要细胞器。因此,核糖体的消耗将是Cd诱导的细胞损伤的长期影响。这些发现可能对理解镉的不利生物学作用及其毒性机制具有重要意义(目前尚未明确定义),并提供了镉暴露的敏感生物标记。

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