4.6 Article

Expression of ABCA3 transporter gene in Tegillarca granosa and its association with cadmium accumulation

期刊

GENE
卷 845, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.gene.2022.146865

关键词

Cadmium; ABCA3; RNAi; Protein; mRNA expression

资金

  1. Youth Science Foundation Project of the National Natural Science Foundation of China [31902358]
  2. National Key Research and development Program of China [2018YFD0901405-2, 2020YFD 0900802]
  3. Agriculture Research System of MOF and MARA of China [CARS -49]
  4. Zhejiang Major Program of Science and Tchnology of China [2021C02069-7]
  5. Wenzhou agricultural new variety breeding cooperation group of China [2019ZX001-1]

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This study analyzed the complete cDNA sequence of the TgABCA3 gene and provided insights into its role in resistance against Cd in blood clam. The results showed that the expression levels and activity of TgABCA3 were related to Cd accumulation and resulting toxic effects, indicating its protective function against Cd in the clam.
Exposure to cadmium (Cd), a heavy metal, can cause strong and toxic side effects. Cd can enter the body of organisms in several ways, leading to various pathological reactions in the body. Tegillarca granosa is a kind of bivalve shellfish favored by people in the coastal areas of China. Bivalve shellfish can easily absorb heavy metal pollutants from water bodies while filter feeding. T. granosa is considered a hyper-accumulator of Cd, and the TgABCA3 gene is highly expressed in individuals with a high content of Cd-exposed blood clam. However, it is unclear whether TgABCA3 is involved in Cd ion transport in blood clam and the molecular mechanism for the mechanism of the Cd-induced responses for maintaining cell homeostasis. In this study, the complete cDNA of the TgABCA3 gene was analyzed to provide insights into the roles of TgABCA3 in resistance against Cd in blood clam. The complete sequence of TgABCA3 showed high identity to that of TgABCA3 from other bivalves and contained some classical motifs of ATP-binding cassette transport proteins. TgABCA3 expression in different tissues was measured using real-time quantitative polymerase chain reaction (qRT-PCR) and western blot analysis. The tissue-specific expression showed that TgABCA3 expression was highest in the gill tissue. The TgABCA3 expression in the gill tissue was silenced using the RNA interference technique. After TgABCA3 silencing, the TgABCA3 expression decreased, the Cd content increased, the oxygen consumption and ammonia excretion rates increased, and the ingestion rate decreased. These results showing that the extents of Cd accumulation and resulting toxic effects are related to expression levels and activity of TgABCA3 indicate that TgABCA3 has a protective function against Cd in the clam. This increase in Cd accumulation results in serious damage to the body, leading to the enhancement of its physiological metabolism. Therefore, the findings of the study demonstrated that TgABCA3 can participate in the transport of Cd ions in the blood clam through active transport and play a vital role in Cd detoxification.

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