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Genome-Wide Identification and Characterization of SODs in Zhikong Scallop Reveals Gene Expansion and Regulation Divergence after Toxic Dinoflagellate …

Mar Drugs. 2019; 
Shanshan Lian, Liang Zhao, Xiaogang Xun, Jiarun Lou, Moli Li, Xu Li, Shi Wang, Lingling Zhang, Xiaoli Hu and Zhenmin Bao
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Recombinant Proteins Characterization of the C. farreri SOD proteins, including the length (aa), molecular weight (kDa), isoelectric point (pI), instability index, aliphatic index, and grand average of hydropathicity (GRAVY) values, were performed using the ProtParam tool (http://www.expasy.org/tools/protparam.html), and the subcellular localization prediction of the SOD proteins was analyzed through CELLO v.2.5 (http://cello.life.nctu.edu.tw/) [55], Euk-mPLoc 2.0 (http://www.csbio.sjtu.edu.cn/bioinf/euk-multi-2/) [56] as well as WoLF PSORT II (https://www.genscript.com/wolf-psort.html). Get A Quote

摘要

As filter-feeding animals mainly ingesting microalgae, bivalves could accumulate paralytic shellfish toxins (PSTs) produced by harmful algae through diet. To protect themselves from the toxic effects of PSTs, especially the concomitant oxidative damage, the production of superoxide dismutase (SOD), which is the only eukaryotic metalloenzyme capable of detoxifying superoxide, may assist with toxin tolerance in bivalves. To better understand this process, in the present study, we performed the first systematic analysis of SOD genes in bivalve Chlamys farreri, an important aquaculture species in China. A total of six Cu/Zn-SODs (SOD1-6) and two Mn-SODs (SOD7, SOD8) were identified in C. farreri, with gene e... More

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