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Titlebook: Biomineralization Mechanism of the Pearl Oyster, Pinctada fucata; Rongqing Zhang,Liping Xie,Zhenguang Yan Book 2019 Springer Nature Singap

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发表于 2025-3-21 18:26:57 | 显示全部楼层 |阅读模式
期刊全称Biomineralization Mechanism of the Pearl Oyster, Pinctada fucata
影响因子2023Rongqing Zhang,Liping Xie,Zhenguang Yan
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发行地址Reviews the current research on biomineralization in the pearl oyster.Presents the biomineralization mechanisms for the shell formation in the pearl oyster Pincdata fucata.Provides new perspectives on
图书封面Titlebook: Biomineralization Mechanism of the Pearl Oyster, Pinctada fucata;  Rongqing Zhang,Liping Xie,Zhenguang Yan Book 2019 Springer Nature Singap
影响因子.This book presents an overview of our current understanding of the biomineralization mechanisms for shell formation in the pearl oyster .Pinctada fucata., based on molecular biology, biochemistry, cell biology, structural biology and environmental biology. .Pinctada fucata. is the major pearl-producing shellfish in the South China Sea and is also an established model system for the research on the nacre biomineralization mechanism. Extensive studies on nacre biomineralization have provided valuable information for novel bionic material design. Discussing the isolation and gene cloning of the matrix proteins involved in the shell formation, as well as the cell signaling pathways, shell microstructures, and the environmental impacts on shell biomineralization, it is a valuable reference resource for researchers working in the field of nacre biomineralization and biomaterials..
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Identification and Characterization of Biomineralization-Related Genes,ated the full-length of CaM cDNA and characterized its functions. Other calcium metabolism-related proteins, such as calmodulin-like proteins and calcineurin, were also identified, the working mechanisms of which were studied in more detail at the same time. The primary techniques adopted in this ch
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Cellular Regulation of Biomineralization in , Pif80, and nacrein, and high activities of carbonic anhydrase and alkaline phosphatase were detected. Numerous crystals were found inside the cultured cells by polar light microscopy and scanning electron microscopy, and FTIR and XRD analysis demonstrated that these particles were amorphous calcium
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Molecular Regulation Mechanism of Biomineralization of ,,es in mantle tissue; luciferase assay and electrophoretic mobility assay (EMSA) to clarify the recruitment of transcriptional factors on promoters of matrix protein; yeast two hybridization to explore the interactions between different pathways. We demonstrate the function of NF-κB, TGFβ, Wnt signal
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Roberto Artuso,Raffaella Burionidioisotope, the biochemical research on membrane transport, the analysis of bone-related organic materials, and the understanding of the ultrastructure of mineralized materials, was the initial idea of the biomineralization formed. Though some progress has been made in revealing the principles of th
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https://doi.org/10.1007/978-90-481-2819-8 by serving as a nucleation site. The basic protein PfN23 might be a key accelerator during the regulation of crystal growth in nacre. KRMP protein family plays important roles in the framework formation of prism..The assays of functional study include RNA interference, antibody injection, notching
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