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首页> 外文期刊>Applied and Environmental Microbiology >Suppressive Subtractive Hybridization of and Differences in Gene Expression Content of Calcifying and Noncalcifying Cultures of Emiliania huxleyi Strain 1516
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Suppressive Subtractive Hybridization of and Differences in Gene Expression Content of Calcifying and Noncalcifying Cultures of Emiliania huxleyi Strain 1516

机译:抑x1516株钙化和非钙化培养物的抑制性减法杂交及其基因表达含量的差异

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The marine coccolithophorid Emiliania huxleyi is a cosmopolitan alga intensely studied in relation to global carbon cycling, biogeochemistry, marine ecology, and biomineralization processes. The biomineralization capabilities of coccolithophorids have attracted the attention of scientists interested in exploiting this ability for the development of materials science and biomedical and biotechnological applications. Although it has been well documented that biomineralization in E. huxleyi is promoted by growth under phosphate-limited conditions, the genes and proteins that govern the processes of calcification and coccolithogenesis remain unknown. Suppressive subtractive hybridization (SSH) libraries were constructed from cultures grown in phosphate-limited and phosphate-replete media as tester and driver populations for reciprocal SSH procedures. Positive clones from each of the two libraries were randomly selected, and dot blotting was performed for the analysis of expression patterns. A total of 513 clones from the phosphate-replete library and 423 clones from the phosphate-limited library were sequenced, assembled, and compared to sequences in GenBank using BLASTX. Of the 103 differentially expressed gene fragments from the phosphate-replete library, 34% showed significant homology to other known proteins, while only 23% of the 65 differentially expressed gene fragments from the phosphate-limited library showed homology to other proteins. To further assess mRNA expression, real-time RT-PCR analysis was employed and expression profiles were generated over a 14-day time course for three clones from the phosphate-replete library and five clones from the phosphate-limited library. The fragments isolated provide the basis for future cloning of full-length genes and functional analysis.
机译:海洋球藻类拟南芥Emiliania huxleyi是世界性藻类,在全球碳循环,生物地球化学,海洋生态学和生物矿化过程方面进行了深入研究。球果磷脂的生物矿化能力吸引了有兴趣利用这种能力发展材料科学以及生物医学和生物技术应用的科学家的注意力。尽管有充分的文献证明,在磷酸盐限制的条件下生长促进了虎的生物矿化作用,但控制钙化和球石形成过程的基因和蛋白质仍然未知。抑制性消减杂交(SSH)文库由在有限磷酸盐和磷酸盐充分培养基中生长的培养物构建而成,作为反向SSH程序的测试者和驱动者群体。从两个文库中的每一个中随机选择阳性克隆,并进行斑点印迹分析表达模式。使用BLASTX对来自磷酸盐充足文库的513个克隆和来自磷酸盐受限文库的423个克隆进行测序,组装,并与GenBank中的序列进行比较。在来自磷酸盐充足文库的103个差异表达基因片段中,有34%显示与其他已知蛋白质的显着同源性,而来自磷酸盐有限文库的65个差异表达基因片段中只有23%显示与其他蛋白质同源。为了进一步评估mRNA的表达,采用了实时RT-PCR分析,并在14天的时间过程中针对来自磷酸盐充足文库的三个克隆和磷酸盐受限文库的五个克隆生成了表达谱。分离的片段为将来的全长基因克隆和功能分析提供了基础。

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