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Titlebook: Biosilica in Evolution, Morphogenesis, and Nanobiotechnology; Case Study Lake Baik Werner E. G. Müller,Mikhael A. Grachev Book 2009 Springe

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Book 2009cteristic feature of these animals is that they form their polymeric silicic acid skeleton enzymatically. This process is explored using modern molecular biological and cellular biological techniques to outline strategies to fabricate novel materials applicable in biomedicine and nanooptics..
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Paleoclimate and Evolution: Emergence of Sponges During the Neoproterozoict cell–cell and cell–matrix adhesion molecules, that were cloned from sponges (mainly the demosponges . and .) and that were subsequently expressed, share high DNA sequence and protein function similarity with the corresponding molecules of other metazoans. Together with the molecular biological stu
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Towards a Molecular Systematics of the Lake Baikal/Lake Tuva Sponges century, the Lake Chagytai species was grouped to the Lubomirskiidae and called .. However, analyses of molecular sequence data [internal transcribed spacer 2 (ITS2), ribosomal DNA (rDNA)] and morphological markers (spicules, habitus) inferred a close relationship to the cosmopolitan genus . and al
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Silicon in Life: Whither Biological Silicification?evolution of biological silicification and are discussed, in the main, naively without specific reference to published research which might either refute or support their validity. (This serves as an apology to the many excellent scientists whose work has not been but should have been cited!) I hope
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Identification and Isolation of a Retrotransposon from the Freshwater Sponge ,: Implication in Rapid . (Demospongiae; Ceractinomorpha). Baikalum-1 embraces a continuous open reading frame, putatively coding for a polyprotein that consists of nucleo capsid, protease, reverse transcriptase, RNase H, and integrase, all proteins/ enzymes characteristic of retrotransposons. Baikalum-1 was discovered in
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