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Raman spectroscopic study of bacterial endospores

机译:细菌内生孢子的拉曼光谱研究

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Endospores and endospore-forming bacteria were studied by Raman spectroscopy. Raman spectra were recorded from Bacillus licheniformis LMG 7634 at different steps during growth and spore formation, and from spore suspensions obtained from diverse Bacillus and Paenibacillus strains cultured in different conditions (growth media, temperature, peroxide treatment). Raman bands of calcium dipicolinate and amino acids such as phenylalanine and tyrosine are more intense in the spectra of sporulating bacteria compared with those of bacteria from earlier phases of growth. Raman spectroscopy can thus be used to detect sporulation of cells by a characteristic band at 1,018 cm–1 from calcium dipicolinate. The increase in amino acids could possibly be explained by the formation of small acid-soluble proteins that saturate the endospore DNA. Large variations in Raman spectra of endospore suspensions of different strains or different culturing conditions were observed. Next to calcium dipicolinate, tyrosine and phenylalanine, band differences at 527 and 638 cm–1 were observed in the spectra of some of the B. sporothermodurans spore suspensions. These bands were assigned to the incorporation of cysteine residues in spore coat proteins. In conclusion, Raman spectroscopy is a fast technique to provide useful information about several spore components.
机译:通过拉曼光谱研究了内生孢子和形成内生孢子的细菌。从地衣芽孢杆菌LMG 7634在生长和孢子形成的不同步骤记录拉曼光谱,并从在不同条件(生长培养基,温度,过氧化物处理)下培养的多种芽孢杆菌和芽孢杆菌菌株获得的孢子悬浮液记录拉曼光谱。与孢子形成细菌的光谱相比,二吡啶甲酸钙和氨基酸(如苯丙氨酸和酪氨酸)的拉曼光谱带比来自早期生长阶段的细菌的光谱更强烈。因此,拉曼光谱法可用于检测来自吡啶二羧酸钙的1,018 cm-1 特征带,从而检测细胞的孢子形成。氨基酸的增加可能是由于形成小的可溶于酸的蛋白质(可将内生孢子DNA饱和)来解释的。观察到不同菌株或不同培养条件的内生孢子悬浮液的拉曼光谱变化很大。在部分孢子母双孢子孢子悬浮液的光谱中,观察到二吡啶甲酸钙,酪氨酸和苯丙氨酸旁边的谱带差异在527和638 cm-1处。这些条带被指定为在孢子外壳蛋白中掺入半胱氨酸残基。总之,拉曼光谱法是一种提供有关几种孢子成分的有用信息的快速技术。

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