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Infrared signatures of Bacillus bacteria: Clear IR distinctionsbetween sporulated and vegetative cells with chemical assignments

机译:Bacillus细菌的红外签名:用化学作业的孢子状和营养细胞清晰的IR独立

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This paper highlights the distinctions between the infrared (IR) absorption spectra of vegetative versus sporulated Bacillus bacteria. It is observed that there are unique signatures clearly associated with either the sporulated or the vegetative state, and that vegetative cells (and associated debris) can contribute to the spore spectra. A distinct feature at ~1739 cm~(-1) appears to be unique to vegetative cell spectra, and can also be used as an indicator of vegetative cells or cell debris in the spore spectra. The data indicate the band is caused by a phospholipid carbonyl bond and are consistent with, but do not prove it to be, either phosphatidyl ethanolamine (PE) or phosphatidyl glycerol (PG), the two major classes of phospholipids found in vegetative cells of Bacillus species. The endospore spectra show characteristic peaks at 1441, 1277, and 1015 cm~(-1) along with a distinct quartet of peaks at 766, 725, 701, and 659 cm~(-1). These are clearly associated with calcium dipicolinate trihydrate, CaDP_3H_2O. We emphasize that the spore peaks, especially the quartet, arise from the calcium dipicolinate trihydrate and not from dipicolinic acid or other dipicolinate hydrate salts. The CaDP·_3HP_2O vibrational peaks and the effects of hydration were studied using quantum chemistry in the PQS software package. The quartet is associated with many motions including contributions from the Ca~(2+) counterion and hydration waters including Ca-O-H bends, H_2O-Ca-O torsions and O-C-O bends. The 1441 and 1015 cm~(-1) modes are planar pyridine modes with the 1441 mode primarily a ring C-N stretch and the 1015 mode primarily a ring C-C stretch.
机译:本文突出了植物植物与孢子化芽孢杆菌的红外(IR)吸收光谱之间的区别。观察到存在与孢子形或营养状态明显相关的独特签名,并且植物细胞(以及相关的碎片)可以促进孢子光谱。在〜1739cm〜(-1)的明显特征似乎是植物细胞光谱的独特性,并且也可以用作孢子光谱中营养细胞或细胞碎片的指标。这些数据表明带是由磷脂羰基键引起的,并且与磷脂酰乙醇胺(PE)或磷脂酰甘油(PG)一致,但不证明它,这两种主要类别的磷脂磷脂(PP),磷脂磷脂在芽孢杆菌的营养细胞中发现物种。 Endospore Spectra显示在1441,1277和1015cm〜(-1)的特征峰,以及766,725,701和659cm〜(-1)的不同四重奏。这些明显与二聚辛酸钙三水合物,CADP_3H_2O有关。我们强调,孢子峰,尤其是四重奏,由二聚辛酸钙三水合物而不是来自二聚溶胶酸或其他二聚辛酸盐水合物盐而产生。使用量子化学在PQS软件包中使用量子化学研究了CADP·_3HP_2O振动峰和水合的影响。四重奏与许多运动相关联,包括来自CA〜(2+)抗衡离子和水合水的贡献,包括CA-O-H弯曲,H_2O-CA-O扭转和O-C-O弯曲。 1441和1015cm〜(-1)模式是具有1441模式的平面吡啶模式,主要是环C-n拉伸,并且1015模式主要是环C-C拉伸。

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