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Physiology of Sporeforming Bacteria Associated with Insects: Metabolism of Bacillus popilliae Grown in Third-Instar Popillia japonica Newman Larvae

机译:与昆虫相关的孢子形成细菌的生理学:在三龄日本粳稻纽曼幼虫中生长的芽孢杆菌的代谢

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The timing and relative participation of concurrent pathways of carbohydrate metabolism as well as the extent of terminal respiratory activity were determined by radiorespirometry with 14C substrates and by enzyme assays for vegetative and sporulating cells of the bacterium Bacillus popilliae cultured in whole, intact Popillia japonica (Japanese beetle) larvae. During vegetative proliferation, the pentose phosphate pathway predominates in the bacterial cells with minor involvement of the Embden-Meyerhof-Parnas pathway. As the cells proceed through sporulation, pentose phosphate and Embden-Meyerhof-Parnas activity remains constant. No tricarboxylic cycle activity is evident during growth and sporulation of B. popilliae. The results demonstrate (i) predominantly aerobic metabolism for carbohydrate assimilation within in vivo sporulating cells, (ii) a major contrast to the metabolism of other aerobic sporeforming bacteria that exhibit derepression of tricarboxylic acid cycle enzymatic activity at the onset of sporulation, and (iii) no causal necessity of the cycle to B. popilliae sporogeny.
机译:碳水化合物代谢的并发途径的时机和相对参与度以及终末呼吸活动的程度,通过放射性呼吸法在14C底物的基础上进行,并通过酶分析测定了完整完整的日本粳稻细菌中的芽孢杆菌的营养和发芽细胞。甲虫)的幼虫。在营养增殖期间,戊糖磷酸途径在细菌细胞中占主导地位,而Embden-Meyerhof-Parnas途径则很少参与。随着细胞进行孢子形成,磷酸戊糖和Embden-Meyerhof-Parnas活性保持恒定。在B. popilliae的生长和孢子形成过程中没有三羧酸循环活性明显。结果表明(i)在体内的孢子形成细胞中,主要的好氧代谢是碳水化合物的同化作用;(ii)与其他好氧的孢子形成细菌的代谢形成鲜明对比,这些细菌在孢子形成时表现出三羧酸循环酶活性的降低,并且(iii )没有必要因果蝇来进行B. popilliae孢子形成。

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