Cevallos M A, Encarnación S, Leija A, Mora Y, Mora J
Departamento de Ecología Molecular, Universidad Nacional Autónoma de México, Morelos, México.
J Bacteriol. 1996 Mar;178(6):1646-54. doi: 10.1128/jb.178.6.1646-1654.1996.
Rhizobium etli accumulates poly-beta-hydroxybutyrate (PHB) in symbiosis and in free life. PHB is a reserve material that serves as a carbon and/or electron sink when optimal growth conditions are not met. It has been suggested that in symbiosis PHB can prolong nitrogen fixation until the last stages of seed development, but experiments to test this proposition have not been done until now. To address these questions in a direct way, we constructed an R. etli PHB-negative mutant by the insertion of an Omega-Km interposon within the PHB synthase structural gene (phaC). The identification and sequence of the R. etli phaC gene are also reported here. Physiological studies showed that the PHB-negative mutant strain was unable to synthesize PHB and excreted more lactate, acetate, pyruvate, beta-hydroxybutyrate, fumarate, and malate than the wild-type strain. The NAD+/NADH ratio in the mutant strain was lower than that in the parent strain. The oxidative capacity of the PHB-negative mutant was reduced. Accordingly, the ability to grow in minimal medium supplemented with glucose or pyruvate was severely diminished in the mutant strain. We propose that in free life PHB synthesis sequesters reductive power, allowing the tricarboxylic acid cycle to proceed under conditions in which oxygen is a limiting factor. In symbiosis with Phaseolus vulgaris, the PHB-negative mutant induced nodules that prolonged the capacity to fix nitrogen.
费氏中华根瘤菌在共生和自由生活状态下都会积累聚-β-羟基丁酸酯(PHB)。PHB是一种储备物质,当无法满足最佳生长条件时,它可作为碳和/或电子汇。有人提出,在共生过程中,PHB可以将固氮作用延长至种子发育的最后阶段,但迄今为止尚未进行验证这一观点的实验。为了直接解决这些问题,我们通过在PHB合酶结构基因(phaC)内插入一个Omega-Km插入子构建了费氏中华根瘤菌PHB阴性突变体。本文还报道了费氏中华根瘤菌phaC基因的鉴定和序列。生理学研究表明,PHB阴性突变体菌株无法合成PHB,并且比野生型菌株分泌更多的乳酸、乙酸、丙酮酸、β-羟基丁酸、富马酸和苹果酸。突变体菌株中的NAD+/NADH比率低于亲本菌株。PHB阴性突变体的氧化能力降低。因此,突变体菌株在补充有葡萄糖或丙酮酸的基本培养基中生长的能力严重下降。我们认为,在自由生活状态下,PHB的合成会隔离还原力,使三羧酸循环能够在氧气为限制因素的条件下进行。在与菜豆共生时,PHB阴性突变体诱导的根瘤延长了固氮能力。