McCarter L, Silverman M
Agouron Institute, La Jolla, California 92037.
J Bacteriol. 1989 Feb;171(2):731-6. doi: 10.1128/jb.171.2.731-736.1989.
Vibrio parahaemolyticus has two distinct cell types, the swimmer cell and the swarmer cell, adapted for locomotion in different circumstances. The swimmer cell, produced when the bacterium is grown in liquid media, is a short rod with a single sheathed polar flagellum. The swarmer cell, produced when V. parahaemolyticus is grown on solidified media, is greatly elongated and synthesizes, in addition to the polar flagellum, numerous unsheathed lateral flagella which are responsible for translocation over surfaces. We are interested in understanding how this bacterium differentiates in response to contact with surfaces and have determined in earlier work that the polar flagellum acts as a tactile sensor which controls transcription of genes (laf) encoding the swarmer cell phenotype. Surface recognition involves sensing of forces that obstruct movement of the polar flagellum. In this report we show that a second signal, iron limitation, is also required for swarmer cell differentiation. Production of lateral flagella occurred only when polar flagellar function was perturbed and iron-limiting growth conditions were imposed. The same conditions were required to induce light production in strains of V. parahaemolyticus in which a laf gene was transcriptionally fused to the lux operon encoding the enzymes for bioluminescence. The lafA gene encoding the lateral flagellin subunit was cloned and used in Northern (RNA) blot measurements. Examination of mRNA levels revealed that transcription of lafA is dependent on growth in iron-depleted media. The control of differentiation by multiple environmental stimuli is discussed.
副溶血性弧菌有两种不同的细胞类型,即游动细胞和群游细胞,它们适合在不同环境中运动。游动细胞是在液体培养基中培养细菌时产生的,呈短杆状,有一根带鞘的极鞭毛。群游细胞是副溶血性弧菌在固化培养基上生长时产生的,其长度大大增加,除了极鞭毛外,还合成许多无鞘的侧鞭毛,这些侧鞭毛负责在表面上移动。我们感兴趣的是了解这种细菌如何响应与表面的接触而发生分化,并且在早期的研究中已经确定极鞭毛作为一种触觉传感器,控制编码群游细胞表型的基因(laf)的转录。表面识别涉及感知阻碍极鞭毛运动的力。在本报告中,我们表明群游细胞分化还需要第二个信号,即铁限制。只有当极鞭毛功能受到干扰且处于铁限制生长条件下时,才会产生侧鞭毛。在将laf基因转录融合到编码生物发光酶的lux操纵子的副溶血性弧菌菌株中,诱导发光也需要相同的条件。克隆了编码侧鞭毛蛋白亚基的lafA基因,并用于Northern(RNA)印迹测量。对mRNA水平的检测表明,lafA的转录依赖于在缺铁培养基中的生长。本文还讨论了多种环境刺激对分化的控制。