Sackett M J, Armitage J P, Sherwood E E, Pitta T P
Marine Biological Laboratory, Woods Hole, Massachusetts 02543, USA.
J Bacteriol. 1997 Nov;179(21):6764-8. doi: 10.1128/jb.179.21.6764-6768.1997.
We have measured the photoresponse of two purple nonsulfur bacteria, Rhodobacter sphaeroides and Rhodospirillum centenum, under defined conditions in a light beam propagating at 90 degrees to the optical axis of the microscope. This beam presented cells with a steep gradient of intensity perpendicular to the direction of propagation and a shallow gradient in the direction of light propagation. R. centenum, a species that reverses to change direction, accumulated in the light beam, as expected for a "scotophobic" response, while R. sphaeroides, which stops rather than reverses, accumulated outside the light beam. We also compared the behavior of liquid-grown R. centenum, which swims by using a single polar flagellum, to that of surface-grown R. centenum, which swarms over agar by using many lateral flagella and has been shown to move as colonies toward specific wavelengths of light. When suspended in liquid medium, both liquid- and surface-grown R. centenum showed similar responses to the light gradient. In all cases, free-swimming cells responded to the steep gradient of intensity but not to the shallow gradient, indicating they cannot sense the direction of light propagation but only its intensity. In a control experiment, the known phototactic alga Chlamydamonas reinhardtii was shown to swim in the direction of light propagation.
我们在一束与显微镜光轴成90度传播的光束中,在特定条件下测量了两种紫色非硫细菌——球形红杆菌和中央红螺菌的光反应。该光束使细胞在垂直于传播方向上呈现出陡峭的强度梯度,而在光传播方向上呈现出平缓的梯度。中央红螺菌是一种会反向改变方向的细菌,它如预期的“避光”反应那样,在光束中聚集,而球形红杆菌会停止而非反向,它聚集在光束之外。我们还比较了在液体中生长的中央红螺菌(通过单个极鞭毛游动)和在表面生长的中央红螺菌(通过许多侧鞭毛在琼脂上群体游动,并且已证明会以菌落形式朝着特定波长的光移动)的行为。当悬浮在液体培养基中时,液体生长和表面生长的中央红螺菌对光梯度都表现出相似的反应。在所有情况下,自由游动的细胞对强度的陡峭梯度有反应,但对平缓梯度没有反应,这表明它们无法感知光传播的方向,而只能感知其强度。在一个对照实验中,已知具有趋光性的莱茵衣藻被证明会朝着光传播的方向游动。