Department of Life Sciences, Graduate School of Arts and Sciences, University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo, Japan.
Arch Microbiol. 2010 Jan;192(1):23-31. doi: 10.1007/s00203-009-0525-4. Epub 2009 Nov 13.
The filamentous cyanobacterium Anabaena sp. PCC 7120 fixes dinitrogen facultatively. Upon depletion of combined nitrogen, about 10% of vegetative cells within the filaments differentiate terminally into nitrogen-fixing cells. The heterocyst has been studied as a model system of prokaryotic cell differentiation, with major focus on signal transduction and pattern formation. The fate of heterocyst differentiation is determined at about the eighth hour of induction (point of no return), well before conspicuous morphological or metabolic changes occur. However, little is known about how the initial heterocysts are selected after the induction by nitrogen deprivation. To address this question, we followed the fate of every cells on agar plates after nitrogen deprivation with an interval of 4 h. About 10% of heterocysts were formed without prior division after the start of nitrogen deprivation. The intensity of fluorescence of GFP in the transformants of hetR-gfp increased markedly in the future heterocysts at the fourth hour with respect to other cells. We also noted that the growing filaments consisted of clusters of four consecutive cells that we call quartets. About 75% of initial heterocysts originated from either of the two outer cells of quartets at the start of nitrogen deprivation. These results suggest that the future heterocysts are loosely selected at early times after the start of nitrogen deprivation, before the commitment. Such early candidacy could be explained by different properties of the outer and inner cells of a quartet, but the molecular nature of candidacy remains to be uncovered.
丝状蓝藻鱼腥藻 PCC 7120 兼性固氮。当结合态氮耗尽时,丝状体中约有 10%的营养细胞在末端特化成固氮细胞。异形胞已被作为原核细胞分化的模式系统进行研究,主要集中在信号转导和形态发生上。异形胞分化的命运在诱导后约 8 小时(不可逆转点)就已经确定,远在明显的形态或代谢变化发生之前。然而,关于在氮饥饿诱导后,最初的异形胞是如何被选择的,我们知之甚少。为了解决这个问题,我们每隔 4 小时在琼脂平板上跟踪氮饥饿后每一个细胞的命运。大约 10%的异形胞在氮饥饿开始后没有经过先前的分裂就形成了。hetR-gfp 转化体的 GFP 荧光强度在氮饥饿开始后的第四小时在未来的异形胞中明显增加,与其他细胞相比。我们还注意到,生长的丝状体由四个连续细胞组成的簇组成,我们称之为四联体。大约 75%的初始异形胞起源于氮饥饿开始时四联体的两个外细胞之一。这些结果表明,在氮饥饿开始后的早期,在做出决定之前,未来的异形胞就被松散地选择了。这种早期的候选可能是由四联体的外细胞和内细胞的不同特性解释的,但候选的分子性质仍有待揭示。