Robson GD, Prebble E, Rickers A, Hosking S, Denning DW, Trinci APJ, Robertson W
School of Biological Sciences, 1.800 Stopford Building, University of Manchester, Manchester, M13 9PT, United Kingdom
Fungal Genet Biol. 1996 Dec;20(4):289-98. doi: 10.1006/fgbi.1996.0043.
Robson, G. D., Prebble, E., Rickers, A., Hosking, S., Denning, D. W., Trinci, A. P. J., and Robertson, W. 1996. Polarized growth of fungal hyphae is defined by an alkaline pH gradient. Fungal Genetics and Biology 20, 289-298. Polarized cell growth is exhibited by a diverse range of eukaryotic and prokaryotic cells. The events which are responsible for this growth are poorly understood. However, the existence of ion gradients may play an important role in establishing and driving cell polarity. Using a pH-sensitive, ratiometric fluorescent dye to monitor intracellular pH in growing fungal hyphae, we report a gradient at the extending hyphal tip that is up to 1.4 pH units more alkaline than more distal regions. Both the magnitude and the length of the pH gradient were strongly correlated with the rate of hyphal extension and eradication of the gradient-arrested growth. These results suggest that alkaline pH gradients may be integral to hyphal extension in fungi.
罗布森,G.D.,普雷布尔,E.,里克斯,A.,霍斯金,S.,丹宁,D.W.,特林西,A.P.J.,以及罗伯逊,W. 1996年。真菌菌丝的极性生长由碱性pH梯度界定。《真菌遗传学与生物学》20,289 - 298页。多种真核和原核细胞都表现出极性细胞生长。导致这种生长的事件目前了解甚少。然而,离子梯度的存在可能在建立和驱动细胞极性方面发挥重要作用。我们使用一种对pH敏感的比率荧光染料来监测生长中的真菌菌丝内的pH,报告了在延伸的菌丝尖端存在一个梯度,该梯度比更远端区域的碱性高出多达1.4个pH单位。pH梯度的大小和长度都与菌丝延伸速率以及梯度消除后的生长停滞密切相关。这些结果表明碱性pH梯度可能是真菌菌丝延伸所不可或缺的。