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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >PH-dependent cell-cell interactions in the green alga Chara
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PH-dependent cell-cell interactions in the green alga Chara

机译:绿藻依赖性细胞 - 细胞相互作用

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Characean internodal cells develop alternating patterns of acid and alkaline zones along their surface in order to facilitate uptake of carbon required for photosynthesis. In this study, we used a pH-indicating membrane dye, 4-heptadecylumbiliferone, to study the kinetics of alkaline band formation and decomposition. The differences in growth/decay kinetics suggested that growth occurred as an active, autocatalytic process, whereas decomposition was due to diffusion. We further investigated mutual interactions between internodal cells and found that their alignment parallel to each other induced matching of the pH banding patterns, which was mirrored by chloroplast activity. In non-aligned cells, the lowered photosynthetic activity was noted upon a rise of the external pH, suggesting that the matching of pH bands was due to a local elevation of membrane conductance by the high pH of the alkaline zones of neighboured cells. Finally, we show that the altered pH banding pattern caused the reorganization of the cortical cytoplasm. Complex plasma membrane elaborations (charasomes) were degraded via endocytosis, and mitochondria were moved away from the cortex when a previously acid region became alkaline and vice versa. Our data show that characean internodal cells react flexibly to environmental cues, including those originating from neighboured cells.
机译:Characean Internodal细胞沿着它们的表面发育酸和碱性区域的交替模式,以便于摄取光合作用所需的碳。在这项研究中,我们使用了pH指示膜染料,4-庚糊糊敏illone,研究碱性带形成和分解的动力学。生长/衰变动力学的差异表明,生长发生为活性,自催化过程,而分解是由于扩散。我们进一步研究了细胞间细胞之间的相互作用,并发现它们与彼此诱导的pH条带状图案的匹配平行的对齐,其被叶绿体活性镜像。在不排列的细胞中,在外部pH的升高时注意到的光合作用活性降低,表明pH带的匹配是由于膜导流的局部膜导致的碱性区域的碱性区域的高pH值。最后,我们表明改变的pH条带模式导致皮质细胞质的重组。复杂的等离子体膜纹理(Charasomes)通过内吞作用降解,当预先酸性区域变成碱性时,线粒体从皮质中移动远离皮质,反之亦然。我们的数据表明,Characean专区细胞对环境提示灵活地反应,包括来自邻近细胞的那些。

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