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Thermodynamic Battle for Photosynthate Acquisition between Sieve Tubes and Adjoining Parenchyma in Transport Phloem

机译:筛管与邻近薄壁组织之间光合产物获取的热力学战役

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摘要

In transport phloem, photoassimilates escaping from the sieve tubes are released into the apoplasmic space between sieve element (SE)/companion cell (CC) complexes (SE/CCs) and phloem parenchyma cells (PPCs). For uptake respective retrieval, PPCs and SE/CCs make use of plasma membrane translocators energized by the proton motive force (PMF). Their mutual competitiveness, which essentially determines the amount of photoassimilates translocated through the sieve tubes, therefore depends on the respective PMFs. We measured the components of the PMF, membrane potential and ΔpH, of SE/CCs and PPCs in transport phloem. Membrane potentials of SE/CCs and PPCs in tissue slices as well as in intact plants fell into two categories. In the first group including apoplasmically phloem-loading species (e.g. Vicia, Solanum), the membrane potentials of the SEs are more negative than those of the PPCs. In the second group including symplasmically phloem-loading species (e.g. Cucurbita, Ocimum), membrane potentials of SEs are equal to or slightly more positive than those of PPCs. Pure sieve tube sap collected from cut aphid stylets was measured with H+-selective microelectrodes. Under our experimental conditions, pH of the sieve tube saps was around 7.5, which is comparable to the pH of cytoplasmic compartments in parenchymatous cells. In conclusion, only the membrane potential appears to be relevant for the PMF-determined competition between SE/CCs and PPCs. The findings may imply that the axial sinks along the pathway withdraw more photoassimilates from the sieve tubes in symplasmically loading species than in apoplasmically loading species.
机译:在转运韧皮部中,从筛管逸出的光同化物被释放到筛元(SE)/伴侣细胞(CC)复合物(SE / CC)与韧皮部薄壁细胞(PPC)之间的无质子空间中。为了分别吸收,PPC和SE / CC利用质子动力(PMF)激励的质膜移位器。因此,它们的相互竞争性(基本上决定了通过筛管转移的光同化物的量)取决于各自的PMF。我们测量了韧皮部中SE / CCs和PPCs的PMF成分,膜电位和ΔpH。 SE / CCs和PPCs在组织切片以及完整植物中的膜电位分为两类。在第一组中,包括无性韧皮部负载物种(例如野豌豆,茄属),SE的膜电位比PPC的负。在第二组中,包括对称韧皮部负载物种(例如葫芦科植物,葫芦科植物),SEs的膜电位等于或略高于PPC。用H + -选择性微电极测量从切下的蚜虫管心收集的纯筛管液。在我们的实验条件下,筛管液汁的pH值约为7.5,与薄壁细胞的细胞质区室的pH值相当。总之,只有膜电位似乎与SE / CC和PPC之间的PMF决定的竞争有关。这些发现可能暗示,在同质负载物种中,沿着通道的轴向凹陷从筛管中抽出更多的光同化物,而在无质负载物种中则更多。

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