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Immunolocalization of plasma-membrane H+-ATPase and tonoplast-type pyrophosphatase in the plasma membrane of the sieve element-companion cell complex in the stem of Ricinus communis L.

机译:蓖麻(Ricinus communis L)茎中筛元-伴侣细胞复合物质膜中质膜H + -ATPase和液泡膜型焦磷酸酶的免疫定位。

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摘要

Plasma-membrane-located primary pumps were investigated in the sieve element (SE)-companion cell complex in the transport phloem of 2-week-old stems of Ricinus communis L. and, for comparison, in stems of Cucurbita pepo L. and in the secondary phloem of Agrobacterium tumefaciens-induced crown galls as a typical sink tissue. The plasma-membrane (PM) H+-ATPase and the tonoplast-type pyrophosphatase (PPase) were immunolocalized by epifluorescence and confocal laser scanning microscopy (CLSM) upon single or double labeling with specific monoclonal and polyclonal antibodies. Quantitative fluorescence evaluation by CLSM revealed both pumps in one membrane, the sieve-element PM. Different PM H+-ATPase antibody clones, raised against the PM H+-ATPase of Zea mays coleoptiles, induced in mouse and produced in mouse hybridoma cells, discriminated between different phloem cell types. Clones 30D5C4 and 44B8A1 labeled sieve elements and clone 46E5B11D5 labeled companion cells, indicating the existence of different phloem PM H+-ATPase isoforms. The results are discussed in terms of energization of SE transporters for retrieval of leaking sucrose, K+ and amino acids, as one of the unknown roles of ATP found in SEs. The function of the PPase could be related to phloem sucrose metabolism in support of ATP-requiring processes.
机译:在两个星期大的蓖麻(Ricinus communis L.)茎韧皮部转运韧皮部的筛元(SE)-伴侣细胞复合物中,以及在比较中,在南瓜属(Cucurbita pepo L.)和根癌农杆菌诱导的冠状韧皮部的第二韧皮部是典型的水槽组织。用特异性单克隆抗体和多克隆抗体单次或两次标记后,通过落射荧光和共聚焦激光扫描显微镜(CLSM)对血浆膜(PM)H + -ATPase和液泡膜型焦磷酸酶(PPase)进行免疫定位。 CLSM定量荧光评估显示,两个泵都位于一个膜中,即筛分PM。针对玉米胚芽鞘的PM H + -ATPase的PM H + -ATPase抗体克隆,在小鼠中诱导并在小鼠杂交瘤细胞中产生,可区分不同的韧皮部细胞类型。克隆30D5C4和44B8A1标记了筛子元件,克隆46E5B11D5标记了陪伴细胞,表明存在不同的韧皮部PM H + -ATPase同工型。讨论了SE转运蛋白的增能,以寻找泄漏的蔗糖,K + 和氨基酸,这是SE中ATP未知的作用之一。 PPase的功能可能与韧皮部蔗糖代谢有关,以支持需要ATP的过程。

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