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Occurrence of 9.5 Cellulase and Other Hydrolases in Flower Reproductive Organs Undergoing Major Cell Wall Disruption

机译:发生主要细胞壁破坏的花生殖器官中9.5纤维素酶和其他水解酶的发生

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摘要

The occurrence of enzymes associated with bean leaf abscission was investigated in bean (Phaseolus vulgaris) flower reproductive organs in which catabolic cell wall events are essential during anther and pistil development. Cellulase activity was detected in high levels in both pistil and anthers of bean flowers before anthesis. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis followed by immunoblotting with 9.5 cellulase antibody identified a protein in anthers and pistil with the same size (51 kilodaltons) and serologically closely related to the abscission cellulase. The accumulation of 9.5 cellulase protein in the anther is developmentally regulated and increases from undetectable levels at very young stages of anther development to high levels as the anther matures. In the pistil, the 9.5 cellulase was localized in the upper part of the pistil where the stigma and the stylar neck reside and was detected in the youngest developmental stage analyzed. Antibodies against basic chitinase, which accumulates to high levels in abscission zones after exposure to ethylene, identified a protein with the same size (33 kilodaltons) and serologically closely related, in both anthers and upper portion of the pistil. In contrast, a 45-kilodalton protein and the basic β-1,3-glucanase associated with abscission were undetected in bean reproductive organs. Interestingly, β-1,3-glucanase activity was detected in young bean anthers and decreased at anthesis, but the anther β-1,3-glucanase is serologically unrelated to the basic β-1,3-glucanase. Thus, it appears that the basic cellulase and chitinase occur in combination in many plant processes that require major cell wall disruption, whereas hemicellulases such as β-1,3-glucanase are specific to each process.
机译:在豆类(Phaseolus vulgaris)花生殖器官中研究了与豆叶脱落相关的酶的发生,其中花药和雌蕊发育过程中分解代谢的细胞壁事件至关重要。在开花前,在豆花的雌蕊和花药中均检测到高水平的纤维素酶活性。十二烷基硫酸钠-聚丙烯酰胺钠凝胶电泳,然后用9.5纤维素酶抗体进行免疫印迹,鉴定出花药和雌蕊中具有相同大小(51千道尔顿)的蛋白质,其血清学上与脱落纤维素酶密切相关。 9.5纤维素酶蛋白在花药中的积累受到发育的调节,并且从花药发育的很年轻阶段就无法检测到的水平增加到花药成熟时的高水平。在雌蕊中,9.5纤维素酶位于雌蕊的上部,柱头和柱状颈位于该雌蕊的上部,并在分析的最年轻发育阶段被检测到。抗碱性几丁质酶的抗体在暴露于乙烯后会在脱落区积累高水平,在花药和雌蕊上部均鉴定出大小相同(33道尔顿)且血清学密切相关的蛋白质。相反,在豆类生殖器官中未检测到与脱落相关的45-千达尔顿蛋白和碱性β-1,3-葡聚糖酶。有趣的是,在幼豆花药中检测到β-1,3-葡聚糖酶活性,而在开花期降低了该活性,但花药β-1,3-葡聚糖酶在血清学上与碱性β-1,3-葡聚糖酶无关。因此,似乎碱性纤维素酶和几丁质酶在许多需要主要细胞壁破坏的植物过程中共同出现,而半纤维素酶如β-1,3-葡聚糖酶对每个过程都是特异性的。

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