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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Laticiferous canal formation in fruits of Decaisnea fargesii: A programmed cell death process?
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Laticiferous canal formation in fruits of Decaisnea fargesii: A programmed cell death process?

机译:法氏Decassnea fargesii的果实中的乳突管形成:程序性细胞死亡过程?

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Programmed cell death (PCD), a topic of abiding interest, remodels plants at the cell, tissue, and organ levels involving various developmental processes of plants. The aim of this study is to provide a morphological characterization of evidence of PCD involvement in the laticiferous canal formation in fruit of Decaisnea fargesii. Several ultrastructural features of PCD have been observed including disintegration of vacuole and plasma membranes, cell wall degeneration, degenerated cytoplasm, abundant membrane structures and flocculent material, mitochondria and misshapen nuclei coupled with degraded plastids in vacuoles, and nuclei enveloped by rubber granule. In D. fargesii, the nuclei of the secretory epidermal cells become TUNEL-positive from the sunken stage to the late expanding stage, then DAPI-negative during the mature stage, indicating an early event of deoxyribonucleic acid (DNA) cleavage and a late event of complete DNA degeneration. Gel electrophoresis indicates that DNA cleavage is random and does not result in the laddering pattern indicating multiples of internucleosomal units. During the PCD of secretory epidermal cells, the rubber granules continue to be synthesized and accumulated in the secretory epidermal cells despite nuclear degradation. The PCD's role in laticiferous canal formation suggests that PCD may play important roles in gland development of plants.
机译:程序性细胞死亡(PCD)是一个长期存在的话题,它在涉及植物各种发育过程的细胞,组织和器官水平上重塑植物。这项研究的目的是提供形态学特征的证据,证明PCD参与了Decassnea fargesii果实中的乳突管形成过程。已观察到PCD的几种超微结构特征,包括液泡和质膜的解体,细胞壁变性,变性的细胞质,丰富的膜结构和絮状物质,线粒体和畸形的核,以及在液泡中降解的质体,以及被橡胶颗粒包裹的核。在D. fargesii中,分泌型表皮细胞的细胞核从沉没阶段到扩张后期呈TUNEL阳性,然后在成熟阶段呈DAPI阴性,表明脱氧核糖核酸(DNA)裂解的早期事件和晚期事件DNA完全变性。凝胶电泳表明DNA切割是随机的,不会导致表明核糖体间单位倍数的阶梯模式。在分泌表皮细胞的PCD期间,尽管核降解,但橡胶颗粒仍继续合成并积累在分泌表皮细胞中。 PCD在花岗石管形成中的作用表明PCD在植物腺体发育中可能起重要作用。

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