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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Cytological differentiation and cell wall involvement in the growth mechanisms of articulated laticifers in Tabernaemontana catharinensis A.DC. (Apocynaceae)
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Cytological differentiation and cell wall involvement in the growth mechanisms of articulated laticifers in Tabernaemontana catharinensis A.DC. (Apocynaceae)

机译:细胞学分化和细胞壁参与Tabernaemontana Catharinensis A.dc的铰接乳脂矿生长机制。 (apocynaceae)

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摘要

The cellular mechanisms of laticifer growth are of particular interest in plant biology but are commonly neglected. Using transmission electron microscopy and immunocytochemical methods, we recorded cytological differentiation and evaluated the cell wall involvement in the growth of articulated laticifers with intrusive growth in the mature embryo and plant shoot apex of Tabernaemontana catharinensis. The incorporation of adjacent meristematic cells into the laticifer system occurred in the embryo and plant shoot apex, and the incorporated cells acquired features of laticifer, confirming the laticifers' action-inducing mechanism. In the embryo, this was the main growth mechanism, and began with enlargement of the plasmodesmata and the formation of pores between laticifers and meristematic cells. In the plant shoot apex, it began with loose and disassembled walls and the reorientation of the cortical microtubules of the incorporated cell. Plasmodesmata were absent in these laticifers. There was stronger evidence of intrusive growth in undifferentiated portions of the plant shoot apex than in the embryo. The numerous plasmodesmata in laticifers of the embryo may have been related to the lower frequency of intrusive growth. Intrusive growth was associated with presence of arabinan (increasing wall flexibility and fluidity), and absence of galactan (avoiding wall stiffness), and callose (as a consequence of reduction in symplastic connections) in the laticifer walls. The abundance of low de-methyl-esterified homogalacturonan in the middle lamella and corners may reestablish cell-cell bonding in the laticifers. The cell wall features differed between embryo and plant shoot apex and are directly associated to laticifer growth mechanisms.
机译:含型乳脂矿生长的细胞机制对植物生物学特别感兴趣,但通常被忽视。使用透射电子显微镜和免疫细胞化学方法,我们记录了细胞学分化,并评估了细胞壁的涉及诱人的乳化剂生长,在成熟的胚胎和植物射击顶点中具有侵入性的植物生长。将相邻的共聚细胞掺入胚胎系统中发生在胚胎和植物射击顶点中,以及掺入的细胞获得含垫的特征,确认含型乳脂矿的作用诱导机制。在胚胎中,这是主要的生长机制,并开始扩大乳脂矿和乳化剂和共同细胞之间的毛孔。在植物射击顶点中,它开始用松散且拆卸的壁和掺入细胞的皮质微管的重新定向。这些含羞草中没有脓性药物。在植物枝条顶点的未分化部分中具有更强的侵扰性增长证据表达了比胚胎在胚胎中的侵入部分。胚胎的含羞草中的许多血浆可能与侵扰性的较低频率有关。侵扰性生长与阿拉伯南(壁柔性和流动性增加)的存在有关,并且没有吡酰坦(避免壁刚度),并在含型墙壁中调用(由于对互补性的降低)。中隙和角落中低甲基 - 酯化的均麻酸的丰度可在含型器中重新建立细胞 - 细胞键。细胞壁特征不同于胚胎和植物射击顶点,并且与拟合者生长机制直接相关。

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