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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Megasporogenesis and programmed cell death in Tillandsia (Bromeliaceae)
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Megasporogenesis and programmed cell death in Tillandsia (Bromeliaceae)

机译:铁兰(凤梨科)的大孢子发生和程序性细胞死亡

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The degeneration of three of four meiotic products is a very common process in the female gender of oogamous eukaryotes. In Tillandsia (and many other angiosperms), the surviving megaspore has a callose-free wall in chalazal position while the other three megaspores are completely embedded in callose. Therefore, nutrients and signals can reach more easily the functional megaspore from the nucellus through the chalazal pole with respect to the other megaspores. The abortion of three of four megaspores was already recognized as the result of a programmed cell death (PCD) process. We investigated the process to understand the modality of this specific type of PCD and its relationship to the asymmetric callose deposition around the tetrad. The decision on which of the four megaspores will be the supernumerary megaspores in angiosperms, and hence destined to undergo programmed cell death, appears to be linked to the callose layer deposition around the tetrad. During supernumerary megaspores degeneration, events leading to the deletion of the cells do not appear to belong to a single type of cell death. The first morphological signs are typical of autophagy, including the formation of autophagosomes. The TUNEL positivity and a change in morphology of mitochondria and chloroplasts indicate the passage to an apoptotic-like PCD phase, while the cellular remnants undergo a final process resembling at least partially (ER swelling) necrotic morphological syndromes, eventually leading to a mainly lipidic cell corpse still separated from the functional megaspore by a callose layer.
机译:在卵性真核生物的女性中,四种减数分裂产物中的三种减退是一个非常普遍的过程。在铁兰(和其他许多被子植物)中,幸存的大孢子在chalazal位置具有无call壁,而其他三个大孢子则完全埋在ose中。因此,相对于其他大孢子,营养物和信号可以更容易地从细胞核通过鸡la极到达功能性大孢子。由于程序性细胞死亡(PCD)过程的结果,已经确认了四个大孢子中的三个的流产。我们调查了过程,以了解这种特定类型的PCD的形式及其与四分体周围不对称call质沉积的关系。关于这四个大孢子中哪个将是被子植物中多余的大孢子,并因此决定要进行程序性细胞死亡的决定,似乎与四分体周围的ose质层沉积有关。在多余的大孢子变性期间,导致细胞缺失的事件似乎不属于单一类型的细胞死亡。最初的形态学特征是自噬的典型特征,包括自噬体的形成。 TUNEL阳性以及线粒体和叶绿体形态的变化表明已进入凋亡样PCD期,而细胞残余物经历了至少部分类似于(ER肿胀)坏死性形态综合征的最终过程,最终导致主要为脂质细胞尸体仍通过a质层与功能性大孢子隔开。

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