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Changes in mitochondrial membrane potential and accumulation of reactive oxygen species precede ultrastructural changes during ovule abortion

机译:胚珠流产期间超微结构变化之前,线粒体膜电位的变化和活性氧的积累

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摘要

In many species, environmental stress reduces plant fertility. In Arabidopsis thaliana, a significant fraction of this reduction in plant fertility results from ovule abortion and embryo senescence. In this species, environmental conditions were identified that induced 94% of the developing ovules to either undergo stress-induced ovule abortion or embryo senescence (Sun et al. Plant Physiol 135:2358–2367, 2004). Following salt stress, physiological and anatomical changes were first detected in the female gametophyte of an aborting ovule. Two to four hours after a period of salt stress that induces most ovules to abort, the mitochondrial membrane potential dissipated. Subsequently, cells in the gametophyte accumulated reactive oxygen species, which are known to be molecules that promote programmed cell death (PCD). Because mitochondria often play an important role in PCD, these organelles were closely examined for changes in structure. Although the anatomy of mitochondria varied, reproducible changes in mitochondria structure were not observed. Nonetheless, other changes in ultrastructure were found. In some aborting gametophytes, concentric rings of endoplasmic reticulum were formed. In a fraction of the aborting ovules, cytoplasmic contents and organelles were invaginated into the vacuole. Even in cryofixed sections, many of these bodies appeared indistinct, which is consistent with the degradation of their contents.
机译:在许多物种中,环境胁迫会降低植物的繁殖力。在拟南芥中,这种植物繁殖力下降的很大一部分是由胚珠流产和胚胎衰老引起的。在该物种中,确定了可诱导94%发育中的胚珠经历胁迫诱导的胚珠流产或胚胎衰老的环境条件(Sun等人,Plant Physiol 135:2358-2367,2004)。在盐胁迫之后,首先在流产的胚珠的雌配子体中检测到生理和解剖学变化。一段盐胁迫导致大多数胚珠流产后两到四个小时,线粒体膜电位消失了。随后,配子体中的细胞积聚了活性氧,已知这些氧是促进程序性细胞死亡(PCD)的分子。由于线粒体通常在PCD中起重要作用,因此仔细检查了这些细胞器的结构变化。尽管线粒体的解剖结构不同,但未观察到线粒体结构的可再现变化。尽管如此,还发现了超微结构的其他变化。在一些流产的配子体中,形成了内质网的同心环。在流产的胚珠的一小部分中,细胞质内含物和细胞器侵入液泡中。即使在冷冻固定的切片中,这些尸体中的许多也显得模糊不清,这与它们的内含物降解是一致的。

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  • 来源
    《Planta 》 |2006年第3期| 492-499| 共8页
  • 作者单位

    Department of Botany UF Genetics Institute and Plant Molecular and Cellular Biology Program University of Florida;

    Department of Botany UF Genetics Institute and Plant Molecular and Cellular Biology Program University of Florida;

    Department of Botany UF Genetics Institute and Plant Molecular and Cellular Biology Program University of Florida;

    Department of Botany University of Toronto;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Embryogenesis; Gametophyte; Ovule development; Programmed cell death; Salt stress;

    机译:胚胎发生;配子体;胚珠发育;程序性细胞死亡;盐胁迫;

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