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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Ultrastructural characterization of microlipophagy induced by the interaction of vacuoles and lipid bodies around generative and sperm cells inArabidopsispollen
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Ultrastructural characterization of microlipophagy induced by the interaction of vacuoles and lipid bodies around generative and sperm cells inArabidopsispollen

机译:生成和精子细胞中血管菌和脂体相互作用诱导的微血症诱导的超微结构表征

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During pollen maturation, various organelles change their distribution and function during development as male gametophytes. We analyzed the behavior of lipid bodies and vacuoles involved in lipophagy inArabidopsispollen using serial section SEM and conventional TEM. At the bicellular pollen stage, lipid bodies in the vegetative cells lined up at the surface of the generative cell. Vacuoles then tightly attached, drew in, and degraded the lipid bodies and eventually occupied the space of the lipid bodies. Degradation of lipid began before transfer of the entire contents of the lipid body. At the tricellular stage, vacuoles instead of lipid bodies surrounded the sperm cells. The degradation of lipid bodies is morphologically considered microautophagy. Theatg2-1 Arabidopsismutant is deficient in one autophagy-related gene (ATG). In this mutant, the assembly of vacuoles around sperm cells was sparser than that in wild-type pollen. The deficiency of ATG2 likely prevents or slows lipid degradation, although it does not prevent contact between organelles. These results demonstrate the involvement of microlipophagy in the pollen development ofArabidopsis.
机译:在花粉成熟过程中,各种细胞器在雄配子体发育过程中改变其分布和功能。我们使用连续切片扫描电镜和常规透射电镜分析了参与花粉脂质吞噬的脂质体和液泡的行为。在双细胞花粉期,营养细胞中的脂质体排列在生殖细胞的表面。然后,液泡紧密附着、吸入并降解脂质体,最终占据脂质体的空间。在脂质体的全部内容物转移之前,脂质开始降解。在三细胞期,精子细胞周围是液泡而不是脂质体。脂质体的降解在形态学上被认为是微自噬。TG2-1拟南芥突变体缺乏一个自噬相关基因(ATG)。在这个突变体中,精子细胞周围的液泡比野生型花粉中的液泡少。ATG2的缺乏可能会阻止或减缓脂质降解,尽管它不会阻止细胞器之间的接触。这些结果表明,微脂吞噬作用参与了拟南芥的花粉发育。

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