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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Pollen grain development and male sterility in the perfect flowers of Maytenus obtusifolia Mart. (Celastraceae)
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Pollen grain development and male sterility in the perfect flowers of Maytenus obtusifolia Mart. (Celastraceae)

机译:花粉谷物开发和雄性不育在Maytenus obsusifolia Mart的完美花卉中。 (Celastraceae)

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Perfect flowers of Maytenus obtusifolia have partial sterility of pollen grains, resulting in collapsed and developed free microspores. However, the cellular events resulting in partial male sterility have not been determined. In pistillate flowers of this species, male sterility is related to the premature programmed cell death (PCD) in tapetum and sporogenic cells. The process occurs through autophagy via macroautophagy and massive autophagy and is associated with sporophytic cytoplasmic male sterility (CMS). Here, we characterised the development of pollen grains and investigated the cellular events that result in tapetum cells and free microspores PCD in perfect flowers, using light and transmission electron microscopy combined with the TUNEL (Terminal deoxynucleotidyl transferase mediated dUDP end-Labeling) assay and the ZIO (Zinc iodide-osmium tetroxide) method. Pollen grain development in perfect flowers was divided into eight developmental stages based on the characteristics of the pollen grains. Tapetum cells undergo PCD at the free microspore stage, through a macroautophagic process, by formation of autophagosomes and by autophagosomes giving rise to lytic vacuoles at maturity. In the final stage of PCD, massive autophagy occurs by rupture of the tonoplast. The development of viable and inviable microspores diverges at the vacuolated microspore stage, when PCD occurs in some free microspores, causing interruption of pollen development through necrosis. These events result in the observed partial male sterility. Viable microspores undergo mitosis and develop into tricellular pollen grains. Male sterility in hermaphrodite individuals is here interpreted as gametophytic CMS.
机译:美霉的完美花朵具有花粉颗粒的部分不含花粉颗粒,导致塌陷和发育自由孢子。然而,尚未确定导致部分雄性不育的细胞事件。在这种物种的泼锌花朵中,雄性不育与Tapetum和Sporenic Cells中的过早编程细胞死亡(PCD)有关。该过程通过宏观摄影和大规模自噬通过自噬发生,并且与孢子素细胞质雄性不育(CMS)有关。在这里,我们特征在于,使用光和透射电子显微镜与TUNEL(末端脱氧核苷酸转移酶介导的DUDP末端标记酶介导的DUDP末端标记酶介导的DUDP末端标记酶介导的DUDP末端标记酶介导的DUDP末端标记)测定,研究了花粉粒细胞和自由孢子PCD的细胞事件。 ZiO(锌碘化物 - 锇氧化锇)方法。完美花粉的花粉晶体发育基于花粉颗粒的特征分为八个发展阶段。 Tapetum细胞通过形成自噬粒程和自噬蛋白的形成,通过显微散噬液相传,通过显微散噬细胞进行PCD。在PCD的最后阶段,通过调节剂破裂发生巨大的自噬。当PCD发生在一些自由孢子中时,在真空的微孔阶段发散可行和可吸引的微孔阶段的发散,导致通过坏死导致花粉发育的中断。这些事件导致观察到的部分雄性不育。可行的幼儿孢子经历有丝分裂并发展成三胞花粉颗粒。雌雄同体中的雄性不育者在这里被解释为杂草类药物CMS。

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