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首页> 外文期刊>Sexual plant reproduction >Localisation pattern of homogalacturonan and arabinogalactan proteins in developing ovules of the gymnosperm plant Larix decidua Mill
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Localisation pattern of homogalacturonan and arabinogalactan proteins in developing ovules of the gymnosperm plant Larix decidua Mill

机译:裸子植物Larix decidua Mill发育胚珠中同型半乳糖醛酸和阿拉伯半乳聚糖蛋白的定位模式

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We have identified and characterised the temporal and spatial distribution of the homogalacturonan (HG) and arabinogalactan proteins (AGP) epitopes that are recognised by the antibodies JIM5, JIM7, LM2, JIM4, JIM8 and JIM13 during ovule differentiation in Larix decidua Mill. The results obtained clearly show differences in the pattern of localisation of specific HG epitopes between generative and somatic cells of the ovule. Immunocytochemical studies revealed that the presence of low-esterified HG is characteristic only of the wall of megasporocyte and megaspores. In maturing female gametophytes, highly esterified HG was the main form present, and the central vacuole of free nuclear gametophytes was particularly rich in this category of HG. This pool will probably be used in cell wall building during cellularisation. The selective labelling obtained with AGP antibodies indicates that some AGPs can be used as markers for gametophytic and sporophytic cells differentiation. Our results demonstrated that the AGPs recognised by JIM4 may constitute molecules determining changes in ovule cell development programs. Just after the end of meiosis, the signal detected with JIM4 labelling appeared only in functional and degenerating megaspores. This suggests that the antigens bound by JIM4 are involved in the initiation of female gametogenesis in L. decidua. Moreover, the analysis of AGPs distribution showed that differentiation of the nucellus cells occurs in the very young ovule stage before megasporogenesis. Throughout the period of ovule development, the pattern of localisation of the studied AGPs was different both in tapetum cells surrounding the gametophyte and in nucellus cells. Changes in the distribution of AGPs were also observed in the nucellus of the mature ovule, and they could represent an indicator of tissue arrangement to interact with the growing pollen tube. The possible role of AGPs in fertilisation is also discussed.
机译:我们已经鉴定并鉴定了半乳果聚糖(HG)和阿拉伯半乳聚糖蛋白(AGP)表位的时空分布,这些表位在落叶松蜕皮胚珠分化过程中被抗体JIM5,JIM7,LM2,JIM4,JIM8和JIM13识别。获得的结果清楚地表明,胚珠的生殖细胞和体细胞之间特定HG表位的定位模式存在差异。免疫细胞化学研究表明,低酯化HG的存在仅是巨孢细胞和大孢子壁的特征。在成熟的雌配子体中,高度酯化的HG是主要形式,而游离核配子体的中央液泡在此类HG中特别丰富。该池可能会在细胞化过程中用于细胞壁的构建。用AGP抗体获得的选择性标记表明某些AGP可用作配子体和孢子体细胞分化的标记。我们的结果表明,JIM4识别的AGP可能构成决定胚珠细胞发育程序变化的分子。减数分裂结束后,用JIM4标记检测到的信号仅出现在功能性和退化性大孢子中。这表明与JIM4结合的抗原参与了蜕膜乳杆菌中女性配子的启动。此外,对AGPs分布的分析表明,在大孢子发生之前的非常年轻的胚珠阶段就发生了细胞的分化。在整个胚珠发育期间,所研究的AGP的定位模式在配子体周围的绒毡层细胞和细胞核细胞中均不同。在成熟胚珠的细胞核中也观察到了AGPs分布的变化,它们可能代表组织排列与花粉管生长相互作用的指示。还讨论了AGP在受精中的可能作用。

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