首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Ovarian nutritional resources during the reproductive cycle of the hematophagous Dipetalogaster maxima (Hemiptera: Reduviidae): focus on lipid metabolism.
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Ovarian nutritional resources during the reproductive cycle of the hematophagous Dipetalogaster maxima (Hemiptera: Reduviidae): focus on lipid metabolism.

机译:食血双足龙的生殖周期中的卵巢营养资源:侧重于脂质代谢。

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In this study, we have analyzed the changes of the ovarian nutritional resources in Dipetalogaster maxima at representative days of the reproductive cycle: previtellogenesis, vitellogenesis, as well as fasting-induced early and late atresia. As expected, the amounts of ovarian lipids, proteins, and glycogen increased significantly from previtellogenesis to vitellogenesis and then, diminished during atresia. However, lipids and protein stores found at the atretic stages were higher in comparison to those registered at previtellogenesis. Specific lipid staining of ovarian tissue sections evidenced remarkable changes in the shape, size, and distribution of lipid droplets throughout the reproductive cycle. The role of lipophorin (Lp) as a yolk protein precursor was analyzed by co-injecting Lp-OG (where OG is Oregon Green) and Lp-DiI (where DiI is 1,10-dioctadecyl-3,3,30,30-tetramethylindocarbocyanine) to follow the entire particle, demonstrating that both probes colocalized mainly in the yolk bodies of vitellogenic oocytes. Immunofluorescence assays also showed that Lp was associated to yolk bodies, supporting its endocytic pathway during vitellogenesis. The involvement of Lp in lipid delivery to oocytes was investigated in vivo by co-injecting fluorescent probes to follow the fate of the entire particle (Lp-DiI) and its lipid cargo (Lp-Bodipy-FA). Lp-DiI was readily incorporated by vitellogenic oocytes and no lipoprotein uptake was observed in terminal follicles of ovaries at atretic stages. Bodipy-FA was promptly transferred to vitellogenic oocytes and, to a much lesser extent, to previtellogenic follicles and to oocytes of ovarian tissue at atretic stages. Colocalization of Lp-DiI and Lp-Bodipy-FA inside yolk bodies indicated the relevance of Lp in the buildup of lipid and protein oocyte stores during vitellogenesis.
机译:在这项研究中,我们分析了在生殖周期的代表性天数,最大双足蜂卵巢营养资源的变化:玻璃体形成,卵黄形成以及禁食引起的早期和晚期闭锁。正如预期的那样,卵巢脂质,蛋白质和糖原的数量从前玻璃体生成到卵黄生成显着增加,然后在闭锁期间减少。然而,与在玻璃体形成之前记录的相比,在闭锁阶段发现的脂质和蛋白质存储更高。卵巢组织切片的特定脂质染色表明,在整个生殖周期中,脂质滴的形状,大小和分布均发生了显着变化。通过共注入Lp-OG(其中OG为俄勒冈绿色)和Lp-DiI(其中DiI为1,10-二十八烷基-3,3,30,30- (四甲基吲哚基花菁)跟随整个粒子,表明这两个探针主要共定位在卵黄形成卵母细胞的卵黄体中。免疫荧光分析还表明,Lp与卵黄体相关,在卵黄发生过程中支持其内吞途径。通过共注入荧光探针以追踪整个颗粒(Lp-DiI)及其脂质货物(Lp-Bodipy-FA)的命运,在体内研究了Lp在脂质向卵母细胞递送中的参与。 Lp-DiI很容易被卵黄形成的卵母细胞吸收,在闭锁期卵巢的终末卵泡中未观察到脂蛋白的摄取。 Bodipy-FA迅速转移到卵母细胞形成卵母细胞,并在较小的程度上转移到玻璃体形成前卵泡和卵巢组织卵母细胞。 Lp-DiI和Lp-Bodipy-FA在卵黄体内共定位表明卵黄形成过程中Lp与脂质和蛋白质卵母细胞存储的建立有关。

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