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During embryonic development of Artemia sinica, environmental stresses induce the embryo diapause phenomenon, required to resist apoptosis and regulate cell cycle activity. The small ubiquitin-related modifier-1 (SUMO), a reversible post-translational protein modifier, plays an important role in embryo development. SUMO regulates multiple cellular processes, including development and other biological processes. The molecular mechanism of diapause, diapause termination and the role of As-sumo-1 in this processes and in early embryo development of Artemia sinica still remains unknown. In this study, the complete cDNA sequences of the sumo-1 homolog, sumo ligase homolog, caspase-1 homolog and cyclin B homolog from Artemia sinica were cloned. The mRNA expression patterns of As-sumo-1, sumo ligase, caspase-1, cyclin B and the location of As-sumo-1 were investigated. SUMO-1, p53, Mdm2, Caspase-1, Cyclin B and Cyclin E proteins were analyzed during different developmental stages of the embryo of A. sinica. Small interfering RNA (siRNA) was used to verify the function of sumo-1 in A. sinica. The full-length cDNA of As-sumo-1 was 476 bp, encoding a 92 amino acid protein. The As-caspases-1 cDNA was 966 bp, encoding a 245 amino-acid protein. The As-sumo ligase cDNA was 1556 bp encoding, a 343 amino acid protein, and the cyclin B cDNA was 739 bp, encoding a 133 amino acid protein. The expressions of As-sumo-1, As-caspase-1 and As-cyclin B were highest at the 10 h stage of embryonic development, and As-sumo ligase showed its highest expression at 0 h. The expression of As-SUMO-1 showed no tissue or organ specificity. Western blotting showed high expression of As-SUMO-1, p53, Mdm2, Caspase-1, Cyclin B and Cyclin E at the 10 h stage. The siRNA caused abnormal development of the embryo, with increased malformation and mortality. As-SUMO-1 is a crucial regulation and modification protein resumption of embryonic diapause and early embryo development of A. sinica.  相似文献   

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Glycogen serves as a metabolic reserve and is involved in macromolecular synthesis. Glycogen phosphorylase (GPase) is a key enzyme involved in intracellular glycogen catabolism, catalyzing the first step in glycogen degradation. In the diapause, GPase catalyzes glycogen into the closely related molecule, sorbitol. In this study, the full-length cDNA of the GPase gene (2,790 bp) was isolated from Artemia sinica for the first time by rapid amplification of cDNA ends technology. The GPase gene encoded a protein of 853 amino acids belonging to the Glycosyltransferase GTB type superfamily. The expression pattern and location of GPase were investigated at various stages during the embryonic development of A. sinica using real-time PCR and in situ hybridization. High GPase expression was detected at the 0 and 5 h stages. Subsequently, expression declined and was maintained at a low level during the stages from 10 to 40 h following by a small increase at day 3. Expression was downregulated at temperatures ranging from 25 to 20 °C and was subsequently upregulated in the range 15–5 °C. In situ hybridization assays showed wide distribution of the GPase gene during different developmental stages. From the results of this study, we conclude that the GPase gene expression is stress-related and might play an important role in Artemia development and metabolism.  相似文献   

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In temperate waters, post-diapause and subitaneous offspring in Daphnia vary in life history traits and metabolic rates, and presumably are adapted to the seasonal environments in which they dwell. These offspring types result from different developmental programs of the same genetic background, representing the phenomenon of phenotypic plasticity. We aimed to explore the molecular mechanism of this phenotypic plasticity in Daphnia pulex from an intermittent population by applying a high-throughput proteomic analysis and expression analysis of several genes. The study revealed 176 proteins that were differentially expressed among offspring phenotypes. Post-diapause and subitaneous females clearly differed in their upregulated protein profiles and gene expression levels. There were more upregulated proteins with oxidoreductase and binding activity in post-diapause offspring, whereas more upregulated proteins with transporter and transferase activity were seen in subitaneous offspring. In contrast to subitaneous phenotype, over 1.5-fold more of the proteins that were upregulated in post-diapause phenotype are involved in metabolism and biosynthesis. Expression levels of several selected genes linked to cellular metabolism were also higher in post-diapause females. The greatest difference, 5-fold upregulation in post-diapause compared to subitaneous offspring, was recorded for the target of rapamycin-like (TOR) protein. Expression of ribosomal proteins in this offspring phenotype was also increased. These upregulations suggest that the TOR signaling pathway is involved and may be responsible for the regulation of the developmental program underlying post-diapause and subitaneous offspring phenotypes in Daphnia. Gene regulatory patterns observed in post-diapause and subitaneous offspring were in agreement with the expectations based on previously observed organismal traits of these Daphnia offspring types.  相似文献   

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Glycerol kinase (GK) catalyzes the rate-limiting step in glycerol utilization by transferring a phosphate from ATP to glycerol, yielding glycerol 3-phosphate, which is an important intermediate for both energy metabolism and glycerolipid production. Artemia sinica has an unusual diapause process under stress conditions of high salinity, low temperature and lack of food. In the process, diapause embryos of A. sinica (brine shrimp) accumulate high concentrations of glycerol as a cryoprotectant to prevent low temperature damage to embryos. Upon embryo restart, glycerol is converted into glucose and other carbohydrates. Therefore, GK plays an important role in the diapause embryo restart process. However, the role of GK in diapause termination of embryo development in A. sinica remains unknown.  相似文献   

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The Drosophila melanogaster embryo has been widely utilized as a model for genetics and developmental biology due to its small size, short generation time, and large brood size. Information on embryonic metabolism during developmental progression is important for further understanding the mechanisms of Drosophila embryogenesis. Therefore, the aim of this study is to assess the changes in embryos’ metabolome that occur at different stages of the Drosophila embryonic development. Time course samples of Drosophila embryos were subjected to GC/MS-based metabolome analysis for profiling of low molecular weight hydrophilic metabolites, including sugars, amino acids, and organic acids. The results showed that the metabolic profiles of Drosophila embryo varied during the course of development and there was a strong correlation between the metabolome and different embryonic stages. Using the metabolome information, we were able to establish a prediction model for developmental stages of embryos starting from their high-resolution quantitative metabolite composition. Among the important metabolites revealed from our model, we suggest that different amino acids appear to play distinct roles in different developmental stages and an appropriate balance in trehalose-glucose ratio is crucial to supply the carbohydrate source for the development of Drosophila embryo.  相似文献   

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Li X  Hou L  Ma J  Liu Y  Zheng L  Zou X 《Molecular biology reports》2012,39(1):701-707
β-Catenin plays a crucial role in embryonic development and responds to the activation of several signal transduction pathways. In this paper, in order to understand the functions of β-catenin gene in early embryonic development of Artemia sinica, the complete cDNA sequence was cloned for the first time using RACE technology, then the sequence was analyzed by some bioinformatic methods. The expression of the β-catenin gene was investigated at various stages during the embryonic development using quantitative real-time PCR and immunohistochemistry assay. Through the investigation, the result of real-time PCR illustrated that β-catenin gene might relate to the response of A. sinica’s immune system and osmotic pressure system in early embryonic developmental stage. Meanwhile, Immunohistochemistry assay demonstrated that during embryonic development, β-catenin was mainly expressed in the cephalothorax. Besides, we discovered that β-catenin might not be a maternal gene in A. sinica, and this new phenomenon may explain a constitutive and regional expression during the early embryonic development of A. sinica.  相似文献   

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意大利蝗卵发育过程中血蓝蛋白基因表达分析   总被引:2,自引:0,他引:2  
【目的】意大利蝗Calliptamus italicus是新疆草原的主要优势危害种,以卵在土壤中越冬。呼吸代谢可反映蝗卵的生理状态,呼吸蛋白对于呼吸系统不完善的蝗卵尤为重要。本研究旨在明确意大利蝗卵发育过程中血蓝蛋白基因的表达情况。【方法】采用实时荧光定量PCR方法检测不同发育阶段的蝗卵以及1龄蝗蝻的血蓝蛋白2个亚基基因Hc1和Hc2的表达量。【结果】根据解剖形态观察,将意大利蝗越冬卵的整个发育过程分为10个阶段,包括9个卵发育阶段(C-Ⅰ-C-Ⅹ)和1龄蝗蝻阶段(C-Ⅹ)。Hc1和Hc2在越冬蝗卵各发育阶段以及1龄蝗蝻中均有表达。其中,在蝗卵早期发育阶段(C-Ⅰ, C-Ⅱ和C-Ⅲ),Hc1表达量逐渐增加,C-Ⅲ阶段表达量显著高于C-Ⅰ和C-Ⅱ阶段;滞育阶段(C-Ⅳ, C-Ⅴ和C-Ⅵ),胚胎发育停滞,Hc1表达量较C-Ⅲ,C-Ⅶ和C-Ⅷ阶段低;滞育后发育阶段(C-Ⅶ和C-Ⅷ),蝗卵解除滞育,快速发育,Hc1表达量较早期发育阶段和滞育阶段高,其中,C-Ⅷ阶段Hc1表达量最高(212.3156±10.5470),显著高于其他所有阶段;1龄蝗蝻(C-Ⅹ)的Hc1表达量最低,为0.4017±0.1010。Hc2表达量在C-Ⅴ阶段最高(679.7511±54.5719),显著高于其他所有阶段;除C-Ⅴ阶段外,其他各阶段之间Hc2表达量差异均不显著。Hc1在蝗卵滞育后阶段高表达,而Hc2在蝗卵滞育阶段高表达。【结论】血蓝蛋白亚基基因Hc1和Hc2在整个意大利蝗卵发育过程均有表达,且具有阶段特异性。Hc1与Hc2协同作用为蝗卵发育供氧,其中,Hc1主要负责蝗卵滞育后发育期间的氧气运载,而Hc2主要维持滞育期间的氧气运载,且载氧效率较低。研究结果可为进一步探讨意大利蝗卵的抗逆机制提供科学依据。  相似文献   

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Cytochrome P450 aromatase (CYP19) catalyzes the conversion of androgens to estrogens and is critical in sex differentiation. CYP19 exists as the ovarian type and brain type. Herein, we cloned the full‐length ovarian cyp19a gene from the Chinese soft‐shelled turtle, Pelodiscus sinensis (pscyp19a). We determined the distribution of pscyp19a in adult tissue and evaluated its expression during embryonic development, following treatment with 17β‐estradiol (E2) or letrozole (LE). The pscyp19a complementary DNA is 2,285 bp in length and comprises a 1,512 bp open reading frame that encodes a protein of 503 AA. The nucleotide sequence and amino acid of pscyp19a shared significant identity with other vertebrate sequences. Expression of pscyp19a was high in the ovary (p < 0.01), and exhibited modest expression in the female brain and intestine. Expression of pscyp19a displayed significant differences between sexes during early embryo development stages; expression increased gradually during embryonic development in females, but the opposite trend was observed in males. Female embryos treated with different concentrations of E2 and LE displayed altered pscyp19a expression compared with untreated individuals, and E2 clearly induced pscyp19a expression. These results indicate that pscyp19a gene plays important roles in early developmental stages in Chinese soft‐shelled turtle, and may assist future studies on sex differentiation and sex control in this and similar species.  相似文献   

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 The Zfcth1 gene is, as the previously cloned carp cth1 gene, related to the mammalian TIS 11 family of primary response genes and encodes a protein with two putative CCCH zinc fingers. This report describes the RNA expression of this gene during oogenesis and early embryogenesis up to gastrulation in the zebrafish (Danio rerio). Maternal cth1 message is present in the ovary of 1-month-old fish and of adult fish in oocytes at all stages of maturation. In the youngest oocytes the message is localized in the cytoplasm all around the nucleus, in larger oocytes the message becomes restricted to the future animal pole of the embryo, and in mature oocytes the expression is sharply localized in the cortical layer under the micropyle. After ovulation the cth1 messenger spreads over the cytoplasmic cap and is distributed over the blastomeres during subsequent cleavages. In subsequent stages maternal expression of cth1 gradually disappears. From early epiboly stages onward embryonic cth1 expression is localized to the germ ring and the hypoblast cells in the central part of the embryonic shield. In the shield, cth1 expression largely overlaps with the area of gooscoid expression in the first involuting cells. In stages after 70% of epiboly cth1 expression diminishes and soon can no longer be detected in the embryo. Next to a developmental role in cell fate determination we propose a function for cth1 during oocyte maturation. Received: 19 October 1998 / Accepted: 16 February 1999  相似文献   

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