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111.
In invertebrate–parasite systems, the likelihood of infection following parasite exposure is often dependent on the specific combination of host and parasite genotypes (termed genetic specificity). Genetic specificity can maintain diversity in host and parasite populations and is a major component of the Red Queen hypothesis. However, invertebrate immune systems are thought to only distinguish between broad classes of parasite. Using a natural host–parasite system with a well‐established pattern of genetic specificity, the crustacean Daphnia magna and its bacterial parasite Pasteuria ramosa, we found that only hosts from susceptible host–parasite genetic combinations mounted a cellular response following exposure to the parasite. These data are compatible with the hypothesis that genetic specificity is attributable to barrier defenses at the site of infection (the gut), and that the systemic immune response is general, reporting the number of parasite spores entering the hemocoel. Further supporting this, we found that larger cellular responses occurred at higher initial parasite doses. By studying the natural infection route, where parasites must pass barrier defenses before interacting with systemic immune responses, these data shed light on which components of invertebrate defense underlie genetic specificity.  相似文献   
112.
Dual-peak responses of retinal ganglion cells (RGCs) are observed in various species, previous researches suggested that both response peaks were involved in retinal information coding. In the present study, we investigated the temporal properties of the dual-peak responses recorded in mouse RGCs elicited by spatially homogeneous light flashes and the effect of the inhibitory inputs mediated by GABAergic and/or glycinergic pathways. We found that the two peaks in the dual-peak responses exhibited distinct temporal dynamics, similar to that of short-latency and long-latency single-peak responses respectively. Pharmacological studies demonstrated that the application of exogenous GABA or glycine greatly suppressed or even eliminated the second peak of the cells’ firing activities, while little change was induced in the first peak. Co-application of glycine and GABA led to complete elimination of the second peak. Moreover, application of picrotoxin or strychnine induced dual-peak responses in some cells with transient responses by unmasking a second response phase. These results suggest that both GABAergic and glycinergic pathways are involved in the dual-peak responses of the mouse RGCs, and the two response peaks may arise from distinct pathways that would converge on the ganglion cells.  相似文献   
113.
Cell morphology and proliferation was investigated in the atretic follicles during estrous cycles in the guinea pig. Ovarian samples on days 1, 4, 8, 12 and 16 of the estrous cycle in the guinea pig were taken in the morning for histologic staining with hematoxylin and eosin (HE), and immunohistochemical staining of the protein proliferating cell nuclear antigen (PCNA). The results indicated that the granulosa cells degenerated and eliminated first in atretic follicles, while the fibroblast-like cells appeared in the innermost layer of theca interna cells. When the fibroblast-like cells migrated to the antrum, they proliferated and formed a new tissue in peripheral to the zona pellucida of the oocyte. Our results also revealed that the orientation of the theca interna cell arrangement changed twice during the process of atresia, and the loose connective tissue in the antrum was critical for follicular atresia. Therefore, follicular atresia was not a simple process of cell death and elimination, but coexisted with cell proliferation. To our knowledge, we have for the first time confirmed cell proliferation and the presence of new tissue in atretic follicles in guinea pigs.  相似文献   
114.
Paek  Hyo-Jin  Luo  Zhao-Bo  Choe  Hak-Myong  Quan  Biao-Hu  Gao  Kai  Han  Sheng-Zhong  Li  Zhou-Yan  Kang  Jin-Dan  Yin  Xi-Jun 《Transgenic research》2021,30(5):663-674
Transgenic Research - Herein, we investigate the high incidence of umbilical hernia and tippy-toe standing and their underlying changes in gene expression and proliferation in myostatin knockout...  相似文献   
115.
To elucidate the effect of selenium (Se) on antioxidant function of mammary glands in dairy cows and the underlying mechanism, an experiment was conducted using a single-factor completely randomized design study. Bovine mammary epithelial cells (BMECs) were randomly divided into four groups: control, Se treatment, 2,4-dinitrochlorobenzene (DNCB) inhibition, and Se prevention. Treatment of BMECs with Se was found to significantly reverse decreased cell proliferation and the expression of thioredoxin reductase (TrxR) after DNCB exposure. DNCB-induced activation of apoptosis signaling kinase-1 (ASK-1), which activates the mitogen-activated protein kinase (MAPK) pathway, was reduced in BMECs treated with Se. Additionally, our results indicated that Se treatment resulted in lower intracellular accumulation of arachidonic acid (ARA) and 15-hydroperoxyeicosatetraenoic acid (15-HPETE) due to suppressed expression of cytosolic phospholipase A2 (cPLA2) regulated by p38MAPK and c-Jun N-terminal kinase (JNK) in DNCB-stimulated BMECs. Taken together, these findings suggest that Se treatment improved the antioxidant function of dairy cow mammary glands and protected cells from oxidative damage primarily by increasing the activity of TrxR, inhibiting the activation of the MAPK signaling pathway, and thus decreasing the content of ARA and its related metabolites.  相似文献   
116.
【目的】本研究旨在分析甜菜夜蛾Spodoptera exigua蛹卵巢细胞建立细胞系的整个过程,探究细胞由体内到体外培养过程中其基因表达在转录水平的变化,为昆虫体外培养模型的建立提供理论基础。【方法】利用Illumina Hiseq测序平台对甜菜夜蛾蛹卵巢细胞离体培养过程中各阶段的细胞分别进行转录组测序,对获得注释的差异表达基因及其相关信号通路进行分析;通过荧光定量PCR对部分细胞周期相关基因(cycd和cdk4)、调控基因(cdc20,apc1,skp2和mad1)、增殖相关分子标志物(mcm4和pcna)在甜菜夜蛾卵巢细胞离体培养过程中的转录进行验证。【结果】甜菜夜蛾蛹卵巢细胞离体培养过程包括5个阶段:解剖获得离体的卵巢组织,卵巢组织贴壁培养后游离出原代细胞,细胞转化重新具备增殖能力,成功首次传代,以及能够连续传代15代以上建立细胞系。上述5个阶段的细胞经转录组测序、数据组装后共获得46 796条unigenes序列,组装得到序列长度完整性好;转录本unigenes序列拼接长度分布合理,样本碱基Q30均在94%以上。通过KEGG数据库获得注释的unigenes有1 473条,参与细胞过程紧密相关的20条信号通路,其中有92条unigenes在细胞周期信号通路中获得注释。聚类分析表明,在体内处于快速发育状态的卵巢细胞与同样处于增殖状态的细胞系基因表达模式非常接近。原代细胞由短暂停滞生长至成簇细胞的转化关键期,筛选到差异表达基因619个,cdk4在离体培养期表达量显著降低,cycd在细胞转化关键期之后表达量显著升高,cdc20,apc1,skp2和mad1在卵巢组织和细胞系的表达量显著高于原代细胞、转化关键期细胞和首次传代细胞的。从原代细胞至传代后,cycd的表达显著升高8.7倍,显著高于mcm4和pcna的变化水平。【结论】甜菜夜蛾卵巢细胞离体培养过程中5个阶段的细胞转录组测序获得的序列质量符合数据分析的基本要求。筛选获得了甜菜夜蛾蛹卵巢细胞经离体培养过程中的差异表达基因。原代细胞逆转增殖可能与cdk4,cycd,skp2和mad1等细胞周期调控基因表达有关。另外,cycd可作为原代细胞具备传代能力的标志物。  相似文献   
117.
118.
Desulfocapsa sulfexigens SB164P1 (DSM 10523) belongs to the deltaproteobacterial family Desulfobulbaceae and is one of two validly described members of its genus. This strain was selected for genome sequencing, because it is the first marine bacterium reported to thrive on the disproportionation of elemental sulfur, a process with a unresolved enzymatic pathway in which elemental sulfur serves both as electron donor and electron acceptor. Furthermore, in contrast to its phylogenetically closest relatives, which are dissimilatory sulfate-reducers, D. sulfexigens is unable to grow by sulfate reduction and appears metabolically specialized in growing by disproportionating elemental sulfur, sulfite or thiosulfate with CO2 as the sole carbon source. The genome of D. sulfexigens contains the set of genes that is required for nitrogen fixation. In an acetylene assay it could be shown that the strain reduces acetylene to ethylene, which is indicative for N-fixation. The circular chromosome of D. sulfexigens SB164P1 comprises 3,986,761 bp and harbors 3,551 protein-coding genes of which 78% have a predicted function based on auto-annotation. The chromosome furthermore encodes 46 tRNA genes and 3 rRNA operons.  相似文献   
119.
Citrus is the most important tree fruit crop in the world. However, citrus production is affected by both biotic and abiotic stresses, including drought, extreme temperature, salinity, citrus canker, citrus tristeza virus, and Huanglongbing (or citrus greening), among others. These stresses can severely influence growth and development of both rootstocks and/or scions of citrus trees, thus reducing both fruit production and fruit quality. Modern advances in the tools of plant biotechnology and advances in genomics play important roles in understanding how citrus crops can cope with diseases and adverse environmental conditions. Within the last decades, much progress has been made in identifying and cloning of genes involved in resistance to biotic and abiotic stresses as well in genetic transformation of Citrus and its related genera, such as Poncirus trifoliata and Fortunella spp. In this review, we will provide information on advances and insights on genetic transformation protocols as well as availability of characterized genes involved in resistance to both abiotic and biotic stresses. This will be followed with a discussion on perspectives of future developments in this field.  相似文献   
120.
Dong  Chengya  Wen  Shaohong  Zhao  Shunying  Sun  Si  Zhao  Shangfeng  Dong  Wen  Han  Pingxin  Chen  Qingfang  Gong  Ting  Chen  Wentao  Liu  Wenqian  Liu  Xiangrong 《Neurochemical research》2021,46(4):755-769
Neurochemical Research - Cerebral ischemia leads to reactive astrogliosis and glial scar formation. Glial scarring can impede functional restoration during the recovery phase of stroke. Salidroside...  相似文献   
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