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[背景] 呼吸系统疾病是圈养麝常见疾病之一,其中部分由支气管败血波氏杆菌引起,但目前关于林麝源支气管败血波氏杆菌的研究甚少。[目的] 对分离自患病林麝鼻黏液的一株疑似支气管败血波氏杆菌进行分离鉴定和全基因组序列分析,为林麝相关疾病的防治奠定基础。[方法] 将病原菌纯化培养后,通过菌落形态和生化试验初步鉴定病原菌类型,然后进行药敏试验和小鼠致病性试验以观察其耐药和毒力表型,最后对其进行全基因组测序,通过平均核苷酸一致性(Average Nucleotide Identity,ANI)比对在全基因组水平进一步评估物种间的亲缘关系,并进行基因功能注释和遗传进化分析。[结果] 该病原菌经ANI分类属于经典波氏杆菌亚种,结合菌落形态和生化结果综合鉴定为支气管败血波氏杆菌,菌株命名为FMDBb1,药敏表型显示其对林可霉素、利福平及大多数β-内酰胺类抗生素耐药,对小鼠的半数致死量为8.55×106 CFU。全基因组测序显示该菌基因组大小为5 133 936 bp,基因功能注释显示其拥有强代谢能力,基因组内检测到65个经典波氏杆菌毒力因子,以及1个粉霉素和1个利福平的靶向耐药基因,同时发现19个插入序列和1个噬菌体区域的存在。序列类型为ST33,克隆复合体类型为CC6,管家基因联合建树分析显示与分离于韩国短毛猫的KVNON-570株相似性最高。[结论] 研究分离了林麝源支气管败血波氏杆菌并对其进行了全基因组测序及分析,为该病原菌感染的防治提供了宝贵的信息。  相似文献   
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Hongkong kumquat (Fortunella hindsii) is a wild citrus species characterized by dwarf plant height and early flowering. Here, we identified the monoembryonic F. hindsii (designated as ‘Mini‐Citrus’) for the first time and constructed its selfing lines. This germplasm constitutes an ideal model for the genetic and functional genomics studies of citrus, which have been severely hindered by the long juvenility and inherent apomixes of citrus. F. hindsii showed a very short juvenile period (~8 months) and stable monoembryonic phenotype under cultivation. We report the first de novo assembled 373.6 Mb genome sequences (Contig‐N50 2.2 Mb and Scaffold‐N50 5.2 Mb) for F. hindsii. In total, 32 257 protein‐coding genes were annotated, 96.9% of which had homologues in other eight Citrinae species. The phylogenomic analysis revealed a close relationship of F. hindsii with cultivated citrus varieties, especially with mandarin. Furthermore, the CRISPR/Cas9 system was demonstrated to be an efficient strategy to generate target mutagenesis on F. hindsii. The modifications of target genes in the CRISPR‐modified F. hindsii were predominantly 1‐bp insertions or small deletions. This genetic transformation system based on F. hindsii could shorten the whole process from explant to T1 mutant to about 15 months. Overall, due to its short juvenility, monoembryony, close genetic background to cultivated citrus and applicability of CRISPR, F. hindsii shows unprecedented potentials to be used as a model species for citrus research.  相似文献   
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Sulfotransferase (SULT)-mediated sulfation represents a critical mechanism in regulating the chemical and functional homeostasis of endogenous and exogenous molecules. The cholesterol sulfotransferase SULT2B1b catalyzes the sulfoconjugation of cholesterol to synthesize cholesterol sulfate (CS). In this study, we showed that the expression of SULT2B1b in the liver was induced in obese mice and during the transition from the fasted to the fed state, suggesting that the regulation of SULT2B1b is physiologically relevant. CS and SULT2B1b inhibited gluconeogenesis by targeting the gluconeogenic factor hepatocyte nuclear factor 4α (HNF4α) in both cell cultures and transgenic mice. Treatment of mice with CS or transgenic overexpression of the CS-generating enzyme SULT2B1b in the liver inhibited hepatic gluconeogenesis and alleviated metabolic abnormalities both in mice with diet-induced obesity (DIO) and in leptin-deficient (ob/ob) mice. Mechanistically, CS and SULT2B1b inhibited gluconeogenesis by suppressing the expression of acetyl coenzyme A (acetyl-CoA) synthetase (Acss), leading to decreased acetylation and nuclear exclusion of HNF4α. Our results also suggested that leptin is a potential effector of SULT2B1b in improving metabolic function. We conclude that SULT2B1b and its enzymatic by-product CS are important metabolic regulators that control glucose metabolism, suggesting CS as a potential therapeutic agent and SULT2B1b as a potential therapeutic target for metabolic disorders.  相似文献   
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Jin X  Zhang J  Gao Y  Ding K  Wang N  Zhou D  Jen J  Cheng S 《Mitochondrion》2007,7(5):347-353
Mitochondrial DNA (mtDNA) is known for its high frequencies of polymorphisms and mutations, some of which are related to various diseases, including cancers. However, roles of mutations and polymorphisms in some diseases are among heated debate, especially for cancer. To investigate the possible role of mtDNA mutations in lung cancer, we sequenced complete mtDNA of lung cancer tissues, corresponding normal (i.e., non-cancerous) lung tissues, and peripheral blood samples from 55 lung cancer patients and examined the relationship between mtDNA mutations or polymorphisms and clinical parameters. We identified 56 mutations in 33 (60%) of the 55 patients, including 48 point mutations, four single-nucleotide insertions, and four single-nucleotide deletions. Nineteen of these mutations resulted in amino acid substitution. These missense mtDNA mutations were distributed in 9 of 13 mitochondrial DNA coding genes. Three hundred eighty eight polymorphisms were identified among the 55 patients. Seventy-three polymorphisms resulted in amino acid substitution. There was no association of incidence of specific mtDNA mutation or polymorphism with patients' gender, age at diagnosis, smoking history, tumor type or tumor stage (P>0.05). This study revealed a variety of mtDNA mutations and mtDNA polymorphisms in human lung cancer, some of which might be involved in human lung carcinogenesis.  相似文献   
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Most mammalian cells take up cholesterol from low-density lipoproteins(LDLs) via receptor-mediated endocytosis. After reaching lysosomes, LDL-derived cholesterol continues to transport to downstream organelles including the ER for specific structural and functional needs. Peroxisomes are recently found to receive cholesterol from lysosomes through lysosomeperoxisome membrane contacts. However, whether and how cholesterol is conveyed from peroxisomes to the ER remain unknown. Here, by combining high-resolution microscopic analyses and in vitro reconstitution of highly purified organelles or artificial liposomes, we demonstrate that peroxisomes form membrane contacts with the ER through the interaction between peroxisomal PI(4,5)P_2 and ER-resident extended synaptotagmin-1, 2 and 3(E-Syts). Depletion of peroxisomal PI(4,5)P_2 or ESyts markedly decreases peroxisome-ER membrane contacts and induces cholesterol accumulation in lysosomes. Furthermore,we show that cholesterol is delivered from ~3H-labeled peroxisomes or PI(4,5)P_2-containing liposomes to the ER in vitro, and that the presence of peroxisomes augments cholesterol transfer from lysosomes to the ER. Together, our study reveals a new cholesterol transport pathway along the lysosome-peroxisome-ER membrane contacts in the cell.  相似文献   
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He  Mingrui  Xin  Chunming  Baskin  Carol C.  Li  Jinghua  Zhao  Yunpeng  An  Hang  Sheng  Xiongjie  Zhao  Liang  Zhao  Yin  Ma  Miaojun 《Plant and Soil》2021,459(1-2):93-107
Plant and Soil - With increased grazing disturbance of wetlands, soil moisture decreases, which could have an effect on the seed bank. The seed bank is a crucial resource for vegetation...  相似文献   
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