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141.
African swine fever virus(ASFV) is the etiological agent of African swine fever(ASF), an often lethal disease in domestic and wild pigs. ASF represents a major threat to the swine industry worldwide. Currently, no commercial vaccine is available because of the complexity of ASFV or biosecurity concerns. Live attenuated viruses that are naturally isolated or genetically manipulated have demonstrated reliable protection against homologous ASFV strain challenge. In the present study, a mutant ASFV strain with the deletion of ASFV MGF-110-9 L(ASFV-D9 L) was generated from a highly virulent ASFV CN/GS/2018 parental strain, a genotype II ASFV. Relative to the parental ASFV isolate, deletion of the MGF-110-9 L gene significantly decreased the ability of ASFV-D9 L to replicate in vitro in primary swine macrophage cell cultures. The majority of animals inoculated intramuscularly with a low dose of ASFV-D9 L(10 HAD50) remained clinically normal during the 21-day observational period. Three of five ASFV-D9 L-infected animals displayed low viremia titers and low virus shedding and developed a strong virus-specific antibody response, indicating partial attenuation of the ASFV-D9 L strain in pigs. The findings imply the potential usefulness of the ASFV-D9 L strain for further development of ASF control measures.  相似文献   
142.
基于CRISPR/Cas系统出现的单碱基编辑技术可以实现高效且简便的单个碱基的替换编辑,其原理是将胞嘧啶脱氨酶(cytosine deaminase)或腺苷脱氨酶(adenosine deaminase)与Cas9n(D10A)形成融合蛋白,通过CRISPR/Cas精准识别和定位DNA上的靶位点后,利用胞嘧啶脱氨酶或腺苷脱氨酶将靶点距离sgRNA位点基序(protospacer adjacent motif,PAM)序列端的4~7位的单个碱基发生单碱基转换或颠换。对基于CRISPR/Cas系统的单碱基编辑技术发现的历史、组成和分类、工作原理进行了概述,并总结了该系统最新进展及应用。  相似文献   
143.
目的:为提高CRISPR/Cas9(clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9)靶向性奠定基础,同时证明酵母杂交系统在研究CRISPR/Cas9脱靶效应中的应用价值。方法:以实验室前期构建成功的activase基因编辑水稻株为研究对象,先采用T7核酸内切酶Ⅰ法初步预测30株基因编辑水稻株的脱靶率。随后以酵母杂交系统进一步预测脱靶率以及研究sgRNA结构对脱靶率的影响。首先,将activase靶向基因的标准sgRNA(standard sgRNA)和短sgRNA(truncated sgRNA)分别克隆至CRISPR/Cas9系统表达载体pDW3769中,构建对应的重组载体pHZ2和pHZ4,转化至YPH499酵母单倍体形成重组酵母YpHZ2和YpHZ4;其次,根据脱靶位点预测选择7组脱靶序列A、B、C、D、E、F、G以及靶向序列,分别克隆至包含报告基因mCherry的高拷贝载体pDW3133和低拷贝载体pDW3134,构建相应的高拷贝重组载体pHZ5、pHZ7、pHZ9、pHZ11、pHZ13、pHZ15、pHZ17和pHZ19,以及对应的低拷贝重组载体pHZ6、pHZ8、pHZ10、pHZ12、pHZ14、pHZ16、pHZ18和pHZ20,转化至YPH500酵母单倍体,构建重组酵母YpHZ5-20。随后,重组酵母YpHZ2和YpHZ4与重组酵母YpHZ5-20分别杂交,挑取双倍体酵母菌落,在不同的时间段下检测荧光数值,根据荧光值定量预测脱靶率。结果:酵母培养144~192 h时荧光最为显著,脱靶序列sgRNA与靶向基因sgRNA同源性越高,越易造成脱靶,但短sgRNA较标准sgRNA脱靶率低。根据水稻植株的脱靶检测显示脱靶率约20%,基于酵母杂交的检测结果显示脱靶率为20%~28%。结论:酵母细胞进入稳定期时荧光值最为显著,且与载体的拷贝数量成正比。sgRNA序列以及长短结构可影响CRISPR/Cas9的基因靶向性。两种方法的脱靶率预测结果相当,表明酵母杂交系统在评价CRISPR/Cas9系统的脱靶率以及研究脱靶影响因素中具有良好的应用价值。  相似文献   
144.
以拟南芥(Arabidopsis thaliana)油菜素内酯受体BRI1为目的基因,利用CRISPR/Cas9基因编辑技术定向编辑拟南芥BRI1,以期获得更多BRI1的突变体,为后续BRI1功能的进一步深入研究奠定基础。通过筛选转基因植株,对编辑后的BRI1进行测序分析,结果显示该突变体中BRI1基因序列由于新碱基的插入导致提前终止。同BRI1强突变体bri1-710一样,相比于野生型对照均对BL处理不敏感,但相比于bri1-710,该突变体植株较大,暗示BRI1 N端可能在BR信号途径中有重要作用。因此该研究可为后续进一步研究拟南芥及其他同源物种的BRI1功能提供可靠的参考依据。  相似文献   
145.
目的:研究黄色肉芽肿性胆囊炎(XGC)与胆囊癌的临床特征分析及螺旋CT检查的鉴别诊断价值。方法:选取从2018年1月-2020年12月于我院接受腹部螺旋CT检查的41例XGC患者纳入研究,记作XGC组,另取同期医院接受腹部螺旋CT检查的45例胆囊癌患者作为胆囊癌组。分析两组临床特征、螺旋CT检查结果表现,比较两组血清血管内皮生长因子(VEGF)、糖类抗原19-9(CA19-9)水平的差异。并以病理检查为金标准,分析螺旋CT检查用作XGC与胆囊癌鉴别诊断的价值。结果:XGC组患者食欲下降、体重下降人数占比均低于胆囊癌组(均P<0.05);而两组腹痛、黄疸、发热、白细胞(WBC)升高、谷丙转氨酶(ALT)升高、谷草转氨酶(AST)升高、胆囊扩张发生率对比差异无统计学意义(均P>0.05)。XGC组囊壁增厚均匀、壁内有低密度结节人数占比均低于胆囊癌组,而有肿大淋巴结人数占比高于胆囊癌组(均P<0.05)。螺旋CT检查诊断XGC的灵敏度、特异度、准确度分别为95.12(39/41)、95.56%(43/45)、95.35%(82/86)。XGC组患者血清VEGF、CA19-9水平均低于胆囊癌组,差异均有统计学意义(均P<0.05)。结论:XGC患者食欲下降、体重下降发生率低于胆囊癌患者,螺旋CT检查鉴别诊断XGC与胆囊癌的价值较高,值得临床关注。  相似文献   
146.
摘要 目的:研究奥拉西坦联合阿托伐他汀对血管性认知障碍患者血清血清一氧化氮 (Nitric oxide, NO)、基质金属蛋白酶(Matrix metalloproteinases, MMP)-9和内皮素(Endothelin, ET)-1水平的影响。方法:选择2015年1月~2019年12月于我院诊治的70例血管性认知障碍患者,随机分为两组。对照组单独服用奥拉西坦,每天3次,每次0.8 g;观察组联合服用阿托伐他汀,每天晚上1次,每次20 mg。比较两组的简易精神智能量表(MMSE)和蒙特利尔认知评估量表(MoCA)评分,血清NO、MMP-9、ET-1水平、纤维蛋白原、总胆固醇、血浆黏度、甘油三酯水平。结果:治疗后,观察组的有效率明显高于对照组(P<0.05);两组的MMSE评分和Mo CA评分、血清NO水平明显升高,血清MMP-9和ET-1水平、纤维蛋白原、总胆固醇、血浆黏度、甘油三酯水平显著降低(P<0.05),且观察组的上述指标显著优于对照组(P<0.05)。结论:奥拉西坦联合阿托伐他汀对血管性认知障碍患者有较好的调脂作用,能改善其认知功能和血液流变学,其机制可能与改善血清NO、MMP-9、ET-1水平有关。  相似文献   
147.
摘要 目的:探讨复方醋酸棉酚片联合独一味胶囊对大鼠无排卵型功能失调性子宫出血的改善作用及其作用机制。方法:将40只雌性SD大鼠随机均分成两组(空白组和模型组),采用给大鼠连续21 d灌胃戊酸雌二醇的方法制备无排卵型功能失调性子宫大鼠模型。模型大鼠制备成功后,按随机法再均分成模型组、阳性组和治疗组,其中阳性组和治疗组分别灌胃给予相应的药物,空白组和模型组灌胃等体积的生理盐水,各组均连续灌胃7 d。计算各组大鼠的子宫系数,采用酶联免疫吸附法测定大鼠血清中雌二醇(estradiol, E2)和孕酮(progestone,P)水平,采用免疫组化法测定大鼠子宫内膜组织中两个蛋白(matrix metalloproteinases-9,MMP-9和vascular endothelial growth factor ,VEGF)的表达量。结果:模型组大鼠血清中的P水平比空白组显著性减少(P<0.05),子宫内膜组织中的MMP-9和VEGF表达量比空白组均显著性升高(P<0.05)。给药后,治疗组和阳性组大鼠血清中的P水平均显著高于模型组(P<0.05),大鼠子宫内膜组织中的MMP-9和VEGF 表达量均显著低于模型组(P<0.05),治疗组与阳性组之间无显著性差异(P >0.05)。结论:复方醋酸棉酚片联合独一味胶囊对无排卵型功能失调性子宫出血具有明显的改善作用,其机制可能与调控子宫内膜 MMP-9 和VEGF的表达量有关。  相似文献   
148.
Gene therapy has become the most effective treatment for monogenic diseases. Congenital LEPTIN deficiency is a rare autosomal recessive monogenic obesity syndrome caused by mutations in the Leptin gene. Ob/ob mouse is a monogenic obesity model, which carries a homozygous point mutation of C to T in Exon 2 of the Leptin gene. Here, we attempted to edit the mutated Leptin gene in ob/ob mice preadipocytes and inguinal adipose tissues using CRISPR/Cas9 to correct the C to T mutation and restore the production of LEPTIN protein by adipocytes. The edited preadipocytes exhibit a correction of 5.5% of Leptin alleles and produce normal LEPTIN protein when differentiated into mature adipocytes. The ob/ob mice display correction of 1.67% of Leptin alleles, which is sufficient to restore the production and physiological functions of LEPTIN protein, such as suppressing appetite and alleviating insulin resistance. Our study suggests CRISPR/Cas9-mediated in situ genome editing as a feasible therapeutic strategy for human monogenic diseases, and paves the way for further research on efficient delivery system in potential future clinical application.  相似文献   
149.
《遗传学报》2021,48(8):661-670
The ability to precisely inactivate or modify genes in model organisms helps us understand the mysteries of life. Clustered regularly interspaced short palindromic repeats(CRISPR)/CRISPR-associated protein 9(Cas9), a revolutionary technology that could generate targeted mutants, has facilitated notable advances in plant science. Genome editing with CRISPR/Cas9 has gained great popularity and enabled several technical breakthroughs. Herein, we briefly introduce the CRISPR/Cas9, with a focus on the latest breakthroughs in precise genome editing(e.g., base editing and prime editing), and we summarize various platforms that developed to increase the editing efficiency, expand the targeting scope, and improve the specificity of base editing in plants. In addition, we emphasize the recent applications of these technologies to plants. Finally, we predict that CRISPR/Cas9 and CRISPR/Cas9-based genome editing will continue to revolutionize plant science and provide technical support for sustainable agricultural development.  相似文献   
150.
It has been demonstrated that neural precursor cell expressed developmentally downregulated protein (NEDD) plays crucial roles in tumorigenesis and may serve as potential biomarkers in cancer diagnosis and prognosis. However, few studies systematically investigated the expression of NEDD family members in acute myeloid leukaemia (AML). We systemically determined the expression of NEDD family members in AML and determined their clinical significance. We identified that NEDD9 expression was the only member among NEDD family which was significantly increased in AML. NEDD9 overexpression was more frequently classified as FAB-M4/M5 (= 0.008 and 0.013, respectively), hardly as FAB-M2/M3. Moreover, NEDD9 overexpression was significantly associated with complex karyotype and TP53 mutation. The significant association between NEDD9 overexpression and survival was also observed in whole-cohort AML and non-M3 AML patients. Notably, AML patients with NEDD9 overexpression may benefit from hematopoietic stem cell transplantation (HSCT), whereas those cases without NEDD9 overexpression did not. Finally, a total of 822 mRNAs and 31 microRNAs were found to be differentially expressed between two groups. Among the microRNAs, miR-381 was also identified as a microRNA that could direct target NEDD9. Taken together, our findings demonstrated that NEDD9 overexpression is associated with genetic abnormalities as well as prognosis and might act as a potential biomarker guiding the choice between HSCT and chemotherapy in patients with AML after achieving complete remission.  相似文献   
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