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21.
大学生素质教育要求新时代的大学生不仅要学习理论知识,更重要的是培养科学思维并掌握应用技能。我校微生物学课程教学中探索了以创新实践为主要内容的模式改革,其中"理论—技能—创新实践"同步训练的创新模式,是以将参与创新实践计入期末成绩的形式"强迫"学生进入实验室参与科研项目。实施中我们以"教师—研究生—创新小组"交互学习的方式,任课教师制定规则与目标,研究生帮助创新项目的选题、研究方案设计及实施指导,创新小组依照目标参与研究生的科研课题,最后完成创新实践并获得一定比例的成绩。实践证实创新实践教学对促进学生的理论课程学习、科学思维培养以及创新意识训练等方面都有积极的促进作用,是大学生素质教育的一种实用且高效的教学模式。  相似文献   
22.
Nitric oxide (NO) is a key player in numerous physiological processes. Excessive NO induces DNA damage, but how plants respond to this damage remains unclear. We screened and identified an Arabidopsis NO hypersensitive mutant and found it to be allelic to TEBICHI/POLQ, encoding DNA polymerase θ. The teb mutant plants were preferentially sensitive to NO- and its derivative peroxynitrite-induced DNA damage and subsequent double-strand breaks (DSBs). Inactivation of TEB caused the accumulation of spontaneous DSBs largely attributed to endogenous NO and was synergistic to DSB repair pathway mutations with respect to growth. These effects were manifested in the presence of NO-inducing agents and relieved by NO scavengers. NO induced G2/M cell cycle arrest in the teb mutant, indicative of stalled replication forks. Genetic analyses indicate that Polθ is required for translesion DNA synthesis across NO-induced lesions, but not oxidation-induced lesions. Whole-genome sequencing revealed that Polθ bypasses NO-induced base adducts in an error-free manner and generates mutations characteristic of Polθ-mediated end joining. Our experimental data collectively suggests that Polθ plays dual roles in protecting plants from NO-induced DNA damage. Since Polθ is conserved in higher eukaryotes, mammalian Polθ may also be required for balancing NO physiological signaling and genotoxicity.  相似文献   
23.
Heterochromatin is widespread in eukaryotic genomes and has diverse impacts depending on its genomic context. Previous studies have shown that a protein complex, the ASI1‐AIPP1‐EDM2 (AAE) complex, participates in polyadenylation regulation of several intronic heterochromatin‐containing genes. However, the genome‐wide functions of AAE are still unknown. Here, we show that the ASI1 and EDM2 mostly target the common genomic regions on a genome‐wide level and preferentially interacts with genetic heterochromatin. Polyadenylation (poly(A) sequencing reveals that AAE complex has a substantial influence on poly(A) site usage of heterochromatin‐containing genes, including not only intronic heterochromatin‐containing genes but also the genes showing overlap with heterochromatin. Intriguingly, AAE is also involved in the alternative splicing regulation of a number of heterochromatin‐overlapping genes, such as the disease resistance gene RPP4. We provided evidence that genic heterochromatin is indispensable for the recruitment of AAE in polyadenylation and splicing regulation. In addition to conferring RNA processing regulation at genic heterochromatin‐containing genes, AAE also targets some transposable elements (TEs) outside of genes (including TEs sandwiched by genes and island TEs) for epigenetic silencing. Our results reveal new functions of AAE in RNA processing and epigenetic silencing, and thus represent important advances in epigenetic regulation.  相似文献   
24.
Wu J  Wang HW  Wen Y 《生理科学进展》2007,38(2):181-183
脂肪组织不仅是能量储备场所,还是活跃的内分泌器官。近年来的研究已经阐明,脂肪组织可以分泌多种炎症因子,参与原发性炎症。因此阐明脂肪组织在炎症发生中的作用,将有助于重新认识一些疾病的发病机制,为疾病的防治提供新的思路。  相似文献   
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26.
灵芝药品大多以灵芝子实体水提物为原料,为快速准确测定灵芝子实体水提物及相关产品中三萜的含量,建立了具有较好分离效果的HPLC分析测定方法。通过优化色谱柱和洗脱条件,优选出Agilent Zorbax SB-Aq C18色谱柱(250 mm×4.6 mm,5μm),以乙腈-乙酸水溶液(0.01%)为流动相梯度洗脱,流速为1.0 mL/min,检测波长252 nm,柱温30℃,该条件下灵芝酸A、灵芝酸F等10种灵芝酸得到较好的分离。方法学考察显示该分析方法精密度、重复性、稳定性和加样回收率的RSD值均小于5%,可以用于灵芝酸C2、灵芝酸G、灵芝烯酸B、灵芝酸B等10种灵芝酸的定量检测。通过对灵芝子实体原料、水提物和市售灵芝产品中10种三萜类成分分析发现,灵芝子实体水提物中均含有这10种三萜,含量为2.52%–6.83%,较子实体原料大幅提高,市售的灵芝产品中的三萜含量为0.27%–0.84%。该方法的建立为灵芝水提物及其产品质量标准的建立奠定基础。  相似文献   
27.
Cellular senescence triggers various types of heterochromatin remodeling that contribute to aging. However, the age-related mechanisms that lead to these epigenetic alterations remain elusive. Here, we asked how two key aging hallmarks, telomere shortening and constitutive heterochromatin loss, are mechanistically connected during senescence. We show that, at the onset of senescence, pericentromeric heterochromatin is specifically dismantled consisting of chromatin decondensation, accumulation of DNA breakages, illegitimate recombination and loss of DNA. This process is caused by telomere shortening or genotoxic stress by a sequence of events starting from TP53-dependent downregulation of the telomere protective protein TRF2. The resulting loss of TRF2 at pericentromeres triggers DNA breaks activating ATM, which in turn leads to heterochromatin decondensation by releasing KAP1 and Lamin B1, recombination and satellite DNA excision found in the cytosol associated with cGAS. This TP53–TRF2 axis activates the interferon response and the formation of chromosome rearrangements when the cells escape the senescent growth arrest. Overall, these results reveal the role of TP53 as pericentromeric disassembler and define the basic principles of how a TP53-dependent senescence inducer hierarchically leads to selective pericentromeric dismantling through the downregulation of TRF2.  相似文献   
28.
荧光假单胞菌抗噬菌体菌株的选育   总被引:6,自引:2,他引:4  
本实验从荧光假单胞菌(Pseudomonasfluorescens)AS—3菌株的不正常发酵液中分离到一种噬菌体,将其命名为PFAS。AS—3菌株能利用葡萄糖发酵产生D-异维生素C的前体物质2-酮基-D-葡萄糖酸。电镜观察表明PFAS噬菌体呈蝌蚪形,具有直径为66nm的六角形头部及长117nm的尾部。通过紫外线诱变及自然选育两种途径,配合简便有效的初筛方法,经多次分离、纯化、复筛最终在摇并发酵试验中获得6株产量稳定地高于对照敏感菌的抗噬菌体菌株,可望用于生产。  相似文献   
29.
There is increasing amount of evidence indicating the close interplays between the replication cycle of SARS-CoV-2 and the autophagy-lysosome pathway in the host cells. While autophagy machinery is known to either assist or inhibit the viral replication process, the reciprocal effects of the SARS-CoV-2 on the autophagy-lysosome pathway have also been increasingly appreciated. More importantly, despite the disappointing results from the clinical trials of chloroquine and hydroxychloroquine in treatment of COVID-19, there is still ongoing effort in discovering new therapeutics targeting the autophagy-lysosome pathway. In this review, we provide an update-to-date summary of the interplays between the autophagy-lysosome pathway in the host cells and the pathogen SARS-CoV-2 at the molecular level, to highlight the prognostic value of autophagy markers in COVID-19 patients and to discuss the potential of developing novel therapeutic strategies for COVID-19 by targeting the autophagy-lysosome pathway. Thus, understanding the nature of such interactions between SARS-CoV-2 and the autophagy-lysosome pathway in the host cells is expected to provide novel strategies in battling against this global pandemic.  相似文献   
30.
金合欢根瘤菌Rhizobium sp.(Acacia farnesiana)的氧化酶、过氧化氢酶、脲酶、青霉素酶和β-半乳糖苷酶均呈阳性。经过酶活性定量测定表明金合欢根瘤菌有葡萄糖酸-6-磷酸脱氢酶(6PGD)和β-半乳糖苷酶的酶活性,而慢生型大豆根瘤菌未测到上述两种酶活性。根据聚丙烯酰胺凝胶电泳酯酶图谱,6株金合欢根瘤菌可分成两群:酋株AF1、AF2和AF3的酯酶图谱中有A带,AF4、AF5和AF6的酯酶图谱中没有A带。  相似文献   
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