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71.
The control of microorganisms is a key objective in disease prevention and in medical, industrial, domestic, and food-production environments. Whilst the effectiveness of biocides in these contexts is well-evidenced, debate continues about the resistance risks associated with their use. This has driven an increased regulatory burden, which in turn could result in a reduction of both the deployment of current biocides and the development of new compounds and formulas. Efforts to balance risk and benefit are therefore of critical importance and should be underpinned by realistic methods and a multi-disciplinary approach, and through objective and critical analyses of the literature. The current literature on this topic can be difficult to navigate. Much of the evidence for potential issues of resistance generation by biocides is based on either correlation analysis of isolated bacteria, where reports of treatment failure are generally uncommon, or laboratory studies that do not necessarily represent real biocide applications. This is complicated by inconsistencies in the definition of the term resistance. Similar uncertainties also apply to cross-resistance between biocides and antibiotics. Risk assessment studies that can better inform practice are required. The resulting knowledge can be utilised by multiple stakeholders including those tasked with new product development, regulatory authorities, clinical practitioners, and the public. This review considers current evidence for resistance and cross-resistance and outlines efforts to increase realism in risk assessment. This is done in the background of the discussion of the mode of application of biocides and the demonstrable benefits as well as the potential risks.  相似文献   
72.
巨噬细胞迁移抑制因子(macrophage migration inhibitory factor, MIF)是一种广泛表达的多效性细胞因子,参与多种炎症和免疫疾病的过程并在其中发挥重要作用,是许多疾病的生物标志物或治疗靶点。MIF基因在系统发育中高度保守,在其启动子区有多种不同转录因子的特定结合位点,借此调节MIF的表达。MIF在细胞内外均发挥作用,且MIF是组成型表达。因此,研究调控MIF基因表达和刺激MIF分泌的相关因素具有重要意义。本文通过对MIF基因和MIF启动子上的结合位点的简述,对影响MIF基因表达的相关因素进行总结和归类。根据与MIF基因结合的方式,可分为:(1)与MIF基因启动子特定位点结合,改变转录活性;(2)与MIF CATT5-8微卫星重复序列结合,改变高表达MIF等位基因;(3)非编码RNA调控MIF表达;(4)影响MIF分泌的相关因素。通过对这4类调控MIF基因表达的相关因素的综述,进而认识MIF基因表达的调控机制和影响因素,以期对其治疗相关疾病提供理论基础。  相似文献   
73.
Sophora japonica is a medium-size deciduous tree belonging to Leguminosae family and famous for its high ecological, economic and medicinal value. Here, we reveal a draft genome of S. japonica, which was ∼511.49 Mb long (contig N50 size of 17.34 Mb) based on Illumina, Nanopore and Hi-C data. We reliably assembled 110 contigs into 14 chromosomes, representing 91.62% of the total genome, with an improved N50 size of 31.32 Mb based on Hi-C data. Further investigation identified 271.76 Mb (53.13%) of repetitive sequences and 31,000 protein-coding genes, of which 30,721 (99.1%) were functionally annotated. Phylogenetic analysis indicates that S. japonica separated from Arabidopsis thaliana and Glycine max ∼107.53 and 61.24 million years ago, respectively. We detected evidence of species-specific and common-legume whole-genome duplication events in S. japonica. We further found that multiple TF families (e.g. BBX and PAL) have expanded in S. japonica, which might have led to its enhanced tolerance to abiotic stress. In addition, S. japonica harbours more genes involved in the lignin and cellulose biosynthesis pathways than the other two species. Finally, population genomic analyses revealed no obvious differentiation among geographical groups and the effective population size continuously declined since 2 Ma. Our genomic data provide a powerful comparative framework to study the adaptation, evolution and active ingredients biosynthesis in S. japonica. More importantly, our high-quality S. japonica genome is important for elucidating the biosynthesis of its main bioactive components, and improving its production and/or processing.  相似文献   
74.
橘小实蝇成虫肠道可培养细菌群落结构分析   总被引:1,自引:0,他引:1  
【目的】研究橘小实蝇(Bactrocera dorsalis) 3个种群(实验室正常喂养种群、实验室无菌糖水喂养种群和野生种群)成虫肠道可培养细菌的群落结构组成。【方法】利用16S rRNA基因的聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE)分析技术,结合菌落形态观察和生理生化特征鉴定细菌种类。【结果】从橘小实蝇3个种群成虫肠道600株可培养细菌得到53种不同细菌遗传型,分属于肠杆菌科(Enterobacteriaceae)、肠球菌科(Enterococcaceae)和芽孢杆菌科(Bacillaceae)等3个科。其中肠杆菌科是肠道可培养细菌最优势的细菌种类。同样以序列相似性大于97%的菌株归为相同的细菌种类为标准,找到了橘小实蝇3个种群可培养细菌的共有菌种,结合菌落形态观察和生理生化特征鉴定,确定共有菌种为肠杆菌属5株,克雷伯氏菌属2株,柠檬酸杆菌属1株,泛菌属1株,肠球菌属2株,以及芽孢杆菌属4株。【结论】通过研究橘小实蝇成虫肠道可培养细菌群落结构组成,可为探讨肠道菌群对寄主的生理功能和生态学意义奠定基础,最终为利用微生物防治此类害虫提供新思路。  相似文献   
75.
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   
76.
The arms race between fungal pathogens and plant hosts involves recognition of fungal effectors to induce host immunity. Although various fungal effectors have been identified, the effector functions of ribonucleases are largely unknown. Herein, we identified a ribonuclease secreted by Verticillium dahliae (VdRTX1) that translocates into the plant nucleus to modulate immunity. The activity of VdRTX1 causes hypersensitive response (HR)‐related cell death in Nicotiana benthamiana and cotton. VdRTX1 possesses a signal peptide but is unlikely to be an apoplastic effector because its nuclear localization in the plant is necessary for cell death induction. Knockout of VdRTX1 significantly enhanced V. dahliae virulence on tobacco while V. dahliae employs the known suppressor VdCBM1 to escape the immunity induced by VdRTX1. VdRTX1 homologs are widely distributed in fungi but transient expression of 24 homologs from other fungi did not yield cell death induction, suggesting that this function is specific to the VdRTX1 in Vdahliae. Expression of site‐directed mutants of VdRTX1 in N. benthamiana leaves revealed conserved ligand‐binding sites that are important for VdRTX1 function in inducing cell death. Thus, VdRTX1 functions as a unique HR‐inducing effector in V. dahliae that contributes to the activation of plant immunity.  相似文献   
77.
植酸钠对黑曲霉柠檬酸发酵产酸的促进效应   总被引:2,自引:0,他引:2  
李林  傅庭治  曹幼琴   《微生物学通报》1994,21(4):220-224
研究了植酸钠对黑曲霉柠檬酸发酵产酸的促进效应。在葡萄糖全合成培养基中添加1%的植酸钠,可使产酸比对照提高2.4倍;在薯粉、玉米粉等天然培养基中添加1%植酸钠,柠檬酸产量分别提高1.7倍和1.3倍。酶活性测定分析表明,植酸钠对柠檬酸代谢途径中的几种关键酶的活性有影响。  相似文献   
78.
时启龙  江洪  陈健  张倩倩 《生态学报》2012,32(18):5621-5629
对亚热带地区6种典型树种幼苗在不同模拟酸雨梯度下的光谱响应特征进行了研究。结果表明,针叶树种和阔叶树种对酸雨敏感性具有明显差异。针叶树种马尾松、杉木和香榧对酸雨敏感性高于阔叶树种刨花楠、香樟和杨梅。针叶树种内部,马尾松和杉木叶绿素含量随酸雨浓度变化的幅度明显高于香榧;而阔叶树种内部,刨花楠、香樟和杨梅三者之间无显著差别。马尾松、香樟和香榧不能承受长时间高浓度酸雨胁迫,叶绿素含量呈先增加后减少趋势,杉木则先减少后增加,杨梅能承受长时间高浓度酸雨胁迫,pH值2.5处理下叶绿素含量高于pH值5.6处理。刨花楠4期试验中叶绿素含量变化无明显规律。各受试植物光谱反射率红边位置与其叶绿素含量变化规律基本一致。针叶树种马尾松和香榧主要表现为"蓝移",杉木则先"蓝移"后"红移",表现出对高浓度酸雨长时间的抗性;阔叶树种香樟先"红移"后"蓝移",对高浓度模拟酸雨表现出先促进后抑制现象,杨梅光谱反射率一阶导数曲线比较平缓,无明显"红移"和"蓝移"现象,刨花楠则"红移"和"蓝移"交替出现,与其叶绿素含量变化相一致,对酸雨敏感性不明显。  相似文献   
79.
80.
目的:弗氏链霉菌(Streptomyces fradiae)作为氨基糖苷类抗生素新霉素的主要生产菌株,其新霉素B具有抗菌活性强、抗癌、抗HIV等作用,提高新霉素B的效价具有重要意义.方法:在满足微生物正常生长所需盐离子的条件下,通过盐增强培养的方式向培养基中添加不同种类、浓度无机盐来改变细胞壁附近的理化特性、渗透压以及...  相似文献   
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