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1.
Transgenic tobacco plants containing a mouse metallothionein-I (MT-I) gene fused to the cauliflower mosaic virus 35S (CaMV 35S) promoter and nopaline synthase (nos) polyadenylation site were obtained by transforming tobacco leaf discs with an Agrobacterium tumefaciens strain carrying the chimaeric gene. Transformants were directly selected and rooted on medium containing cadmium and kanamycin. A total of 49 individual transgenic tobacco plants were regenerated. Among them 20% showed a very high expression level and their growth was unaffected by up to 200 M cadmium, whereas the growth of control plants was severely affected leaf chlorosis occurred on medium containing only 10 M cadmium. The concentration of MT-I in leaves of control and transgenic tobacco was determined with Cd/haemoglobin saturation assay, a polarographic method and western blotting. In addition, seeds from self-fertilized transgenic plants were germinated on medium containing toxic levels of cadmium and scored for tolerance/susceptibility to this heavy metal. The ratio of tolerant to susceptible plants was 3:1 indicating that the metallothionein gene is inherited as a single locus.  相似文献   
2.
金属螯合亲和层析纯化金属硫蛋白   总被引:9,自引:0,他引:9  
将二价铜离子螯合在Chelating Sepharose Fast Flow凝胶上制成亲和层析柱,锌诱导兔肝和镉诱导小鼠肝经匀浆、乙醇处理后上柱,用pH4.0的醋酸盐缓冲液平衡,再用pH5.2不同浓度的醋酸盐缓冲液分别洗脱,可得两个金属硫蛋白(MT)洗脱峰,经确定先后为MT-2和MT-1.分离方法比传统的凝胶过滤-离子交换法简单、省时,适于实验室规模分离纯化.  相似文献   
3.
We have introduced a genetically marked Dissociation transposable element (Ds HPT ) into tomato (Lycopersicon esculentum) by Agrobacterium tumefaciens-mediated transformation. Probes for the flanking regions of the T-DNA and transposed Ds HPT elements were obtained with the inverse polymerase chain reaction (IPCR) technique and used in RFLP linkage analyses. The RFLP map location of 11 T-DNAs carrying Ds HPT was determined. The T-DNAs are distributed on 7 of the 12 tomato chromosomes. To explore the feasibility of gene tagging strategies in tomato using Ds HPT , we examined the genomic distribution of Ds HPT receptor sites relative to the location of two different, but very closely linked, T-DNA insertion sites. After crosses with plants expressing Ac transposase, the hygromycin phosphotransferase (HPT) marker on the Ds element and the excision markers β-glucuronidase (GUS) and Basta resistance (BAR) facilitated the identification of plants bearing germinally transposed Ds HPT elements. RFLP mapping of 21 transposed Ds HPT elements originating from the two different T-DNA insertions revealed distinct patterns of reintegration sites.  相似文献   
4.
乙肝前S2(HBVPreS2)肽段由55个氨基酸组成,其N端肽段含Th和B细胞抗原决定簇。我们将化学合成的PreS2epitope(120-145)基因与HBcAg基因不同位点进行融合,融合基因在大肠杆菌中获得表达,并对融合蛋白进行了纯化。经ELISA和Western-blot实验表明,融合蛋白具有PreS2和HBcAg两者的抗原性。此外,研究还表明,强启动子能使表达水平有一定提高。  相似文献   
5.
Oral squamous cell carcinoma (OSCC) is the most common malignant tumour in the oral and maxillofacial region. Numerous cancers share ten common traits (“hallmarks”) that govern the transformation of normal cells into cancer cells. Long non‐coding RNAs (lncRNAs) are important factors that contribute to tumorigenesis. However, very little is known about the cooperative relationships between lncRNAs and cancer hallmark‐associated genes in OSCC. Through integrative analysis of cancer hallmarks, somatic mutations, copy number variants (CNVs) and expression, some OSCC‐specific cancer hallmark‐associated genes and lncRNAs are identified. A computational framework to identify gene and lncRNA cooperative regulation pairs (GLCRPs) associated with different cancer hallmarks is developed based on the co‐expression and co‐occurrence of mutations. The distinct and common features of ten cancer hallmarks based on GLCRPs are characterized in OSCC. Cancer hallmark insensitivity to antigrowth signals and self‐sufficiency in growth signals are shared by most GLCRPs in OSCC. Some key GLCRPs participate in many cancer hallmarks in OSCC. Cancer hallmark‐associated GLCRP networks have complex patterns and specific functions in OSCC. Specially, some key GLCRPs are associated with the prognosis of OSCC patients. In summary, we generate a comprehensive landscape of cancer hallmark‐associated GLCRPs that can act as a starting point for future functional explorations, the identification of biomarkers and lncRNA‐based targeted therapy in OSCC.  相似文献   
6.
Fire is a crucial event regulating the structure and functioning of many ecosystems. Yet few studies have focused on how fire affects taxonomic and functional diversities of soil microbial communities, along with changes in plant communities and soil carbon (C) and nitrogen (N) dynamics. Here, we analyze these effects in a grassland ecosystem 9 months after an experimental fire at the Jasper Ridge Global Change Experiment site in California, USA. Fire altered soil microbial communities considerably, with community assembly process analysis showing that environmental selection pressure was higher in burned sites. However, a small subset of highly connected taxa was able to withstand the disturbance. In addition, fire decreased the relative abundances of most functional genes associated with C degradation and N cycling, implicating a slowdown of microbial processes linked to soil C and N dynamics. In contrast, fire stimulated above‐ and belowground plant growth, likely enhancing plant–microbe competition for soil inorganic N, which was reduced by a factor of about 2. To synthesize those findings, we performed structural equation modeling, which showed that plants but not microbial communities were responsible for significantly higher soil respiration rates in burned sites. Together, our results demonstrate that fire ‘reboots’ the grassland ecosystem by differentially regulating plant and soil microbial communities, leading to significant changes in soil C and N dynamics.  相似文献   
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8.
Yan  Yan  Zhao  Sihan  Ding  Zehong  Tie  Weiwei  Hu  Wei 《Plant Molecular Biology Reporter》2021,39(3):607-616
Plant Molecular Biology Reporter - Cassava is an important starchy and food crop; however, the commercial value of cassava is seriously constrained by postharvest physiological deterioration (PPD)....  相似文献   
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10.
HEPIS是一个新基因,关于HEPIS的表达和功能尚不十分清楚.本研究首先构建了HEPIS的表达载体pEGFP-C3-HEPIS,采用双荧光素酶报告实验检测了 HEPIS对Wnt、CRE、NF-KB和HRE信号通路的作用,随后采用RNA原位杂交(RISH)检测了 HEPIS在12种不同器官(乳腺,结肠,食道,肾,肝,肺,卵巢,胰腺,前列腺,直肠,胃和宫颈)的癌组织和正常组织的表达差异,并且检测了 HEPIS在40例直肠腺癌和直肠正常组织的表达.研究表明,在293T细胞转染pEGFP-C3-HEPIS后,无论是转录水平还是翻译水平,HEPIS均显著增加,且HEPIS可以显著抑制Wnt、CRE和NF-KB 3条信号通路,对NF-κB信号通路的抑制最为显著.RNA原位杂交实验证实HEPIS在12个器官的癌组织和正常组织中表达存在明显的表达差异.采用GEPIA对HEPIS在直肠癌及正常组织的表达差异进行了分析,结果表明HEPIS在正常直肠组织高表达,进一步采用RISH分析了 HEPIS在40例直肠癌和癌旁组织的表达差异,分析表明HEPIS在正常直肠组织的表达显著高于癌组织(P<0.01),与GEPIA分析结果一致,说明HEPIS可能是直肠癌的一个潜在抑癌基因.  相似文献   
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