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91.
Qi B  Korir P  Zhao T  Yu D  Chen S  Gai J 《植物学报(英文版)》2008,50(9):1089-1095
To investigate the genetic mechanism of AI-tolerance in soybean,a recombinant inbred line population (RIL) with 184 F2:7:11 lines derived from the cross of Kefeng No.1 x Nannong 1138-2 (AI-tolerant x AI-sensitive) were tested in pot experimentwith sand culture medium in net room in Nanjing.Four traits,i.e.plant height,number of leaves,shoot dry weight and root dry weight at seedling stage,were evaluated and used to calculate the average membership index (FAi) as the indicator of AI-tolerance.The composite interval mapping (ClM) under WinQTL Cartographer v.2.5 detected five QTLs (i.e.qFAiol,qFAi-2,qFAi-3,qFAi-4 and qFAi-5),explaining 5.20%-9.07% of the total phenotypic variation individually.While with the multiple interval mapping (MIM) of the same software,five QTLs (qFAi-1,qFAi-5,qFAi-6,qFAi-7,and qFAi-8) explaining 5.7%-24.60% of the total phenotypic variation individually were mapped.Here qFAi-1 and qFAi-5 were detected by both CIM and MIM with the locations in a same flanking marker region,GMKF046-GMKF080 on B1 and satt278-sat_95 on L,respectively.While qFAi-2 under CIM and qFAi-6 under MIM both on D1b2 were located in neighboring regions with their confidence intervals overlapped and might be the same locus.Segregation analysis under major gene plus polygene inheritance model showed that Al-tolerance was controlled by two major genes (h2mg =33.05%) plus polygenes (h2pg=52.73%).Both QTL mapping and segregation analysis confirmed two QTLs responsible for Al-tolerance with relatively low heritability,and there might be a third QTL,confounded with the polygenes in segregation analysis.  相似文献   
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Characterization of an NBS-LRR resistance gene homologue from soybean   总被引:3,自引:0,他引:3  
Conserved motifs such as the nucleotide-binding site (NBS) were found in many characterized plant disease resistance genes. Based on the NBS domain, resistance gene analogs have been isolated in our previous study and were used as probes to screen a soybean (Glycine max) cDNA library. A full-length cDNA, KR4, was isolated by screening the library and rapid amplification of cDNA ends method. Sequence analysis revealed that the cDNA was 3818 bp in length and the open reading frame coded for a polypeptide of 1211 amino acids with an NBS and five leucine-rich repeats domains, which were identified by Pfam protein analysis. Sequence alignment showed that KR4 was similar to 12 protein of tomato. Southern analysis indicated that the KR4 gene had low copies in soybean genome and it was mapped on the molecular linkage group E. Its expression was also investigated and it was found that KR4 was induced by exogenous salicylic acid and responded upon infection of soybean mosaic virus strain N3.  相似文献   
95.
Y Wu  W Jiang  Y Wang  J Wu  H Saiyin  X Qiao  X Mei  B Guo  X Fang  L Zhang  H Lou  C Wu  S Qiao 《PloS one》2012,7(8):e42976
Breast cancer metastasis suppressor 1 (BRMS1) was originally identified as an active metastasis suppressor in human breast cancer. Loss of BRMS1 expression correlates with tumor progression, and BRMS1 suppresses several steps required for tumor metastasis. However, the role of BRMS1 in hepatocellular carcinoma (HCC) remains elusive. In this study, we found that the expression level of BRMS1 was significantly down-regulated in HCC tissues. Expression of BRMS1 in SK-Hep1 cells did not affect cell growth under normal culture conditions, but sensitized cells to apoptosis induced by serum deprivation or anoikis. Consistently, knockdown of endogenous BRMS1 expression in Hep3B cells suppressed cell apoptosis. We identified that BRMS1 suppresses osteopontin (OPN) expression in HCC cells and that there is a negative correlation between BRMS1 and OPN mRNA expression in HCC tissues. Moreover, knockdown of endogenous OPN expression reversed the anti-apoptosis effect achieved by knockdown of BRMS1. Taken together, our results show that BRMS1 sensitizes HCC cells to apoptosis through suppressing OPN expression, suggesting a potential role of BRMS1 in regulating HCC apoptosis and metastasis.  相似文献   
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目的:克隆人白细胞介素21(IL-21)编码区的cDNA,在大肠杆菌中得以表达,并检测其促进人外周血单核细胞(PBMC)增殖的生物学活性。方法:利用基因工程技术,以植物血凝素(PHA)刺激的人扁桃体细胞cDNA文库为模板,经PCR扩增获得IL-21的编码基因,并将其重组于表达载体pGEX4T-2中,转化大肠杆菌DH5α进行诱导表达,纯化得到GST-IL-21重组融合蛋白;MTT法检测其对促进PBMC增殖的功能。结果:获得了IL-21编码区的cDNA克隆;SDS-PAGE显示经IPTG诱导表达的该融合蛋白相对分子质量为41000;纯化后的GST-IL-21融合蛋白在体外具有显著的促进PBMC增殖的作用。结论:GST-IL-21融合蛋白在原核表达系统中可以有效表达,并具有较好的生物学活性。  相似文献   
99.
产毒性大肠杆菌毒素在豚鼠肠道定位的免疫组织化学研究   总被引:2,自引:0,他引:2  
研究利用免疫组织化学方法对产毒性大肠杆菌(ETEC)感染豚鼠小肠组织中ETEC肠毒素的定位进行了研究,本研究结果表明,发病豚鼠从空肠到回肠明显充血,肿胀,但盲肠,结肠和直肠外观与对照组差别不明显,光镜下见到发病动物肠组织病变主要出现在空肠和回肠,以回肠最为严重。主要病理改变为水肿,炎症细胞浸润和充血,病变部位可以出现在粘膜层,粘膜下层,肌层和浆膜层,取回肠组织切片作免疫组织化学显示ETEC不耐热肠毒素(LT)和耐热肠毒素(ST)、可见回肠粘膜表层,粘膜肌层,肌层及浆膜层均呈LT和ST阳性反应,分布弥漫,空白对照和正常豚鼠回肠组织均呈阴性结果。本研究表明,ETEC主要作用于空肠和回肠,尤其是回肠;回肠组织各层都有病变,且与肠毒素的分布一致,证明毒素的作用并不仅限于肠粘膜细胞。  相似文献   
100.
运用随机扩增多态性DNA(RandomamplifiedpolymorphicDNA,RAPD)技术对发生于中国东北的大豆发斑病菌(Cercosporidiumsojinum)的10个生理小种进行基因组DNA多态性分析。用13个10-核苷酸随机引物共计获得了111个RAPD标记,其中86.5%具有多态性,通过聚类分析确定了供试小种间的亲缘关系。试验证明,RAPD技术分析大豆灰斑病菌遗传变异可提供大量分子标记,综合分析13个随机引物的扩增谱带可将供试菌株清楚分开。RAPD技术是一项操作简单、快速和灵敏的方法,极具对病菌群体遗传分析的潜力。  相似文献   
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