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101.
Genetic Analysis and Molecular Mapping of a Novel Gene Conferring Resistance to Rice Stripe Virus 总被引:1,自引:0,他引:1
Feng Zhao Zhijun Cai Tiezhu Hu Haigen Yao Li Wang Na Dong Bin Wang Zhengang Ru Wenxue Zhai 《Plant Molecular Biology Reporter》2010,28(3):512-518
Rice stripe virus (RSV) is one of the most damaging diseases affecting rice in East Asia. Rice variety 502 is highly resistant
to RSV, while variety 5112 is extremely susceptible. Field statistical data revealed that all “502 × 5112” F1 individuals were resistant to RSV and the ratio of resistant to susceptible plants was 3:1 in the F2 population and 1:1 in the BC1F1 population. These results indicated that a dominant gene, designated RSV1, controlled the resistance. Simple sequence repeat (SSR) analysis was subsequently carried out in an F2 population. Sixty SSR markers evenly distributed on the 12 rice chromosomes were screened and tested. Two markers, RM229
and RM206, showed linkage with RSV1. Based on this result, six SSR markers flanking RM229 and RM206 were further selected and tested. Results indicated that
SSR markers RM457 and RM473E were linked to RSV1 with a genetic distance of 4.5 and 5.0 cM, respectively. All of the four SSR markers (RM229, RM473E, RM457 and RM206) linked
to RSV1 were all located on chromosome 11, therefore RSV1 should be located on chromosome 11 also. In order to find some new markers more closely linked to the RSV1 gene, sequence-related amplified polymorphism (SRAP) analysis was performed. A total of 30 SRAP primer-pairs were analyzed,
and one marker SR1 showed linkage with RSV1 at a genetic distance of 2.9 cM. Finally, RSV1 gene was mapped on chromosome 11 between SSR markers RM457 and SRAP marker SR1 with a genetic distance of 4.5 cM and 2.9 cM,
respectively. 相似文献
102.
Ru Zhang Robert R. Wise Kimberly R. Struck Thomas D. Sharkey 《Photosynthesis research》2010,105(2):123-134
Photosynthesis is inhibited by heat stress. This inhibition is rapidly reversible when heat stress is moderate but irreversible
at higher temperature. Absorbance changes can be used to detect a variety of biophysical parameters in intact leaves. We found
that moderate heat stress caused a large reduction of the apparent absorbance of green light in light-adapted, intact Arabidopsis thaliana leaves. Three mechanisms that can affect green light absorbance of leaves, namely, zeaxanthin accumulation (absorbance peak
at 505 nm), the electrochromic shift (ECS) of carotenoid absorption spectra (peak at 518 nm), and light scattering (peak at
535 nm) were investigated. The change of green light absorbance caused by heat treatment was not caused by changes of zeaxanthin
content nor by the ECS. The formation of non-photochemical quenching (NPQ), chloroplast movements, and chloroplast swelling
and shrinkage can all affect light scattering inside leaves. The formation of NPQ under high temperature was not well correlated
with the heat-induced absorbance change, and light microscopy revealed no appreciable changes of chloroplast location because
of heat treatment. Transmission electron microscopy results showed swollen chloroplasts and increased number of plastoglobules
in heat-treated leaves, indicating that the structural changes of chloroplasts and thylakoids are significant results of moderate
heat stress and may explain the reduced apparent absorbance of green light under moderately high temperature. 相似文献
103.
目的:观察穿心莲内酯对人结肠癌SW1116细胞生长及肿瘤细胞凋亡的影响,探讨其可能的机制.方法:用不同浓度的穿心莲内酯处理SW1116细胞,MTT检测穿心莲内酯对SW1116细胞生长增殖的抑制作用;流式细胞术(FCM)检测细胞凋亡率;比色法测定Caspase-3酶活性;Western blot法检测bax、Bcl-2的蛋白表达.结果:穿心莲内酯能够剂量依赖型的抑制人结肠癌SW1116细胞的增殖,并诱导凋亡;穿心莲内酯与SW1116细胞作用48小时后Caspase-3酶活性显著增强;同时,穿心莲内酯处理SW1116细胞后,Bax蛋白表达增强,Bcl-2蛋白表达下调.结论:穿心莲内酯可抑制人结肠癌SW1116的增殖,诱导其凋亡,机制可能与调节Caspase-3、Bcl-2和Bax表达水平有关. 相似文献
104.
Hao Bing Li Guo Qiang Xie Jun Ma Gui Ru Liu Shu Min Wen Tomohiro Ban Sukumar Chakraborty Chun Ji Liu 《TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik》2010,121(5):941-950
Fusarium head blight (FHB) and crown rot (CR) are two wheat diseases caused by the same Fusarium pathogens. Progress towards CR resistance could benefit from FHB-resistant germplasm if the same genes are involved in resistance
to these two different diseases. Two independent studies were conducted to investigate the relationship between host resistances
to these two diseases. In the first study 32 genotypes were assessed and no significant correlation between their reactions
to FHB and CR was detected. The second study was based on a QTL analysis of a doubled haploid population derived from a variety
with resistance to both diseases. Results from this study showed that loci conferring resistance to FHB and CR are located
on different chromosomes. Together, these results suggest that, despite a common aetiology, different host genes are involved
in the resistance against FHB and CR in wheat. Thus, although it is possible that genes affecting both diseases may exist
in other germplasm or under different conditions, separate screening seems to be needed in identifying sources of CR resistance. 相似文献
105.
Ruíz P Ortiz R Perelló L Alzuet G González-Alvarez M Liu-González M Sanz-Ruíz F 《Journal of inorganic biochemistry》2007,101(5):831-840
Three new binary Cu(II) complexes of norfloxacin have been synthesized and characterized. We also report the synthesis, characterization and X-ray crystallographic structures of a new binary compound, [Cu(HNor)(2)]Cl(2).2H(2)O (2) and two new ternary complexes norfloxacin-copper(II)-phen, [Cu(Nor)(phen)(H(2)O)](NO(3)).3H(2)O (4), and [Cu(HNor)(phen)(NO(3))](NO(3)).3H(2)O (5). The structure of 2 consists of two crystallographically independent cationic monomeric units of [Cu(HNor)(2)](2+), chloride anions, and uncoordinated water molecules. The Cu(II) ion is placed at a center of symmetry and is coordinated to two norfloxacin ligands which are related through the inversion center. The structures of 4 and 5 consist of cationic units ([Cu(Nor)(phen)(H(2)O)](+) for 4 and [Cu(HNor)(phen)(NO(3))](+) for 5), nitrate counteranions, and lattice water molecules that provide crystalline stability through a network of hydrogen-bond interactions. The complexes exhibit a five coordinated motif in a square pyramidal environment around the metal center. The ability of compounds 4 and 5 to cleave DNA has also been studied. Mechanistic studies with different inhibiting reagents reveal that hydroxyl radicals, singlet oxygen, and superoxide radicals are all involved in the DNA scission process mediated by these compounds. 相似文献
106.
Nguyen MT Favelyukis S Nguyen AK Reichart D Scott PA Jenn A Liu-Bryan R Glass CK Neels JG Olefsky JM 《The Journal of biological chemistry》2007,282(48):35279-35292
Obesity and type 2 diabetes are characterized by decreased insulin sensitivity, elevated concentrations of free fatty acids (FFAs), and increased macrophage infiltration in adipose tissue (AT). Here, we show that FFAs can cause activation of RAW264.7 cells primarily via the JNK signaling cascade and that TLR2 and TLR4 are upstream of JNK and help transduce FFA proinflammatory signals. We also demonstrate that F4/80(+)CD11b(+)CD11c(+) bone marrow-derived dendritic cells (BMDCs) have heightened proinflammatory activity compared with F4/80(+)CD11b(+)CD11c(-) bone marrow-derived macrophages and that the proinflammatory activity and JNK phosphorylation of BMDCs, but not bone marrow-derived macrophages, was further increased by FFA treatment. F4/80(+)CD11b(+)CD11c(+) cells were found in AT, and the proportion and number of these cells in AT is increased in ob/ob mice and by feeding wild type mice a high fat diet for 1 and 12 weeks. AT F4/80(+)CD11b(+)CD11c(+) cells express increased inflammatory markers compared with F4/80(+)CD11b(+)CD11c(-) cells, and FFA treatment increased inflammatory responses in these cells. In addition, we found that CD11c expression is increased in skeletal muscle of high fat diet-fed mice and that conditioned medium from FFA-treated wild type BMDCs, but not TLR2/4 DKO BMDCs, can induce insulin resistance in L6 myotubes. Together our results show that FFAs can activate CD11c(+) myeloid proinflammatory cells via TLR2/4 and JNK signaling pathways, thereby promoting inflammation and subsequent cellular insulin resistance. 相似文献
107.
Detachment of parenchymal cells from a solid matrix switches contextual cues from survival to death during anoikis. Marked shape changes accompany detachment and are thought to trigger cell death, although a working model to explain the coordination of attachment sensation, shape change, and cell fate is elusive. The constitutive form of the adapter Shc, p52Shc, confers survival properties, whereas the longer p66Shc signals death through association with cytochrome c. We find that cells that lack p66Shc display poorly formed focal adhesions and escape anoikis. However, reexpression of p66Shc restores anoikis through a mechanism requiring focal adhesion targeting and RhoA activation but not an intact cytochrome c-binding motif. This pathway stimulates the formation of focal adhesions and stress fibers in attached cells and tension-dependent cell death upon detachment. p66Shc may thus report attachment status to the cell by imposing a tension test across candidate anchorage points, with load failure indicating detachment. 相似文献
108.
大豆异黄酮代谢途径在大肠杆菌中的构建及表达 总被引:1,自引:0,他引:1
自然界异黄酮合成途径主要存在于豆科植物中。以微生物为宿主研究异黄酮代谢,则需要将整个相关代谢途径的多酶体系组装到工程菌种,从而进行表达及代谢研究,这就需要用到多基因的转化和共表达技术。综合应用了多基因单载体和多基因多载体方法,将大豆异黄酮代谢途径中的五个关键酶基因导入到大肠杆菌中,对异黄酮代谢途径在大肠杆菌中的构建和表达进行了研究和探索,获得了含有五个外源基因的重组大肠杆菌;重组菌经IPTG诱导,以L-酪氨酸为底物进行发酵,发酵产物经过HPLC测定,结果表明和空白对照相比有新的代谢产物生成,初步断定为异黄酮类化合物。 相似文献
109.
介绍DICOM3.0医学图像文件的格式和C#语言的特点,首次利用Visual C#语言对该标准的图像进行显示和处理,能够直接读取DICOM格式原始图像数据,并可批量转换成BMP等格式进行处理,此项工作可为医学图像处理研究及相关医学图像软件开发奠定基础。 相似文献
110.
Attachment of bacteria to the roots of higher plants 总被引:6,自引:0,他引:6
Attachment of soil bacteria to plant cells is supposedly the very early step required in plant-microbe interactions. Attachment also is an initial step for the formation of microbial biofilms on plant roots. For the rhizobia-legume symbiosis, various mechanisms and diverse surface molecules of both partners have been proposed to mediate in this process. The first phase of attachment is a weak, reversible, and unspecific binding in which plant lectins, a Ca(+2)-binding bacterial protein (rhicadhesin), and bacterial surface polysaccharide appear to be involved. The second attachment step requires the synthesis of bacterial cellulose fibrils that cause a tight and irreversible binding of the bacteria to the roots. Cyclic glucans, capsular polysaccharide, and cellulose fibrils also appear to be involved in the attachment of Agrobacterium to plant cells. Attachment of Azospirillum brasilense to cereals roots also can be divided in two different steps. Bacterial surface proteins, capsular polysaccharide and flagella appear to govern the first binding step while extracellular polysaccharide is involved in the second step. Outer cell surface proteins and pili are implicated in the adherence of Pseudomonas species to plant roots. 相似文献