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41.
为研究草莓中SCF复合体的功能,以栽培草莓品种‘74’为试材,采用同源克隆的方法分离出2个SKP1基因。这2个基因核苷酸序列全长均为519bp,核苷酸序列相似性为98.46%,氨基酸序列相似性为98.84%,并具有特殊的‘GVDED’尾巴结构,分别命名为FaSKP1-1a和FaSKP1-1b(基因登录号分别为KU975057和KU975058)。RT-PCR和dCAPS分析发现FaSKP1-1a和FaSKP1-1b在草莓根、茎、叶、花托、花粉、花柱、果实中均高表达,在花瓣中表达量低。上述结果表明FaSKP1-1可能在草莓SCF复合体的形成过程中发挥重要作用。 相似文献
42.
采用灭活的鱼肠道弧菌作为抗原,制备兔抗血清,建立了鱼肠道弧菌的间接荧光抗体检测技术(indirect im-munofluorescence assay test,IFAT)、Western-blotting免疫印迹检测技术。IFAT结果显示阳性信号覆盖整个菌体,明亮,清晰,荧光信号呈长弧形且两端钝圆,与鱼肠道弧菌形状一致。Western-blotting结果显示共10条蛋白带发生免疫反应,其中6条蛋白带结果较清晰,显示出较强的特异性免疫反应,阴性对照组无条带。IFAT和Western-blotting结果说明所建立检测方法能够准确、快速的检测出鱼肠道弧菌。 相似文献
43.
Eleven grape cultivars were analysed to explore the variety differences of fresh grape phenolic profiles. The results showed that free phenolics were predominant in grape skins and pulps, and showed the higher antioxidant activities than bound. In 11 cultivars, Muscat Kyoho extracts had the highest total phenolic content in skins(10.525 mg GAE g~(–1) FW) and pulps(1.134 mg GAE g~(–1) FW), and exhibited the highest DPPH radical scavening capacity(EC_(50)=11.7 μg mL~(–1)) and oxygen radical absorbance capacity(ORAC) value(190.57 μmol TE g~(–1) FW) of free phenolic in skin. In addition, the most abundant phenolics in grape skins were found to be flavonoids such as kaempferol in Kyoho skin(541.2 μg g~(–1) FW), rutin, catechin and epicatechin in Muscat Kyoho skin(262.3, 86.3 and 70.0 μg g~(–1) FW, respectively). Furthermore, the principal component analysis showed a strong difference of phenolic profiles with the cultivars, existing forms and distributions. Pearson correlation coefficient analysis showed a significant linear correlation between total phenolic content and antioxidant activity(P0.05). Therefore, both skins and pulps were rich sources of bioactive phenolic compounds, and Muscat Kyoho was the ideal source among all samples. 相似文献
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46.
随着社会经济的飞速发展,对于节能环保的要求越来越高,传统的G/M代码已经成为现代先进制造技术的瓶颈。而基于STEP标准的STEP-NC将为现代CNC的高速和高精度加工提供条件。 相似文献
47.
依次通过离子交换法、凝胶过滤法纯化重组白细胞介素-2(IL-2)粗品,利用SDS-PAGE电泳和hIL-2 Elisa kit检测纯化后重组IL-2的纯度和浓度。结果表明,纯化后的重组IL-2纯度和浓度高。本纯化方法简单、稳定、纯化效果好,可为重组IL-2的生产工艺提供技术支持和依据。 相似文献
48.
Xiao-feng YUE Yan-lun JU Zi-zhu TANG Ya-meng ZHAO Xu-liang JIAO Zhen-wen ZHANG 《农业科学学报》2019,18(9):2052-2062
The effects of the severity and timing of leaf removal(LR) on the amino acids of Sauvignon Blanc grapes and wines were studied during the 2017 growing season. High-performance liquid chromatography(HPLC) was used to analyze the amino acids profiles of grape berries and wines. The basal leaves were removed at three time points(40, 56 and 72 days after flowering, named LR40, LR56 and LR72, respectively) at two severity levels(one at which the first, third, and fifth basal leaves of each shoot were removed(50% level); and another at which the first six basal leaves were removed(100% level)). The results showed that leaf removal had little impact on total soluble solids(°Brix), titratable acidity, pH or berry weight. The LR72-50% treated grapes had higher berry weight, titratable acidity and °Brix than those of the other treatments. The highest concentrations of total amino acids and of total amino acids except proline were detected in LR72-50% treated grapes(2 952.58 and 2 764.36 mg L~(-1), respectively); the lowest were detected in LR72-100% treated grapes(2 172.82 and 2 038.71 mg L~(-1), respectively). LR72-50% treatment significantly promoted the synthesis of aspartic acid, serine, arginine, alanine, aminobutyric acid and proline at both severity levels for grapes, the concentrations of all of these amino acids were increased relative to the control concentrations. The LR72-50%, LR40-100% and LR72-100% treated wines had higher total amino acids concentrations and higher concentrations of some individual amino acids, such as arginine, alanine and serine, than did the control wines. Of all the amino acids studied, glycine, tyrosine, cysteine, methionine and lysine were not significantly influenced by the timing or severity basal defoliation in grapes and wines. The present study reveals the effects of the timing and severity of leaf removal on the amino acids profiles of grapes and wines. 相似文献
49.
Cadmium (Cd) intake is harmful to human health and Cd contamination in rice grains represents a severe threat to those consuming rice as a staple food. Knockout of Cd transporters is a promising strategy to reduce Cd accumulation in rice grains. OsNRAMP5 is the major transporter for Cd and manganese (Mn) uptake in rice. Nevertheless, it is uncertain whether knockout of OsNRAMP5 is applicable to produce low Cd rice without affecting plant growth and grain yield. In this study, we adopted CRISPR/Cas9-based gene editing technology to knock out OsNRAMP5 in two japonica varieties. We generated three independent transgene-free osnramp5 mutants and investigated the effect of osnramp5 mutations on Cd accumulation and plant growth. Hydroponic experiments showed that plant growth and chlorophyll content were significantly reduced in osnramp5 mutants at low Mn conditions, and this defective growth in the mutants could be fully rescued by supply of high levels of Mn. Cd and Mn accumulation in both roots and shoots was markedly reduced in the mutants compared to that in wild-type plants. In paddy field experiments, although Cd in flag leaves and grains was greatly reduced in osnramp5 mutants, some agronomic traits including plant height, seed setting rate, and grain number per panicle were affected in the mutants, which ultimately caused a mild reduction in grain yield. The reduced plant growth in the mutants can be attributed to a marked decrease in Mn accumulation. Our results reveal that the manipulation of OsNRAMP5 should be treated with caution: When assessing the applicability of osnramp5 mutants, soil pH and soil water content in paddy fields need to be taken into consideration, since they might affect the levels of available Mn in the soil and consequently determine the effect of the mutation on grain yield. 相似文献
50.
前期研究中发现了一个果肉低表达而叶片中高表达的荔枝基因FKBP16-2。本文克隆了该基因1 578 bp的启动子片段并对其功能进行了初步分析,结果表明:荔枝FKBP16-2基因启动子序列中含有大量的TATA-box和CAAT-box保守元件,以及TCA-element,ARE,HSE,GCN4_motif,O2-site等各种转录调控相关的顺式作用元件。该启动子能驱动GUS基因在荔枝的花、叶、根、果皮以及种子中表达而在果肉中不表达,表达具有组织特异性。 相似文献