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91.
针对传统喷头水量分布特性测试手段落后的问题,研究了喷头水量分布特性自动测试的关键技术,并根据水量测试原理,建立了水量信息传感器的转换模型,实现了水量信息从模拟量到数字量的一步转换。采用基于分布式总线技术的水量信息采集方案,设计了喷头水量分布特性自动测试系统,使水量分布信息和其他测试数据快速直观地显示在计算机屏幕上,并可打印输出,提高了喷头性能测试的工作效率和水平,对新型喷头的试验研究提供了可靠数据和分析手段。 相似文献
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以白花芥蓝‘四季粗条’为材料克隆了Boa DFR基因,Gen Bank登录号为MT472647,CDS序列长为1158 bp,编码385个氨基酸,与甘蓝型油菜、甘蓝和白菜等具有高度同源性。Boa DFR表达水平在芥蓝不同发育时期、不同器官中存在显著差异,随植株发育总体呈现先下降后上升的趋势,在幼嫩种子中表达量最高。芥蓝原生质体的亚细胞定位结果显示Boa DFR定位在细胞核上。构建了农杆菌介导的芥蓝瞬时过表达体系,将Boa DFR转入白花芥蓝‘四季粗条’和黄花芥蓝‘福州黄花’中,发现Boa DFR在两种芥蓝中均高水平表达,转基因植株叶片颜色明显变紫,花青素苷显著积累,总含量最高达461.43μg·g-1 FW,而野生型和转空载体芥蓝叶片中几乎检测不到花青素苷。通过HPLC在转基因植株叶片中共检测到8种花青素苷,均为矢车菊花青素苷,其中矢车菊–3–阿魏酰–丙二酰–槐糖苷–5–葡萄糖苷占比最高。 相似文献
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XU Jia-qi AN Mei-ling YUAN Yue HAO Yi-fan WANG Xiu-wen ZHANG Min WEI Xiao-wei LI Hua WANG Ren-jun 《园艺学报》2021,36(12):2148-2158
AIM To investigate whether microRNA-9-5p (miR-9-5p) mediates sympathetic overactivity by targeting KCNN3 (potassium intermediate/small conductance calcium-activated channel, subfamily N, member 3) gene,which encoded small-conductance calcium-activated potassium channel 3 (SK3) protein, in paraventricular nucleus (PVN) of rats with type 2 diabetes mellitus (T2D). METHODS A rat model of T2D was established by high-fat diet combined with intraperitoneal injection of 30 mg/kg streptozotocin. The levels of miR-9-5p and KCNN3 mRNA in PVN were detected by real-time PCR. The relationship between KCNN3 and miR-9-5p was predicted by TargetScan. Recombinant adeno-associated virus (rAAV)-miR-9-5p or KCNN3 were bilaterally microinjected into the PVN to observe the changes in plasma glucose levels and sympathetic drive indicators. The number of FosB and SK3 positive cells was measured by immunofluorescence staining. The protein expression of SK3 was determined by Western blot. The relationship between KCNN3 and miR-9-5p were confirmed by cell transfection and dual-luciferase reporter assay. RESULTS Compared with the rats in diabetes control (DC) group, the blood glucose, sympathetic drive indexes and the level of miR-9-5p in PVN were significantly increased, while the SK3 expression in PVN was obviously reduced in the diabetes mellitus (DM) rats. After microinjecion of rAAV-miR-9-5p in PVN, the sympathetic drive indexes, blood glucose, and the number of FosB-positive cells were increased significantly, but the SK3 protein expression was significantly reduced (P <0.05). However, up-regulation of KCNN3 in PVN had the opposite effect. These responses were obviously enhanced in DM rats compared with DC rats. The results of cell transfection and dual-luciferase reporter assay demonstrated that miR-9-5p bound to the 3’-UTR of KCNN3 and inhibit its expression. CONCLUSION miR-9-5p was up-regulated in PVN of the rats with T2D, and it may mediate sympathoexcitation by targeting KCNN3 . 相似文献
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为明确规模化奶牛养殖场粪水发酵处理后还田对苜蓿生长和土壤的影响,试验设置了追肥(苜蓿专用配方肥N∶P2O5∶K2O为4∶13∶40)225 kg/hm2、追肥112.5 kg/hm2+粪水360 m3/hm2和只追施粪水360 m3/hm23个处理。结果表明,追肥112.5 kg/hm2+粪水360 m3/hm2处理下,2019、2020年全年苜蓿干草产量分别达到15 506.5和15 548.0 kg/hm2,显著高于其他处理。追肥112.5 kg/hm2+粪水360 m3/hm2和只追施粪水360 m3/hm2两个处理显著提高了土壤有机质含量和土壤pH,而含盐量则降低。追施粪水360 m 相似文献
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Bacteria in desert soil have unique phylogeny and important ecological functions, and theirresponses to changes in precipitation need further attention. However, relevant studies have mainlyfocused on the surface soil, and studies on the responses of bacteria at different soil depths to variationsin precipitation are rare. Thus, we used 16S rDNA high-throughput sequencing to investigate the changesin soil bacterial distribution along a mean annual precipitation gradient (50–150 mm) in the Alxa Desert,China, and compared the variation characteristics in the surface soil layer (0–10 cm) and subsurface soillayer (10–20 cm). Results showed that soil bacterial communities significantly changed along theprecipitation gradient in both soil layers. However, the subsurface soil layer could support bacterialcommunities with higher diversity and closer internal relationships but more internal competition than thesurface soil layer. Additionally, compared with the surface soil layer, variations in diversity andco-occurrence patterns in the subsurface soil layer were more in line with the changes in the mean annualprecipitation, while bacterial community structure was less variable in the subsurface soil layer. Comparedwith the mean annual precipitation, soil moisture had little influence on the structure and diversity of soilbacterial community but had a high correlation with intercommunity connectivity. Therefore, soilmoisture might play a complex role in mediating environmental conditions and soil bacterial communitycharacteristics. Due to the different responses of surface and subsurface soil bacteria to the changes inprecipitation, it is necessary to distinguish different soil layers when predicting the trends in desert soilbacterial conditions associated with precipitation, and prediction of subsurface soil bacteria may be moreaccurate. 相似文献
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