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51.
该研究以马铃薯双单倍体‘DM’为材料,克隆到高亲和性硝态氮转运蛋白基因StNRT2.1的全长cDNA(JGI登录号PGSC0003DMT400002924),并对其进行表达模式和生物信息学分析,为深入探索StNRT2.1基因的生物学功能以及提高马铃薯对氮素的利用效率奠定理论基础。结果表明:(1)通过同源克隆与PCR扩增获得StNRT2.1基因cDNA全长片段,并构建pCEGFP-StNRT2.1表达载体;测序结果显示其实际所编码的蛋白质序列与数据库中目的基因蛋白质序列完全一致,表明成功克隆到StNRT2.1基因且未出现错义突变。(2)StNRT2.1基因位于马铃薯第11号染色体,cDNA序列全长1 593 bp,编码530个氨基酸,预测蛋白相对分子质量约为57.60 kD,理论等电点为9.36。(3)生物信息学分析显示,StNRT2.1由20种氨基酸组成,其中甘氨酸(Gly)所占比例最多,达到10.8%,并且主要由228个α-螺旋、27个β-折叠、87个延伸链和188个无规则卷曲构成;StNRT2.1存在功能保守结构MFS_1(PF07690)和12个跨膜螺旋结构域,且N端和C端均位于细胞膜内; StNRT2.1位于质膜上且不具有信号肽,可能为非分泌型膜蛋白。(4)以氮充足(7.5 mmol/L)水平作为对照,马铃薯幼苗经无氮(0 mmol/L)和低氮(0.75 mmol/L)处理3周后呈现出叶片发黄及植株矮化等明显表型差异。(5)qRT-PCR结果显示,在无氮条件下,马铃薯根组织中StNRT2.1基因表达量升高3.98倍,说明StNRT2.1可能为诱导型高亲和转运蛋白。  相似文献   
52.
目的制备鸭抗原处理相关转运体(TAP)特异性单抗,为深入利用实验鸭开展免疫学研究提供实验材料。方法利用大肠埃希菌诱导表达主要组织相容性复合体(MHC)单倍型HBW-SPF鸭TAP蛋白肽结合区片段,表达产物经镍柱纯化后免疫BALB/c小鼠,采用ELISA技术筛选特异性单抗分泌杂交瘤细胞株。将阳性细胞株制备小鼠腹水,作为一抗,与多次截短表达TAP蛋白肽结合区进行蛋白免疫印迹试验,鉴定单抗针对的抗原表位。通过间接免疫荧光试验比较该单抗对实验鸭和鸡外周血淋巴细胞的反应性,利用免疫组织化学技术检测对SPF鸡、SPF鸭、鹌鹑、鹅和SPF猪的特异性。结果获得一株鸭TAP单抗1A6,抗原表位位于297NARHQMLQQAVLDATAGTGMVVQEAI322,对鸡和鸭外周血淋巴细胞具有免疫荧光反应性;在鸡和鸭的肠黏膜固有层检测到大量特异性信号,在猪、鹌鹑和鹅没有检测到信号。结论获得了一株具有鸡和鸭反应性的抗原转运相关体特异性的单抗,可运用于禽类实验动物在禽病学和禽免疫学方面的研究。  相似文献   
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In plants, secondary metabolites play important roles in adaptation to the environment. Nicotine, a pyridine alkaloid in Nicotiana tabacum, functions as chemical barrier against herbivores. Nicotine produced in the root undergoes long-distance transport and accumulates mainly in the leaves. Since production of such defensive compounds is costly, plants must regulate the allocation of the products to their tissues; however, the molecular mechanism of nicotine translocation remains unclear. Our recent studies identified a novel multidrug and toxic compound extrusion (MATE)-type nicotine transporter, JAT2 (jasmonate-inducible alkaloid transporter 2). This transporter is specifically expressed in leaves, localizes to the tonoplast, and transports nicotine as its substrate. The specific induction of JAT2 expression in leaves by methyl jasmonate (MeJA) treatment suggests that this transporter plays an important role in nicotine distribution to leaves, especially under herbivore attack, by transporting nicotine into the vacuole. Considering JAT2, together with the previously identified MATE transporters JAT1, MATE1, and MATE2, and the PUP (purine permease) transporter NUP1 (nicotine uptake permease1), we show a model of nicotine translocation and accumulation via distinct spatio-temporal regulation of nicotine transporter expression. Furthermore, we discuss the possible role of nicotine transporters in determining outcrossing rates and seed production.  相似文献   
56.
The long allele variant of the serotonin transporter (SERT, 5‐HTT) gene‐linked polymorphic region (5‐HTTLPR) is associated with higher levels of 5‐HTT expression and reduced risk of developing affective disorders. However, little is known about the mechanisms underlying this protective effect. One hypothesis is that 5‐HTT expression influences aversive information processing, with reduced negative cognitive bias present in those with higher 5‐HTT expression. Here we investigated this hypothesis using genetically‐modified mice and a novel aversive learning paradigm. Mice with high levels of 5‐HTT expression (5‐HTT over‐expressing, 5‐HTTOE mice) and wild‐type mice were trained to discriminate between three distinct auditory cues: one cue predicted footshock on all trials (CS+); a second cue predicted the absence of footshock (CS?); and a third cue predicted footshock on 20% of trials (CS20%), and was therefore ambiguous. Wild‐type mice exhibited equivalently high levels of fear to the CS+ and CS20% and minimal fear to the CS?. In contrast, 5‐HTTOE mice exhibited high levels of fear to the CS+ but minimal fear to the CS? and the CS20%. This selective reduction in fear to ambiguous aversive cues suggests that increased 5‐HTT expression reduces negative cognitive bias for stimuli with uncertain outcomes.  相似文献   
57.
Cadmium (Cd) is one of the most toxic elements and can be accumulated in plants easily; meanwhile, eIF5A is a highly conserved protein in all eukaryotic organisms. The present work tried to investigate whether eIF5A is involved in Cd accumulation and sensitivity in Arabidopsis (Arabidopsis thaliana L.) by comparing the wild‐type Columbia‐0 (Col‐0) with a knockdown mutant of AteIF5A‐2, fbr12‐3 under Cd stress conditions. The results showed that the mutant fbr12‐3 accumulated more Cd in roots and shoots and had significantly lower chlorophyll content, shorter root length, and smaller biomass, suggesting that downregulation of AteIF5A‐2 makes the mutant more Cd sensitive. Real‐time polymerase chain reaction revealed that the expressions of metal transporters involved in Cd uptake and translocation including IRT1, ZIP1, AtNramp3, and AtHMA4 were significantly increased but the expressions of PCS1 and PCS2 related to Cd detoxification were decreased notably in fbr12‐3 compared with Col‐0. As a result, an increase in MDA and H2O2 content but decrease in root trolox, glutathione and proline content under Cd stress was observed, indicating that a severer oxidative stress occurs in the mutant. All these results demonstrated for the first time that AteIF5A influences Cd sensitivity by affecting Cd uptake, accumulation, and detoxification in Arabidopsis.  相似文献   
58.
Phosphate (Pi) transporters mediate acquisition and transportation of Pi within plants. Here, we investigated the functions of OsPht1;4 (OsPT4), one of the 13 members of the Pht1 family in rice. Quantitative real‐time RT‐PCR analysis revealed strong expression of OsPT4 in roots and embryos, and OsPT4 promoter analysis using reporter genes confirmed these findings. Analysis using rice protoplasts showed that OsPT4 localized to the plasma membrane. OsPT4 complemented a yeast mutant defective in Pi uptake, and also facilitated increased accumulation of Pi in Xenopus oocytes. Further, OsPT4 genetically modified (GM) rice lines were generated by knockout/knockdown or over‐expression of OsPT4. Pi concentrations in roots and shoots were significantly lower and higher in knockout/knockdown and over‐expressing plants, respectively, compared to wild‐type under various Pi regimes. 33Pi uptake translocation assays corroborated the altered acquisition and mobilization of Pi in OsPT4 GM plants. We also observed effects of altered expression levels of OsPT4 in GM plants on the concentration of Pi, the size of the embryo, and several attributes related to seed development. Overall, our results suggest that OsPT4 encodes a plasma membrane‐localized Pi transporter that facilitates acquisition and mobilization of Pi, and also plays an important role in development of the embryo in rice.  相似文献   
59.
Nilaparvata lugens, the brown planthopper (BPH) feeds on rice phloem sap, containing high amounts of sucrose as a carbon source. Nutrients such as sugars in the digestive tract are incorporated into the body cavity via transporters with substrate selectivity. Eighteen sugar transporter genes of BPH (Nlst) were reported and three transporters have been functionally characterized. However, individual characteristics of NlST members associated with sugar transport remain poorly understood. Comparative gene expression analyses using oligo-microarray and quantitative RT-PCR revealed that the sugar transporter gene Nlst16 was markedly up-regulated during BPH feeding. Expression of Nlst16 was induced 2 h after BPH feeding on rice plants. Nlst16, mainly expressed in the midgut, appears to be involved in carbohydrate incorporation from the gut cavity into the hemolymph. Nlst1 (NlHT1), the most highly expressed sugar transporter gene in the midgut was not up-regulated during BPH feeding. The biochemical function of NlST16 was shown as facilitative glucose transport along gradients. Glucose uptake activity by NlST16 was higher than that of NlST1 in the Xenopus oocyte expression system. At least two NlST members are responsible for glucose uptake in the BPH midgut, suggesting that the midgut of BPH is equipped with various types of transporters having diversified manner for sugar uptake.  相似文献   
60.
泡沫细胞形成是动脉粥样硬化发生的关键环节,胆固醇逆转运可以防止泡沫细胞形成,ATP结合盒转运体G1(ATP-binding cassette transporter G1,ABCG1)在胆固醇逆转运中起着很重要的作用,可将细胞内胆固醇转运至高密度脂蛋白(high density lipoprotein,HDL).肝X受体α (liver X receptor α,LXRα)可通过调节其靶基因ABCG1的表达来调控胆固醇逆转运.脂联素有很广泛的心血管保护作用,但对RAW 264.7巨噬细胞ABCG1表达的影响尚不清楚.为了研究脂联素对RAW 264.7巨噬细胞ABCG1表达的影响及其机制,采用实时荧光定量PCR、蛋白质印迹法检测ABCG1和LXRα的表达,使用液体闪烁计数仪检测胆固醇流出率,并利用siRNA干扰技术抑制LXRα的表达来研究LXRα在脂联素调节ABCG1中的作用.结果表明,脂联素浓度依赖性和时间依赖性地上调ABCG1和LXRα的mRNA和蛋白质的表达,促进巨噬细胞胆固醇流出.经LXRα siRNA处理后,脂联素上调ABCG1的作用消失,胆固醇流出率也相应减少.上述结果提示,脂联素经LXRα途径促进RAW 264.7巨噬细胞ABCG1表达和胆固醇流出,防止泡沫细胞形成,减轻动脉粥样硬化.  相似文献   
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