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981.
The eastern Colorado shortgrass steppe is dominated by the C4 grass, Bouteloua gracilis, but contains a mixture of C3 grasses as well, including Pascopyrum smithii. Although the ecology of this region has been extensively studied, there is little information on how increasing atmospheric CO2 will affect it. This growth chamber study investigated gas exchange, water relations, growth, and biomass and carbohydrate partitioning in B. gracilis and P. smithii grown under present ambient and elevated CO2 concentrations of 350 μl l−1and 700 μl l−1, respectively, and two deficit irrigation regimes. The experiment was conducted in soil-packed columns planted to either species over a 2-month period under summer-like conditions and with no fertilizer additions. Our objective was to better understand how these species and the functional groups they represent will respond in future CO2-enriched environments. Leaf CO2 assimilation (A n), transpiration use efficiency (TUE, or A n/transpiration), plant growth, and whole-plant water use efficiency (WUE, or plant biomass production/water evapotranspired) of both species were greater at elevated CO2, although responses were more pronounced for P. smithii. Elevated CO2 enhanced photosynthesis, TUE, and growth in both species through higher soil water content (SWC) and leaf water potentials (Ψ) and stimulation of photosynthesis. Consumptive water use was greater and TUE less for P. smithii than B. gracilis during early growth when soil water was more available. Declining SWC with time was associated with a steadily increased sequestering of total non-structural carbohydrates (TNCs), storage carbohydrates (primarily fructans for P. smithii) and biomass in belowground organs of P. smithii, but not B. gracilis. The root:shoot ratio of P. smithii also increased at elevated CO2, while the root:shoot ratio of B. gracilis was unresponsive to CO2. These partitioning responses may be the consequence of different ontogenetic strategies of a cool-season and warm-season grass entering a warm, dry summer period; the cool-season P. smithii responds by sequestering TNCs belowground in preparation for summer dormancy, while resource partitioning of the warm-season B. gracilis remains unaltered. One consequence of greater partitioning of resources into P. smithii belowground organs in the present study was maintenance of higher Ψ and A n rates. This, along with differences in photosynthetic pathway, may have accounted for the greater responsiveness of P. smithii to CO2 enrichment compared to B. gracilis. Received: 21 July 1997 / Accepted: 16 December 1997  相似文献   
982.
单纯疱疹病毒(HSVⅠ)对宿主细胞转录及mRNA修饰翻译通路的调控是一个系统的、复杂的体系,探索其具体机制将有助于了解病毒复制过程及与宿主细胞之间的相互作用。基于2-DE分析,人胎肝细胞 L-02细胞核不均一性核糖核蛋白H2(heterogeneous nuclear ribonucleoprotein H2,hnRNP H2)在感染HSVⅠ前后存在表达差异,通过Western blot ,Northern blot等技术方法验证其在病毒复制过程中不同时段对其表达影响。  相似文献   
983.
We assessed the distribution and abundance of 4 species of diurnal primates viz. lion-tailed macaque, bonnet macaque, Nilgiri langur and Hanuman langur, in 2 areas—Brahmagiri-Makut and Sirsi-Honnavara—in rain forests of the Western Ghats in the state of Karnataka, India. The Nilgiri langurs in Brahmagiri-Makut and the lion-tailed macaques in Sirsi-Honnavara are the northernmost populations of the 2 species in the Western Ghats. The 2 regions represent changes in ecological zones in the Western Ghats. In Brahmagiri-Makut, Hanuman langurs and bonnet macaques occupy lower elevations whereas Nilgiri langurs live in relatively higher altitudes. Only one group of lion-tailed macaques was in Brahmagiri-Makut. In the forests of Sirsi-Honnavara, 3 species of primates viz. lion-tailed macaque, bonnet macaque and Hanuman langur were in larger numbers throughout the forest. A self-sustainable single population of 32 groups of lion-tailed macaques occurred in Sirsi-Honnavara. Few subspecies of Hanuman langurs exist in the study regions. Due to local hunting practices, the relative abundance of primates in Brahmagiri-Makut is lower than that in Sirsi-Honnavara.  相似文献   
984.
为了测定GAPDH在巴斯德毕赤酵母中作为内参蛋白的有效性,利用PCR鉴定巴斯德毕赤酵母中GAPDH基因,分别在含葡萄糖、甲醇、甘油培养基及不同温度下培养巴斯德毕赤酵母,采用SDS-PAGE、Western blotting和催化活性检测。测序结果与已报道的巴斯德毕赤酵母GAPDH基因完全一致。SDS-PAGE结果显示,表达蛋白分子量为35.4 kD,与预期分子量相符。Western blotting和催化活性测定显示,在葡萄糖诱导下GAPDH表达最高,甲醇次之,甘油最低。37℃下GAPDH表达略高于28℃。在同一诱导物或温度下,GAPDH表达不会随浓度或培养时间发生明显变化。结果表明,在同一种诱导方式下,GAPDH可以作为异源蛋白表达的内参对照。  相似文献   
985.
PCR扩增拟南芥(Arabidopsis thaliana)DBB1a cDNA的保守区段(GenBank登录号:AT2G21320),转化到冷诱导表达载体pCold TF上,构建pCold-DBB1a重组质粒,转化大肠杆菌DH5a.15℃下IPTG诱导表达融合蛋白,并通过SDS-PAGE检测.证实目的蛋白以可溶形式在约20 kD处高效表达,与预期蛋白大小相吻合.表达蛋白经Ni琼脂糖凝胶亲和层析纯化,SDS-PAGE及Western blotting检测证实纯化后获得高纯度融合蛋白,这为进一步研究DBB1a功能奠定了基础.  相似文献   
986.
以自然同步化的多头绒泡菌(Physarum polycephalumL.)为材料,经抗cyclinB1抗体的免疫印迹和免疫电镜实验观察结果表明,多头绒泡菌中含有类cyclinB1蛋白,该蛋白的含量和细胞内位置在细胞周期进程中存在着动态变化。类cyclinB1蛋白在S期开始合成并在细胞质中积累,G2晚期开始进入细胞核,该蛋白在细胞质和细胞核中含量逐渐增加。有丝分裂中期时达最大值。后末期时骤然消失,在G2晚期到有丝分裂中期期间,类cyclinB1蛋白既是细胞核蛋白又是细胞质蛋白,细胞质是类cyclinB1蛋白的主要存在区域,细胞核中的类cyclinB1蛋白主要结合于染色体和核仁区域。  相似文献   
987.
引入西方蜜蜂对中蜂的危害及生态影响   总被引:33,自引:9,他引:33  
杨冠煌 《昆虫学报》2005,48(3):401-406
作者阐述自1896年中国引进西方蜜蜂Apis melliferaL.的优良品种如意大利蜂Apis mellifera ligusticaSpinola和喀尼阿兰蜂Apis mellifera Carnica Pollmann以来,使当地的东方蜜蜂Apis cerana F.受到严重危害,其分布区域缩小75%以上,种群数量减少80%以上。使山林植物授粉总量减少,导致植物多样性减少。文中提出: 建立自然保护区保存本地蜜蜂遗传特性,和采用基因转移等技术,培育具有西方蜜蜂优良生产性能的中蜂新品种,逐步恢复中蜂的种群数量。  相似文献   
988.
使用生物信息学预测结合实验验证的策略筛选鉴定人新的分泌蛋白基因。用SignalP、SOSUI、PSORT和BLAST等程序对UniProt蛋白数据库进行生物信息学分析 ,筛选出用于实验验证的 1 4个功能未知基因。采用RT PCR方法 ,克隆得到 1 4个基因的全长编码序列 ,并构建到真核表达载体pcDNA3.1 ( - ) Myc His质粒。采用蛋白质印迹与免疫荧光分析 ,检测到其中 7个基因的表达。除其中一个在细胞核表达外 ,其余 6个只在细胞质中表达 ;其中的 4个基因的表达产物在细胞培养液中可被检测到 ,鉴定为 4个新的分泌蛋白基因。  相似文献   
989.
牛分枝杆菌MPB83基因的原核表达及免疫活性分析   总被引:1,自引:0,他引:1  
利用PCR技术,以牛型分枝杆菌(M.bovis)Vallee菌株的全基因组DNA为模板,扩增出了一条600bp的MPB83基因片段,将其克隆至pMD18T载体中,经核苷酸序列测定确证后,KpnI/EcoRI双酶切,然后亚克隆到原核表达载体pET30a的相同酶切位点,构建表达质粒pETMPB83,将鉴定的重组质粒转化大肠杆菌BL21(DE3),IPTG诱导后SDSPAGE检测表达情况,重组质粒pETMPB83在30kDa处有一特异表达带,与预计大小相符。经Ni柱纯化后,Westernblot检测纯化蛋白具有免疫活性,用纯化的该蛋白进行动物(兔)接种制备抗血清,用Westernblot和ELISA检测该抗血清的效价和特异性,结果表明特异性较好。  相似文献   
990.
We (Murphy et al., 2013; Clarke et al., 2015) have recently developed a framework to understand the spatial distribution of fire regimes and plant fire‐response traits at large spatial scales. We integrated a range of data sources to create a continental‐scale overview of Australian pyromes from which to infer pyrogeographic drivers. Gosper et al. (in press) have criticized our approach, based on our misclassification of a vegetation type (eucalypt woodland), with distinct fire regime, in the Coolgardie bioregion of Western Australia. We argue that the intention of our integrative approach was to develop and refine conceptual models of Australian pyrogeography, not to produce a predictive map of fire regimes, and certainly not to guide local‐scale fire management. Like all models, continental‐scale syntheses of pyromes are imperfect, yet they still represent powerful tools for understanding the drivers of the spatial distribution of fire regimes.  相似文献   
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