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71.
胭脂红景天叶片呈胭脂红色,花开红色,具有极强的耐寒性和耐旱性,是优良的城市绿化植物。为了扩大胭脂红景天的应用范围,丰富恶劣生境的绿化材料,本试验对从哈尔滨引种到西藏日喀则表现良好的胭脂红景天进行了生理适应性研究。结果表明,随着栽植时间的延长,胭脂红景天叶片中丙二醛含量逐渐升高,但增加的幅度较小,脯氨酸含量先降低后升高,SOD、POD、CAT等保护酶的活性均呈先升高后降低的趋势。胭脂红景天可以通过增加体内渗透调节物质含量和提高保护酶活性来调节自身的生理代谢,适应日喀则地区高辐射、干旱等条件。  相似文献   
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目的:基于基因拷贝数变异(CNV)区域网络识别神经胶质瘤的重要功能区域。方法:运用独特的计算样本的共相关性值的方法,使CNV数据与基因数据产生联系;基于蛋白质互作关系,在CNV区域与基因之间搭建桥梁,构建CNV区域网络;分析网络拓扑性质,识别出神经胶质瘤的重要功能CNV区域。结果:本文共识别出了11个与神经胶质瘤相关的候选重要功能CNV区域,通过功能注释和通路分析,确认了识别到的区域与神经胶质瘤有重要联系。结论:通过基因与表型之间的联系,利用已知表型基因在同源、功能、互作、结构域上的特征将CNV区域与基因联系起来,通过基因的功能可以了解到CNV区域的功能,对于疾病的预测和诊断有重要的意义。  相似文献   
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目的:探讨左炔诺酮宫内缓释系统(LNG-IUS)联合米非司酮治疗子宫腺肌病的近远期疗效及安全性。方法:将94例子宫腺肌病患者随机分为观察组(47例)和对照组(47例),观察组放置LNG-IUS,同时服用米非司酮,每月1次,疗程为6个月。对照组仅放置LNG-IUS。观察两组疗程结束后、放置LNG-IUS后1、3、5年的临床疗效及不良反应。结果:疗程结束后,观察组和对照组总有效率分别为91.5%,87.2%,差异无统计学意义(P〉0.05);随访期间,观察组的月经期、月经量、月经间期出血时间、不规则阴道流血或点滴出血的发生率均显著低于对照组,差异有统计学意义(P〈0.05);观察组和对照组不良反应的发生率分别为21.3%和25.5%,差异无统计学意义(P〉0.05)。结论:LNG-IUS联合米非司酮治疗子宫腺肌病的近远期疗效确切,可有效减少不规则阴道出血。  相似文献   
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A new specimen of Philydrosaurus proseilus from the Early Cretaceous Chiufotang (Jiufotang) Formation preserves the first complete palate of a monjurosuchid choristodere. As in other choristoderes, the palate of Philydrosaurus is akinetic, extended by a broad contact between the vomer and maxilla, and equipped with multiple batteries of palatal teeth. This specimen provides phylogenetically significant information and clarifies the distribution of many apomorphies within Choristodera. Philydrosaurus is primitive relative to the Neochoristodera in that it exhibits only a moderate degree of posterior displacement of the choanae and retains a relatively large interpterygoid vacuity. However, Philydrosaurus also exhibits several derived features previously considered diagnostic of the Neochoristodera, including establishment of a long midline contact of the pterygoids and development of a distinct nasopalatal trough extending from the choana. The choristodere palate exhibits significant modification of the primitive diapsid condition, including elongation of the vomers, establishment of a vomer–maxilla contact, posterior displacement of the choanae, development of the nasopalatal trough, and reduction of the interpterygoid vacuity.  相似文献   
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Proteins are dynamic entities in cellular solution with functions governed essentially by their dynamic personalities. We review several dynamics studies on serine protease proteinase K and HIV-1 gp120 envelope glycoprotein to demonstrate the importance of investigating the dynamic behaviors and molecular motions for a complete understanding of their structure–function relationships. Using computer simulations and essential dynamic (ED) analysis approaches, the dynamics data obtained revealed that: (i) proteinase K has highly flexible substrate-binding site, thus supporting the induced-fit or conformational selection mechanism of substrate binding; (ii) Ca2+ removal from proteinase K increases the global conformational flexibility, decreases the local flexibility of substrate-binding region, and does not influence the thermal motion of catalytic triad, thus explaining the experimentally determined decreased thermal stability, reduced substrate affinity, and almost unchanged catalytic activity upon Ca2+ removal; (iii) substrate binding affects the large concerted motions of proteinase K, and the resulting dynamic pocket can be connected to substrate binding, orientation, and product release; (iv) amino acid mutations 375 S/W and 423 I/P of HIV-1 gp120 have distinct effects on molecular motions of gp120, facilitating 375 S/W mutant to assume the CD4-bound conformation, while 423 I/P mutant to prefer for CD4-unliganded state. The mechanisms underlying protein dynamics and protein–ligand binding, including the concept of the free energy landscape (FEL) of the protein–solvent system, how the ruggedness and variability of FEL determine protein’s dynamics, and how the three ligand-binding models, the lock-and-key, induced-fit, and conformational selection are rationalized based on the FEL theory are discussed in depth.  相似文献   
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Models of stomatal conductance (gs) are based on coupling between gs and CO2 assimilation (Anet), and it is often assumed that the slope of this relationship (‘g1’) is constant across species. However, if different plant species have adapted to different access costs of water, then there will be differences in g1 among species. We hypothesized that g1 should vary among species adapted to different climates, and tested the theory and its linkage to plant hydraulics using four Eucalyptus species from different climatic origins in a common garden. Optimal stomatal theory predicts that species from sub‐humid zones have a lower marginal water cost of C gain, hence lower g1 than humid‐zone species. In agreement with the theory that g1 is related to tissue carbon costs for water supply, we found a relationship between wood density and g1 across Eucalyptus species of contrasting climatic origins. There were significant reductions in the parameter g1 during drought in humid but not sub‐humid species, with the latter group maintaining g1 in drought. There are strong differences in stomatal behaviour among related tree species in agreement with optimal stomatal theory, and these differences are consistent with the economics involved in water uptake and transport for carbon gain.  相似文献   
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