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41.
Distinguishing things from beings, or matters from lives, is a fundamental question. Extending E. Schr?dinger's neg-entropy and I. Prigogine's dissipative structure, we propose a chemical kinetic view that the earliest "live" process is embedded essentially in a special interaction between a pair of specific components under a particular, corresponding environmental conditions. The interaction exists as an inter-molecular-force-bond complex(IMFBC) that couples two separate chemical processes: one is the spontaneous formation of the IMFBC driven by a decrease of Gibbs free energy as a dissipative process; while the other is the disassembly of the IMFBC driven thermodynamically by free energy input from the environment. The two chemical processes coupled by the IMFBC originated independently and were considered non-living on Earth, but the IMFBC coupling of the two can be considered as the earliest form of metabolism: the first landmark on the path from things to a being. The dynamic formation and disassembly of the IMFBC, as a composite individual, follows a principle designated as "… structure for energy for structure for energy…", the cycle continues; and for short it will be referred to as "structure for energy cycle". With additional features derived from this starting point, the IMFBC-centered "live" process spontaneously evolved into more complex living organisms with the characteristics currently known. 相似文献
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Nucleolin mediated pro‐angiogenic role of Hydroxysafflor Yellow A in ischaemic cardiac dysfunction: Post‐transcriptional regulation of VEGF‐A and MMP‐9 下载免费PDF全文
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The 3′ untranslated region (3′UTR) of hepatitis C virus (HCV) messenger RNA stimulates viral translation by an undetermined mechanism. We identified a high affinity interaction, conserved among different HCV genotypes, between the HCV 3′UTR and the host ribosome. The 3′UTR interacts with 40S ribosomal subunit proteins residing primarily in a localized region on the 40S solvent-accessible surface near the messenger RNA entry and exit sites. This region partially overlaps with the site where the HCV internal ribosome entry site was found to bind, with the internal ribosome entry site-40S subunit interaction being dominant. Despite its ability to bind to 40S subunits independently, the HCV 3′UTR only stimulates translation in cis, without affecting the first round translation rate. These observations support a model in which the HCV 3′UTR retains ribosome complexes during translation termination to facilitate efficient initiation of subsequent rounds of translation. 相似文献
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Mei-Ling Bai Daniel Schmidt Eckhard Gottschalk Michael Mühlenberg 《Journal of Ornithology》2009,150(1):255-263
We studied the nest site selection and distribution pattern at landscape level of the German Osprey population, and demonstrated
how to test the predictions of the ideal free distribution theory and its derivatives on such an expanding population. Information
about the location and breeding success of each Osprey nest site between 1995 and 2005 was collected through a long-term monitoring
programme. Data of land cover types were acquired from the administrations of each federal state and the CORINE Land Cover
database. The results showed that Ospreys preferred landscapes with more water bodies and forests. Such sites were also occupied
earlier and had higher local population density. However, in the study period of 11 years, there was a gradual shift from
forest-dominated landscapes to agricultural land-dominated landscapes. The breeding success increased over time, with no difference
in the breeding success between pairs nesting on trees and poles, whereas there was higher breeding success at nest sites
surrounded by more agricultural land and less forest. The more efficient foraging in eutrophic lakes in agricultural landscapes
was the most likely cause for the higher breeding success. The distribution pattern of the Ospreys did not match the resource
allocation, which deviated from the models tested. We suggested that the proximate cues used for nest site selection mismatched
site quality due to anthropogenic environmental changes. 相似文献
49.
全球气候变暖,气温上升的趋势逐步被众人接受,而青藏高原这一独特地理单元的生态系统对气候变暖十分敏感.为更好地了解气候变暖对青藏高原牧草品质的影响,利用大板山北坡3 200~3 800 m的海拔梯度,以温度为主要影响因子,用海拔高度不同造成的温差模拟全球变暖带来的升温效应,研究气候变暖对青藏高原牧草营养含量及其体外消化率的影响.针对羊茅(Festuca ovina)、早熟禾(Poa annua)、草(Koeleria cristata)、矮嵩草(Kobresia humilis)和黑褐苔草 (Carex alrofusca) 5种生长在不同海拔梯度的高原牧草中酸性洗涤纤维(ADF)、木质素(ADL)、粗蛋白(CP)、粗脂肪(EE)、无氮浸出物(NFE)、灰分等营养含量及其经绵羊瘤胃液培养后的体外消化率差异,经过1999和2000年两年的测定分析,结果表明:随着温度升高,牧草CP、EE和NFE的百分含量都呈现降低的趋势;牧草ADF和ADL百分含量与温度存在正相关关系,随着温度升高牧草ADF、ADL百分含量都呈增加的趋势;牧草体外消化率与牧草生长的环境温度存在负相关关联,随着温度升高牧草体外消化率呈降低趋势.模拟研究表明,就温度这一重要环境因素而言,未来气候变暖尤其是夜间温度的升高引起青藏高原牧草营养品质的变化,牧草CP、EE、NFE含量的降低,中性洗涤纤维(NDF)、ADL含量的增加,牧草消化率降低,从而不利于反刍动物对牧草的消化利用. 相似文献
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以质粒pMCB30为模板,扩增GFP基因,连接到载体pCMBIA2300-35S-OCS上,构建过量表达载体p35S:GFP,将其转入农杆菌GV3101.通过农杆菌介导法将p35S:GFP载体分别转入新疆特色植物小拟南芥和拟南芥中.T0代经含有卡那霉素的1/2MS培养基筛选,获得了T1代转基因小拟南芥2株,T1代转基因拟南芥9株.通过激光共聚焦显微镜观察,在转基因小拟南芥和拟南芥的根尖细胞中均可检测到GFP绿色荧光蛋白;对转基因植株进行PCR扩增,均可检测到GFP基因,表明GFP基因已成功转入小拟南芥和拟南芥中.该研究建立了小拟南芥的遗传转化体系,为进一步利用GFP基因和进一步研究小拟南芥的功能基因奠定基础. 相似文献