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211.
目的: 为探讨新生儿自主呼吸产生机制,前文已对新生儿出生后自主呼吸开始前脐带动静脉氧气和二氧化碳差值进行了人群组间分析;而本部分则对相关信息进行个体化分析。方法: 在产前经所有胎儿父母签署知情同意书,新生儿出生后还没有呼吸之前在脐带动脉和脐带静脉分别连续逐搏取血,仅有3例同时采集到Pua和Puv血液样本进行血气分析测定,计算分析脐带静脉和脐带动脉的异同和动态变化。结果: 虽然准备了数十产妇,但仅有3例同时采集到Pua和Puv血液样本,同一时间的PuvO2显著高于PuaO2P均<0.01),平均相差(24.17±7.09) mmHg;而PuvCO2显著低于PuaCO2P均<0.01),平均相差(-7.67±3.70) mmHg。在同一时间的Puv-uaO2显著高于Puv-uaCO2P<0.05)。结论: 新生儿出生后自主呼吸前,全部氧气供应由脐带静脉运输,只要胎盘开始剥离则新生儿的PuaO2随时间(心跳次数)逐渐降低,当PuaO2达到触发呼吸阈值(最低值)诱发第一次吸气开始其自主呼吸。  相似文献   
212.
阐明中国(未包括香港、澳门特别行政区和台湾地区,下同)2018-2019年流行性腮腺炎(流腮)流行特征和病毒基因特征。对2018-2019年中国流腮流行病学和病毒学监测数据进行描述流行病学和分子流行病学分析。2018-2019年中国流腮年报告发病率分别为18.65/10万和21.48/10万,15岁以下儿童和青少年是我国流腮的高发人群,分别占总病例数的85.30%和82.56%。流腮的流行具有明显的季节性特征。全国各省、自治区、直辖市份均有流腮病例报告,西部和中部地区发病率高于东部地区。2018-2019年共获得160条腮腺炎病毒(Mumps virus,MuV)SH基因序列,其中150条(93.75%)序列鉴定为F基因型MuV,在我国11个省份检测到;10条(6.25%)序列为G基因型MuV,2019年在广东、湖北和新疆3个省份检测到。和我国既往流行MuV代表株相比,2018-2019年流行的F基因型MuV代表株序列在基因亲缘性关系树上相对集中。现阶段我国流腮的流行病学特征未发生明显改变,仍呈现病毒自然流行模式;F基因型作为优势流行基因型,在我国大部分地区持续流行,但毒株的遗传多态性有所降低,这可能和我国实施1剂次腮腺炎疫苗常规免疫策略有关。G基因型MuV主要在我国局部地区流行,但流行范围在逐渐扩大。建议进一步加强两剂次腮腺炎疫苗接种工作,降低我国腮腺炎易感人群。同时持续性开展MuV流行学和病毒学监测工作,为鉴别病毒的来源,确定病毒传播途径和评估腮腺炎疫苗免疫策略奠定重要的基础。  相似文献   
213.
Zhu  Yun  Xu  Baoping  Li  Changchong  Chen  Zhimin  Cao  Ling  Fu  Zhou  Shang  Yunxiao  Chen  Aihuan  Deng  Li  Bao  Yixiao  Sun  Yun  Ning  Limin  Yu  Shuilian  Gu  Fang  Liu  Chunyan  Yin  Ju  Shen  Adong  Xie  Zhengde  Shen  Kunling 《中国病毒学》2021,36(6):1543-1553
Virologica Sinica - Community-acquired pneumonia (CAP) is one of the leading causes of morbidity and mortality in children worldwide. In this study, we aimed to describe the aetiology of viral...  相似文献   
214.
肉牛的性成熟受下丘脑-垂体-卵巢(HPO)轴的调节,但其具体作用机制尚不清楚.为了探讨HPO轴繁殖相关基因和调控机制,采用高通量转录组RNA-seq技术,研究了成年安格斯牛(30个月大)的下丘脑、垂体和卵巢.结果表明,HPO共有18 179个基因在GO(基因本体论)中注释,37 158个基因在KEGG(京都基因百科全书和基因组)中注释,36 645个基因在KOG(KEGG同源数据库)中注释.GO分析表明,HPO富集了8种生殖相关功能,主要是受精、单个组织生殖过程、子宫胚胎发育和雌激素反应.KEGG分析发现,HPO富集300条信号通路(SP),主要是癌症SP和磷脂酰肌醇3激酶蛋白激酶(PI3K-Akt)SP.与生殖有关的SPs共有16条,主要是Notch SP、神经营养素SP、哺乳动物雷帕霉素(mTOR)SP和血管内皮生长因子(VEG F)SP.为今后肉牛繁殖性能的提高、分子育种和同行参考提供了科学依据.  相似文献   
215.
The karst landform in southern China is renowned for its high levels of species diversity and endemism. Globally, karst ecosystems are under threat from unsustainable anthropogenic disturbance and climate changes and are among the most threatened ecosystems worldwide. In this study, we used the typical karst endemic genus in southern China, Primulina Hance, as a model to identify areas within the karst landform with high diversity and to investigate congruence between phylogenetic and species‐based measures of diversity. Using phylogenetic information and species distribution data, we measured geographical patterns of diversity with four metrics: species richness (SR), corrected weighted endemism (CWE), phylogenetic diversity (PD), and phylogenetic endemism (PE). Our results revealed a high spatial congruence among SR, PD, and PE, with hotspot areas identified in the Nanling Mountains (i.e., north Guangdong and northeast Guangxi) and southeast Yungui Plateau (i.e., north and southwest Guangxi), whereas the hotspots of CWE are comparatively uniform throughout the geographic extent. The categorical analysis of neo‐ and paleoendemism identified a pattern of mixed neo‐ and paleoendemism in numerous grid cells, suggesting that karst areas in southern China have acted as both “museums” and “cradles” of plant evolution. Conservation gap analysis of hotspots revealed that the majority of prioritized hotspots (>90%) of the genus are outside of protected areas, therefore indicating the limited effectiveness of national nature reserves for the karst flora. Overall, our results suggest that the karst flora merits more conservation attention and SR can be an effective surrogate to capture PD in conservation planning.  相似文献   
216.
The diversity of axon guidance (AG) receptors reflects gains in complexity of the animal nervous system during evolution. Members of the Roundabout (Robo) family of receptors interact with Slit proteins and play important roles in many developmental processes, including AG and neural crest cell migration. There are four members of the Robo gene family. However, the evolutionary history of Robo family genes remain obscure. We analyzed the distribution of Robo family members in metazoan species ranging in complexity from hydras to humans. We undertook a phylogenetic analysis in metazoans, synteny analysis, and ancestral chromosome mapping in vertebrates, and detected selection pressure and functional divergence among four mammalian Robo paralogs. Based on our analysis, we proposed that the ancestral Robo gene could have undergone a tandem duplication in the vertebrate ancestor; then one round of whole genome duplication events occurred before the divergence of ancestral lamprey and gnathostome, generating four paralogs in early vertebrates. Robo4 paralog underwent segmental loss in the following evolutionary process. Our results showed that Robo3 paralog is under more powerful purifying selection pressure compared with other three paralogs, which could correlate with its unique expression pattern and function. Furthermore, we found four sites under positive selection pressure on the Ig1‐2 domains of Robo4 that might interfere with its binding to Slits ligand. Diverge analysis at the amino acid level showed that Robo4 paralog have relatively greater functional diversifications than other Robo paralogs. This coincides with the fact that Robo4 predominantly functions in vascular endothelial cells but not the nervous system.  相似文献   
217.
218.
Vitamins maintain growth and development in humans, animals, and plants. Because plants serve as essential producers of vitamins, increasing the vitamin contents in plants has become a goal of crop breeding worldwide. Here, we begin with a summary of the functions of vitamins. We then review the achievements to date in elucidating the molecular mechanisms underlying how vitamins are synthesized, transported, and regulated in plants. We also stress the exploration of variation in vitamins by the use of forward genetic approaches, such as quantitative trait locus mapping and genome-wide association studies. Overall, we conclude that exploring the diversity of vitamins could provide new insights into plant metabolism and crop breeding.  相似文献   
219.
Grain size is determined by the size and number of cells in the grain. The regulation of grain size is crucial for improving crop yield; however, the genes and molecular mechanisms that control grain size remain elusive. Here, we report that a member of the detoxification efflux carrier /Multidrug and Toxic Compound Extrusion (DTX/MATE) family transporters, BIG RICE GRAIN 1 (BIRG1), negatively influences grain size in rice (Oryza sativa L.). BIRG1 is highly expressed in reproductive organs and roots. In birg1 grain, the outer parenchyma layer cells of spikelet hulls are larger than in wild-type (WT) grains, but the cell number is unaltered. When expressed in Xenopus laevis oocytes, BIRG1 exhibits chloride efflux activity. Consistent with this role of BIRG1, the birg1 mutant shows reduced tolerance to salt stress at a toxic chloride level. Moreover, grains from birg1 plants contain a higher level of chloride than those of WT plants when grown under normal paddy field conditions, and the roots of birg1 accumulate more chloride than those of WT under saline conditions. Collectively, the data suggest that BIRG1 in rice functions as a chloride efflux transporter that is involved in mediating grain size and salt tolerance by controlling chloride homeostasis.  相似文献   
220.
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