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Shijia Luo Yanhong He Guogui Ning Jiaqi Zhang Guangying Ma Manzhu Bao 《Trees - Structure and Function》2011,25(6):1063-1071
Dove tree (Davidia involucrate) is a Tertiary relic species endemic to China and is reputed to be a ‘living fossil’ in the plant kingdom. Genetic diversity
and genetic structure of this species were analyzed for its conservation and management, using inter-simple sequence repeat
(ISSR) data obtained from eight populations distributed throughout seven provinces of China. A relatively high level of genetic
diversity, at both population and species levels, was detected using the POPGENE software. Analysis of molecular variance
(AMOVA) revealed a moderate level of among-population variation (i.e., 33.21%). The genetic structure of dove tree was closely
consistent with their isolated topographical distribution region based on the results of the STRUCTURE, POPGENE-UPGMA and
PCA analysis. It is postulated that the relatively high level of genetic diversity has been maintained because of: (a) the
original wild geographical distribution, (b) propagation through outcrossing seeds or root suckers, (c) the longevity of individuals
and (d) the relatively little human disturbance. Genetic drift and restricted gene are important factors affecting genetic
differentiation. There was no significant correlation between geographical distances and a pairwise comparison with genetic
distances, as analyzed by the Mantel test, but the clustering result of genetic diversity was consistent with their isolated
topographical distribution regions. Thus, maintaining the stable special habitats associated with this species is recommended
for the in situ conservation. Furthermore, it is important to develop an effective seed germination system for the maintenance
of an ex situ conservation pool of the germplasm resources. 相似文献
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Yu C Dong M Wu X Li S Huang S Su J Wei J Shen Y Mou C Xie X Lin J Yuan S Yu X Yu Y Du J Zhang S Peng X Xiang M Xu A 《Journal of immunology (Baltimore, Md. : 1950)》2005,174(6):3493-3500
In seeking evidence of the existence of adaptive immune system (AIS) in ancient chordate, cDNA clones of six libraries from a protochordate, the Chinese amphioxus, were sequenced. Although the key molecules such as TCR, MHC, Ig, and RAG in AIS have not been identified from our database, we demonstrated in this study the extensive molecular evidence for the presence of genes homologous to many genes that are involved in AIS directly or indirectly, including some of which may represent the putative precursors of vertebrate AIS-related genes. The comparative analyses of these genes in different model organisms revealed the different fates of these genes during evolution. Their gene expression pattern suggested that the primitive digestive system is the pivotal place of the origin and evolution of the AIS. Our studies support the general statement that AIS appears after the jawless/jawed vertebrate split. However our study further reveals the fact that AIS is in its twilight in amphioxus and the evolution of the molecules in amphioxus are waiting for recruitment by the emergence of AIS. 相似文献
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本文根据吴征镒教授对中国种子植物属分市区类型研究结果,研制出定量化研究区域性种子植物区系的电子计算机程序,应用本程序可完成某区系的分布区类型统计分析,科属组成分析和与其它地区以共有属关系构建的相似性系数的谁知盘中计算,同时可大量节省研究人员的劳动强度和时间,对提高研究水平有一定的效果。 相似文献
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小鼠子宫颈部位输卵管蛋白表达的初步研究 总被引:2,自引:0,他引:2
用RT-PCR及免疫印迹法检测证实小鼠子宫颈粘膜上皮细胞具表达输卵管蛋白的能力,宫颈部所获得的输卵管蛋白转录产物, 310到 714的405bp的cDNA片段经序列测定及blast比较表明与输卵管部位表达的输卵管蛋白完全一致(100%)。小鼠子宫颈输卵管蛋白在动情周期的表达波动情况与输卵管粘膜上皮的类似,其表达于小鼠动情期明显增加。Westernblot显示小鼠子宫颈提取物中存在两种不同分子量(60KD,30KD)的输卵管蛋白。原位杂交结果则提示子宫颈粘膜上皮细胞含丰富的输卵管蛋白mRNA信号。通过"原体中风"实验未发现输卵管蛋白在体外对精子活动有影响,其功能尚须进一步分析。 相似文献
28.
Panyu Yang Yanyan Yang Pin Sun Yu Tian Fang Gao Chen Wang Tingyu Zong Min Li Ying Zhang Tao Yu Zhirong Jiang 《International journal of biological sciences》2021,17(1):32
βII spectrin, the most common isoform of non-erythrocyte spectrin, is a cytoskeleton protein present in all nucleated cells. Interestingly, βII spectrin is essential for the development of various organs such as nerve, epithelium, inner ear, liver and heart. The functions of βII spectrin include not only establishing and maintaining the cell structure but also regulating a variety of cellular functions, such as cell apoptosis, cell adhesion, cell spreading and cell cycle regulation. Notably, βII spectrin dysfunction is associated with embryonic lethality and the DNA damage response. More recently, the detection of altered βII spectrin expression in tumors indicated that βII spectrin might be involved in the development and progression of cancer. Its mutations and disorders could result in developmental disabilities and various diseases. The versatile roles of βII spectrin in disease have been examined in an increasing number of studies; nonetheless, the exact mechanisms of βII spectrin are still poorly understood. Thus, we summarize the structural features and biological roles of βII spectrin and discuss its molecular mechanisms and functions in development, homeostasis, regeneration and differentiation. This review highlight the potential effects of βII spectrin dysfunction in cancer and other diseases, outstanding questions for the future investigation of therapeutic targets. The investigation of the regulatory mechanism of βII spectrin signal inactivation and recovery may bring hope for future therapy of related diseases. 相似文献
29.
Due to extensive bioprospecting efforts of the past and technology factors, there have been questions about drug discovery prospect from untapped species. We analyzed recent trends of approved drugs derived from previously untapped species, which show no sign of untapped drug-productive species being near extinction and suggest high probability of deriving new drugs from new species in existing drug-productive species families and clusters. Case histories of recently approved drugs reveal useful strategies for deriving new drugs from the scaffolds and pharmacophores of the natural product leads of these untapped species. New technologies such as cryptic gene-cluster exploration may generate novel natural products with highly anticipated potential impact on drug discovery. 相似文献
30.
Liu Na Si Yanhong Zhang Ying Guo Shoudong Qin Shucun 《Journal of physiology and biochemistry》2021,77(4):683-694
Journal of Physiology and Biochemistry - Cholesteryl ester transfer protein (CETP) and phospholipid transfer protein (PLTP) belong to the same gene family. Liver-specific expression of CETP... 相似文献