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In the post-genomics era of contemporary biological research,it is imperative for molecular biologists to survey and utilizebioinformatic algorithms, software tools and databases. Theprosperity of bioinformatic resources in the public domain isevidently an answer to the needs of molecular biologists, whichin return post new challenges and point out to new researchdirections for bioinformaticians,  相似文献   

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目的:利用生物信息学方法对致病菌特有基因进行大规模预测,同时探讨致病菌特有基因与致病菌毒力之间的关系。方法:构建致病性细菌蛋白质序列数据库和非致病性细菌蛋白质序列数据库,利用同源性比对的方法(BlastP工具)对致病菌特有基因进行预测;同时从文献中提取与致病菌毒力紧密相关的毒力因子,构建具有代表性的毒力因子分析库,对预测的致病菌特有基因进行比较分析。结果:在致病菌780310个基因中,预测了致病菌特有基因79166个,约占致病菌总基因的10.15%;预测的致病菌特有基因包含了构建的毒力因子分析库中的大部分毒力基因。结论:预测的致病菌特有基因与致病菌毒力紧密相关,大大减少了进一步在致病菌基因组中鉴定毒力基因时整个基因组的数据量。  相似文献   

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《Endocrine practice》2022,28(10):1091-1099
Phosphate plays a critical and diverse role in human physiology. In addition to its importance in skeletal mineralization, it is essential for energy homeostasis, enzyme function, and cell membrane integrity. These diverse functions of phosphate provide an explanation for the range of symptoms and clinical manifestations observed in patients with both acute and chronic causes of hypophosphatemia. Normal phosphate homeostasis involves several major systems, including the gastrointestinal tract, bones, and kidneys. Phosphate balance is maintained directly and indirectly by 1α,25-dihydroxyvitamin D3, parathyroid hormone, and the osteocyte-derived phosphatonin fibroblast growth factor 23. This review discusses normal phosphate homeostasis, the clinical manifestations and causes of hypophosphatemia, and an approach to establish a diagnosis and appropriate management.  相似文献   

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