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Looking forward to the Future to Meet the Challenge: Research for Rhizosphere Microbes and Mocrobiome of Medicinal Plants
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作者 Chang-xiao Liu 《Chinese Herbal Medicines》 CAS 2017年第3期197-198,共2页
Molecular biology covers a wide scope of problems related to molecular and cell biology including structural and functional genomics, transcriptomics, proteomics, bio- informatics, and biomedicines. Molecular biology ... Molecular biology covers a wide scope of problems related to molecular and cell biology including structural and functional genomics, transcriptomics, proteomics, bio- informatics, and biomedicines. Molecular biology is the study of molecular underpinnings of the processes of replication, transcription, translation, and cell function. The central dogma of molecular biology where genetic material is transcribed into RNA and then translated into proteins, despite being oversimplified, still provides a good starting point for understanding the field. The picture has been revised in light of emerging novel roles for RNA. Increasingly many other areas of biology focus on molecules, either directly or indirectly studying the interactions in their own right. The techniques and methods of molecular biology, such as molecular cloning, polymerase chain reaction, gel electrophoresis, macromolecule blotting and probing, microarray and so on, have been applied in biomedicine and herbal medicines. 展开更多
关键词 of into that have for Research for Rhizosphere Microbes and mocrobiome of Medicinal Plants Looking forward to the Future to Meet the Challenge
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Respiratory flora:The potential biomarker of radiation-induced pulmonary injury
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作者 Hongjuan Guo Lili Wang +4 位作者 Wei Zhu Xiaofei Qi Qi Zhang Yang Jiao Jianping Cao 《Radiation Medicine and Protection》 2022年第1期43-46,共4页
Radiation-induced pulmonary injury is a major dose-limiting toxicity that occurs due to thoracic radiotherapy.And the most widely used high-throughput technology,16S ribosomal RNA sequencing,is adopted for bacterial c... Radiation-induced pulmonary injury is a major dose-limiting toxicity that occurs due to thoracic radiotherapy.And the most widely used high-throughput technology,16S ribosomal RNA sequencing,is adopted for bacterial classification and identification of airway microbiome analysis.In this study,we provide novel insights into the composition pattern and predicted function of the lung microbiome in RIPI rats.Certain genus and species change in a dose-dependent manner,which might be capable of serving as novel bacterial biomarkers,as well as the potential targets for the future diagnosis or treatment of RIPI.In summary,our findings provide a vital reference for RIPI study,and will contribute to investigate the novel therapeutic or preventive management for RIPI. 展开更多
关键词 RIPI mocrobiome 16S rRNA-seq DOSE-DEPENDENT BIOMARKER
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