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1.
China Journal of Chinese Materia Medica ; (24): 1572-1577, 2017.
Article in Chinese | WPRIM | ID: wpr-350146

ABSTRACT

Ranae Oviductus has a high economic and social value, but its adulterants are more numerous, which causes a great confusion to the market. Using DNA bar code technology based on COI sequence for PCR amplification and sequencing of the identified Rana dybowskii, R. chensinensis, R. huanrensis and R. amurensiss, the COI gene database of four species of Rana was established, and comparing the measured sequence with the sequence of GenBank, four kinds of Rana were identified. The MEGA (molecular evolutionary genetics analysis) 7 .0 software was used to calculate the genetic distance of K2P and construct the NJ (neighbor-joining) system cluster tree. The sequence of the four species of Rana measured were clustered into one group with the sequence of the four kinds of Rana downloaded from GenBank, but separated from the two outer groups downloaded from GenBank. The COI gene of the R. dybowskii was likely to have regional differences, however this technique failed to distinguish male and female Rana. The results showed that DNA bar code technology could accurately identify the base of original animal of R. oviductus. It indicates that DNA bar code COI provides a new method for the identification of R. oviductus.

2.
China Journal of Chinese Materia Medica ; (24): 4183-4187, 2016.
Article in Chinese | WPRIM | ID: wpr-272714

ABSTRACT

To identify origin of the medicinal materials Dryopteridis Crassirhizomatis Rhizoma by using the psbA-trnH sequence, the polymerase chain reaction (PCR) amplification and product sequencing of the experimental samples were performed. In order to expand the scope of the study, the psbA-trnH sequences of 8 genera and 3 species were downloaded from GenBank for analysis. DNAMAN 8.0 software was used to show splicing and comparison results of the peak diagrams with analysis of them, and MEGA 6.0 software was to calculate K2P genetic distances and establish clustering tree adjacent genus. The results showed that by using the psbA-trnH sequence, Dryopteridis Crassirhizomatis Rhizoma, its original plant and other easy-confused medicinal materials and plants can be distinguished with each other obviously, with the psbA-trnH sequence of Dryopteridis Crassirhizomatis Rhizoma completely consistent with that of its original plant. Consequently, it is revealed that it's feasible to identify Dryopteridis Crassirhizomatis Rhizoma and its original plant, and separate from its adulterants by means of the psbA-trnH sequence, which can provide more scientific bases for the further study of the identification of the ferny medicinal herbs.

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