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1.
China Journal of Chinese Materia Medica ; (24): 204-209, 2015.
Article Dans Chinois | WPRIM | ID: wpr-305322

Résumé

Siraitia grosvenorii is a traditional Chinese medicine also as edible food. This study selected six candidate reference genes by real-time quantitative PCR, the expression stability of the candidate reference genes in the different samples was analyzed by using the software and methods of geNorm, NormFinder, BestKeeper, Delta CT method and RefFinder, reference genes for S. grosvenorii were selected for the first time. The results showed that 18SrRNA expressed most stable in all samples, was the best reference gene in the genetic analysis. The study has a guiding role for the analysis of gene expression using qRT-PCR methods, providing a suitable reference genes to ensure the results in the study on differential expressed gene in synthesis and biological pathways, also other genes of S. grosvenorii.


Sujets)
Cucurbitaceae , Génétique , ARN ribosomique 18S , Génétique , Réaction de polymérisation en chaine en temps réel , Méthodes , Normes de référence
2.
China Journal of Chinese Materia Medica ; (24): 3567-3572, 2015.
Article Dans Chinois | WPRIM | ID: wpr-237673

Résumé

To explore the growth and development and analyze the quality of the parthenocarpy fruit induced by exogenous hormones of Siraitia grosvenorii. the horizontal and vertical diameter, volume of the fruit were respectively measured by morphological and the content of endogenous hormones were determined by ELISA. The size and seed and content of mogrosides of mature fruit were determined. The results showed that the fruit of parthenocarpy was seedless and its growth and development is similar to the diploid fruit by hand pollination and triploid fruit by hand pollination or hormones. But the absolute value of horizontal and vertical diameter, volume of parthenocarpy fruit was less than those of fruit by hand pollination, while triploid was opposite. The content of IAA, ABA and ratio of ABA/GA was obviously wavy. At 0-30 d the content of IAA and ABA of parthenocarpy fruit first reduced then increased, content of IAA and GA parthenocarpy fruit was higher than that of fruit by hand pollination. Mogrosides of parthenocarpy fruit was close to pollination fruit. Hormones can induce S. grosvenorii parthenocarpy to get seedless fruit and the fruit shape and size and quality is close to normal diploid fruit by hand pollination and better than triploid fruit by hormone or hand pollination.


Sujets)
Cucurbitaceae , Chimie , Génétique , Diploïdie , Fruit , Chimie , Génétique , Facteur de croissance végétal , Pharmacologie
3.
Acta Pharmaceutica Sinica ; (12): 115-123, 2014.
Article Dans Chinois | WPRIM | ID: wpr-245092

Résumé

Total RNA was isolated from Siraitia grosvenorii fruit by the method of modified Trizol, according to S. grosvenorii fruit characteristics of rich phenols, polysaccharide, oil and proteins. The OD260/280, OD260/230, RNA integrity (RIN) and yield of the total RNA with this method were 2.01, 2.02, 9.50 and 260 mirog.g-1, respectively. The open reading frame (ORF) of dehydroascorbate reductase (DHAR), named as SgDHAR, was cloned by rapid amplification of cDNA ends (RACE) and RT-PCR method from S. grosvenorii. The GenBank accession number for this gene is KC907731. The SgDHAR gene contains a full-length cDNA of 1,252 bp including ORF of 819 bp and encodes a predicted protein of 272 amino acids. The molecular mass is 30.217 7 kD and the isoelectric point is 8.76. Homology comparison showed that it shared 87% nucleotide sequence homology with Cucumis sativus. Expression patterns using qRT-PCR analysis showed that SgDHAR was mainly expressed in fruit and stem, followed by flower, and was lowest in root, while the expression level was 6.83 times in triploid. T than that in diploid. Therefore, SgDHAR gene may be involved in abortion of triploid seedless S. grosvenorii.


Sujets)
Séquence d'acides aminés , Séquence nucléotidique , Clonage moléculaire , Cucurbitaceae , Chimie , Génétique , ADN complémentaire , Génétique , Fleurs , Chimie , Génétique , Fruit , Chimie , Génétique , Conformation moléculaire , Cadres ouverts de lecture , Oxidoreductases , Génétique , Métabolisme , Phylogenèse , Racines de plante , Chimie , Génétique , Tiges de plante , Chimie , Génétique , Plantes médicinales , Chimie , Génétique , Structure secondaire des protéines , ARN des plantes
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