Nitrogen metabolism and secondary metabolism regulation of Atropa belladonna by exogenous NO under NaCl stress.
10.19540/j.cnki.cjcmm.20191104.105
- Author:
Huan-Huan DAI
1
;
Yi YANG
2
;
Yu-Si SHAN
1
;
Xiao HE
1
;
Zheng-Qi XIN
1
;
Neng-Biao WU
1
Author Information
1. Key Laboratory of Eco-environments in Three Gorges Reservoir Region, Ministry of Education, School of Life Science,Southwest University Chongqing 400715, China.
2. Deyang City Lushan Road Primary School Deyang 618000, China.
- Publication Type:Journal Article
- Keywords:
Atropa belladonna;
NaCl stress;
exogenous nitric;
nitrogen metabolism;
tropane alkaloids
- MeSH:
Atropa belladonna/metabolism*;
Hyoscyamine/analysis*;
Nitrogen/metabolism*;
Nitroprusside;
Scopolamine/analysis*;
Secondary Metabolism;
Sodium Chloride;
Stress, Physiological
- From:
China Journal of Chinese Materia Medica
2020;45(2):321-330
- CountryChina
- Language:Chinese
-
Abstract:
Atropa belladonna seedlings were used as experimental materials and cultivated by soil culture method. Different concentrations(0,0.05,0.1,0.2,0.5 mmol·L~(-1))of NO donor sodium nitroprusside(SNP) were sprayed on the leaves. The effects of different concentrations of SNP and different treatment time(4,8,12,16 d) on nitrogen metabolism, secondary metabolite content, precursor content of tropane alkaloid synthesis pathway and expression of key enzyme genes under 100 mmol·L~(-1) NaCl stress were studied. The results showed that with the prolongation of salt stress, the nitrogen metabolism and the accumulation of secondary metabolites of A. belladonna were inhibited to some extent. After treatment with different concentrations of exogenous SNP, the ammonium nitrogen content decreased dramatically, and the contents of nitrate nitrogen, free amino acid, soluble protein and the activities of key enzymes of nitrogen metabolism(NR, GS, GDH) were all greatly improved; the contents of precursor amino acids(ornithine, arginine) and polyamines(Put, Spd, Spm) in the secondary metabolic pathway have increased to varying degrees. The qRT-PCR analysis showed that exogenous SNP treatment can effectively promote the high expression of key enzyme genes PMT, TRⅠ and H6H in the secondary metabolic pathway of A. belladonna, and the production of hyoscyamine and scopolamine were increased notably. In summary, the application of appropriate concentration of SNP can effectively alleviate the inhibition of salt stress on the nitrogen metabolism and secondary metabolism of Atropa belladonna, and enhance its salt tolerance. Overall, 0.1 mmol·L~(-1) and 0.2 mmol·L~(-1) SNP treatment achieved the most remarkable effect.