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1.
Zhongguo Zhong Yao Za Zhi ; 47(15): 4048-4054, 2022 Aug.
Article in Chinese | MEDLINE | ID: mdl-36046894

ABSTRACT

Light is the main source for plants to obtain energy.Asarum forbesii is a typical shade medicinal plant, which generally grows in the shady and wet place under the bushes or beside the ditches.It can grow and develop without too much light intensity.This experiment explores the effects of shading on the growth, physiological characteristics and energy metabolism of A.forbesii, which can provide reference and guidance for its artificial planting.In this experiment, A.forbesii was planted under 80%, 60%, 40%, 20% and no shade.During the vigorous growth period, the photosynthetic physiological characteristics such as fluorescence parameters, photosynthetic parameters, photosynthetic pigment content and ultrastructure, as well as the content of mitochondrial electron transport chain(ETC) synthase and nutrients were measured.The results showed that the photosynthetic pigment content, chlorophyll fluorescence parameters and net photosynthesis rate(P_n) decreased with the decrease of shading.Under 20%-40% shading treatment, the plants had damaged ultrastructure, expanded and disintegrated chloroplast, disordered stroma lamella and grana lamella, and increased osmiophi-lic granules and starch granules.The activities of nicotinamide adenine dinucleotide dehydrogenase(NADH), succinate dehydrogenase(SDH), cytochrome C oxidoreductase(CCO) and adenosine triphosphate(ATP) synthasewere positively related to light intensity.With the reduction of shading, the content of total sugar and protein in nutrients increased first and then decreased, and the content was the highest under 60% shade.In conclusion, under 60%-80% shading treatment, the chloroplast and mitochondria had more complete structure, faster energy metabolism, higher light energy-conversion efficiency, better absorption and utilization of light energy and more nutrient synthesis, which was more suitable for the growth and development of A.forbesii.


Subject(s)
Asarum , Chlorophyll/metabolism , Chloroplasts , Energy Metabolism , Photosynthesis/physiology , Plant Leaves/metabolism
2.
Zhongguo Zhong Yao Za Zhi ; 47(12): 3192-3197, 2022 Jun.
Article in Chinese | MEDLINE | ID: mdl-35851111

ABSTRACT

According to the Chinese Pharmacopoeia(2020 edition), Eupolyphaga Steleophaga is prepared from female Eupolyphaga sinensis. To explore the quality difference between male and female E. sinensis, the present study determined indexes in the Chinese Pharmacopoeia, anticoagulant activity, and content of primary metabolites, amino acids, and trace elements in male and female E. sinensis before and after sexual maturity. The results showed that the content of ash, water, extract, and aflatoxin of the larvae and female adults of E. sinensis met the Chinese Pharmacopoeia standards, while the content of ash and extract of male adults failed to meet the standards. After sexual maturity, the content of water-soluble proteins, crude fat, and extract of female E. sinensis was higher than that of the other three groups(P<0.05). Although the content of total protein, total amino acid(TAA), essential amino acid(EAA), non-essential amino acid(NEAA), branched-chain amino acid(BCAA), functional amino acid(FAA), and delicious amino acid(DAA) of male adults was higher than that of the other groups(P<0.05), the anticoagulant activity was the weakest(P<0.05). Before sexual maturity, the content of Fe in E. sinensis larvae was significantly higher than that in adults(P<0.05). The content of K and Mg in female larvae was the highest, while the content of Ca was the lowest(P<0.05). The content of Cu in male adults was higher than that in the other three groups(P<0.05). In conclusion, except for male adults, the larvae and female adults of E. sinensis meet the Chinese Pharmacopoeia standards. There is no difference in the internal quality of male and female E. sinensis larvae. It is recommended to collect female adults as much as possible. Male adults are rich in proteins and amino acids with high fibrinolytic activities, which can be developed in the future.


Subject(s)
Cockroaches , Amino Acids , Animals , Anticoagulants , Cockroaches/chemistry , Female , Male , Nutrients , Plant Extracts , Water
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