نتایج جستجو برای: lonicera japonica

تعداد نتایج: 8897  

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2006
Dianella G Howarth Michael J Donoghue

Flower symmetry is of special interest in understanding angiosperm evolution and ecology. Evidence from the Antirrhineae (snapdragon and relatives) indicates that several TCP gene-family transcription factors, especially CYCLOIDEA (CYC) and DICHOTOMA (DICH), play a role in specifying dorsal identity in the corolla and androecium of monosymmetric (bilateral) flowers. Studies of rosid and asterid...

2013
Liu He Xiaolan Xu Ying Li Chunfang Li Yingjie Zhu Haixia Yan Zhiying Sun Chao Sun Jingyuan Song Yu’an Bi Juan Shen Ruiyang Cheng Zhenzhong Wang Wei Xiao Shilin Chen

BACKGROUND Lonicera japonica Thunb. is a plant used in traditional Chinese medicine known for its anti-inflammatory, anti-oxidative, anti-carcinogenic, and antiviral pharmacological properties. The major active secondary metabolites of this plant are chlorogenic acid (CGA) and luteoloside. While the biosynthetic pathways of these metabolites are relatively well known, the genetic information av...

2017
Xiwu Qi Xu Yu Daohua Xu Hailing Fang Ke Dong Weilin Li Chengyuan Liang

BACKGROUND Lonicera japonica is an important medicinal plant that has been widely used in traditional Chinese medicine for thousands of years. The pharmacological activities of L. japonica are mainly due to its rich natural active ingredients, most of which are secondary metabolites. CYP450s are a large, complex, and widespread superfamily of proteins that participate in many endogenous and exo...

Journal: :Proteomics 2013
Lin Zhang Ximin Li Wen Zheng Zhirong Fu Wenting Li Luyu Ma Ke Li Lianli Sun Jingkui Tian

A previous study showed that the contents of caffeoylquinic acids and iridoids, the major bioactive components in the postharvest Lonicera japonica Thunb., were induced by enhanced ultraviolet (UV)-A or UV-B irradiation. To clarify the UV-responsive key enzymes in the bioactive metabolites biosynthetic pathway and the related plant defense mechanism in L. japonica, 2DE in combination with MALDI...

2016
Qiu-Yun Jiang Feng Zhuo Shi-Hui Long Hai-Di Zhao Dan-Jing Yang Zhi-Hong Ye Shao-Shan Li Yuan-Xiao Jing

A greenhouse pot experiment was conducted to study the impact of arbuscular mycorrhizal fungi--Glomus versiforme (Gv) and Rhizophagus intraradices (Ri) on the growth, Cd uptake, antioxidant indices [glutathione reductase (GR), ascorbate peroxidase (APX), superoxide dismutase (SOD), catalase (CAT), ascorbate (ASA), glutathione (GSH) and malonaldehyde (MDA)] and phytochelatins (PCs) production of...

Journal: :The British journal of nutrition 2013
Jae-Woo Park Hyunsu Bae Gihyun Lee Beom-Gi Hong Hye Hyun Yoo Sung-Jig Lim Kyungjin Lee Jinsung Kim Bongha Ryu Beom-Joon Lee Jinhyun Bae Hyejung Lee Youngmin Bu

Inflammatory bowel diseases (IBD) are chronically relapsing inflammatory disorders of the intestine. Although some therapeutic agents, including steroids, are available for the treatment of IBD, these agents have limited use. Therefore, dietary supplements have emerged as possible interventions for IBD. Japanese honeysuckle flower, the flower of Lonicera japonica, is a well-known dietary supple...

2007
N. W. WAIPARA

Japanese honeysuckle is rapidly increasing as a weed throughout most of the North Island and northern South Island of New Zealand. A classical biological control programme was initiated in 2004–2005 with a survey of the natural invertebrate fauna and pathogens associated with the weed in New Zealand. The honeysuckle was being attacked by a diverse range of native and introduced invertebrates. B...

Journal: :The Biochemical journal 1952
T W GOODWIN

Adamson, D. W. (1939). J. chem. Soc. p. 1564. Borsook, H. & Dubnoff,J. W. (1939). J. biol. Chem. 131, 163. Braunstein, A. E., Nemchinskaya, V. L. & Vilenkina, G. J. (1947). Biochim. Biophy8. Acta, 1, 281. Consden, R., Gordon, A. H. & Martin, A. J. P. (1947). Biochem. J. 41, 590. Dekker, C. A., Stone, D. & Fruton, J. S. (1949). J. biol. Chem. 181, 179. Dent, C. E. (1948). Biochem. J. 43, 169. Do...

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