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1.
BMC Plant Biol ; 23(1): 242, 2023 May 08.
Artículo en Inglés | MEDLINE | ID: mdl-37150815

RESUMEN

BACKGROUND: Ophiopogon japonicus, mainly planted in Sichuan (CMD) and Zhejiang (ZMD) province in China, has a lengthy cultivation history. During the long period of domestication, the genetic diversity of cultivated O. japonicus has substantially declined, which will affect the population continuity and evolutionary potential of this species. Therefore, it is necessary to clarify the phylogeography of cultivated O. japonicus to establish a theoretical basis for the utilization and conservation of the genetic resources of O. japonicus. RESULT: The genetic diversity and population structure of 266 O. japonicus individual plants from 23 sampling sites were analyzed based on 4 chloroplast DNA sequences (atpB-rbcL, rpl16, psbA-trnH and rpl20-5'rps12) to identify the effects of domestication on genetic diversity of cultivars and determine their geographic origins. The results showed that cultivated O. japonicus and wild O. japonicus had 4 and 15 haplotypes respectively. The genetic diversity of two cultivars (Hd = 0.35700, π = 0.06667) was much lower than that of the wild populations (Hd = 0.76200, π = 0.20378), and the level of genetic diversity in CMD (Hd = 0.01900, π = 0.00125) was lower than that in ZMD (Hd = 0.06900, π = 0.01096). There was significant difference in genetic differentiation between the cultivated and the wild (FST = 0.82044), especially between the two cultivars (FST = 0.98254). This species showed a pronounced phylogeographical structure (NST > GST, P < 0.05). The phylogenetic tree showed that the genetic difference between CMD and ZMD was not enough to distinguish the cultivars between the two producing areas by using O. amblyphyllus Wang et Dai as an outgroup. In addition, both CMD and ZMD have a closer relationship with wild populations in Sichuan than that in Zhejiang. The results of the TCS network and species distribution model suggested that the wild population TQ located in Sichuan province could serve as the ancestor of cultivated O. japonicus, which was supported by RASP analysis. CONCLUSION: These results suggest that cultivated O. japonicus has experienced dramatic loss of genetic diversity under anthropogenic influence. The genetic differentiation between CMD and ZMD is likely to be influenced by founder effect and strong artificial selection for plant traits. It appears that wild populations in Sichuan area are involved in the origin of not only CMD but also ZMD. In addition, we also raise some suggestions for planning scientific strategies for resource conservation of O. japonicus based on its genetic diversity and population structure.


Asunto(s)
ADN de Cloroplastos , Ophiopogon , ADN de Cloroplastos/genética , Filogeografía , Filogenia , Ophiopogon/química , Ophiopogon/genética , Haplotipos/genética , Variación Genética
2.
J Ethnopharmacol ; 261: 113134, 2020 Oct 28.
Artículo en Inglés | MEDLINE | ID: mdl-32668322

RESUMEN

ETHNOPHARMACOLOGICAL RELEVANCE: Ophiopogonis Radix (Maidong), derived from the dried root tuber of Ophiopogon japonicus (Thunb.) Ker Gawl., has been widely used in the treatment of chronic inflammatory and cardiovascular diseases. However, Ophiopogonis Radix is often adulterated with some species because of morphological similarities. Adulterants circulating in herbal markets are a latent threat to the clinical safety and consumers' interest. AIM OF THE STUDY: We aimed to develop a nucleotide signature for identification of Ophiopogonis Radix and its Chinese patent medicines. MATERIALS AND METHODS: A total of 255 ITS2 sequences representing 39 species and 4 varieties were used to develop a nucleotide signature of Ophiopogonis Radix. The nucleotide signature was used to investigate 17 commercial crude drugs and eight batches of Chinese patent medicines. RESULTS: A 69 bp nucleotide signature unique to Ophiopogonis Radix was found. The survey revealed that 2 of 17 crude drug samples were adulterants detected as Liriopes Radix (Shanmaidong). Fortunately, no adulterants were detected in the eight batches of Chinese patent medicines. CONCLUSIONS: The newly developed nucleotide signature could be efficiently applied to identify Ophiopogonis Radix and its Chinese patent medicines, aiding in the authentication, quality control, and supervision of processed products in herbal markets.


Asunto(s)
ADN de Plantas/genética , Contaminación de Medicamentos , Medicamentos Herbarios Chinos/aislamiento & purificación , Medicina Tradicional China , Nucleótidos/aislamiento & purificación , Ophiopogon/química , Ophiopogon/genética , Tubérculos de la Planta , Control de Calidad
3.
Int J Biol Sci ; 16(3): 396-407, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32015677

RESUMEN

As the most frequent cause of cancer-related death worldwide, lung cancer is closely related to inflammation. The interaction between tumor cells and inflammatory cells promotes tumor development and metastasis. During tumor development, vascular endothelial cells form the most important barrier to prevent tumor cell migration to the blood and tissue. Increased vascular permeability provides favorable conditions for the migration of tumor cells, and endothelial tight junctions are an important component of the vascular barrier. Protein kinase C δ is involved in the occurrence of non-small cell lung cancer and regulates vascular permeability and tight junction protein expression. Src kinase was reported to play an important role in TNF-α-induced endothelial inflammation. Ophiopogon Saponin C1 is a new chemical compound isolated from Liriope muscari, but its pharmacological activities have not been fully elucidated. Therefore, we tested the protective effects of C1 on endothelial permeability in a model of TNF-α-induced endothelial inflammation by transendothelial electrical resistance and sodium fluorescein assays and verified these results in a nude mouse model of experimental pulmonary adenocarcinoma metastasis. We further elucidated the mechanism of C1, which was based on the PKCδ and Src proteins, by Western blotting. C1 can inhibit lung cancer in vivo, regulate the level of plasma inflammation in tumor-bearing mice, and protect the pulmonary vascular barrier against injury induced by cancer. It was investigated the expression and distribution of the TJ index protein ZO-1 in mouse vascular endothelium and HUVECs and found that C1 could inhibit the degradation and breakage of the ZO-1 protein. Related signaling experiments confirmed that C1 can inhibit TNF-α and activation of PKCδ and Src kinase. This study laid the foundation for further analysis of new drugs with clear mechanisms and independent intellectual property rights of traditional Chinese medicines.


Asunto(s)
Neoplasias Pulmonares/metabolismo , Ophiopogon/metabolismo , Saponinas/metabolismo , Saponinas/uso terapéutico , Células A549 , Animales , Western Blotting , Carcinoma de Pulmón de Células no Pequeñas , Endotelio Vascular/efectos de los fármacos , Endotelio Vascular/metabolismo , Técnica del Anticuerpo Fluorescente , Células Endoteliales de la Vena Umbilical Humana , Humanos , Inmunohistoquímica , Neoplasias Pulmonares/tratamiento farmacológico , Neoplasias Pulmonares/genética , Masculino , Ratones , Ratones Desnudos , Ophiopogon/genética , Saponinas/genética , Transducción de Señal/efectos de los fármacos , Transducción de Señal/genética , Uniones Estrechas/efectos de los fármacos , Uniones Estrechas/genética , Uniones Estrechas/metabolismo , Factor de Necrosis Tumoral alfa/farmacología , Proteína de la Zonula Occludens-1/metabolismo
4.
Planta ; 243(2): 321-35, 2016 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-26411727

RESUMEN

MAIN CONCLUSION: A combination of unique EPSPS structure and increased gene copy number and expression contribute to natural glyphosate tolerance in three lilyturf species. A few plants are naturally tolerant to glyphosate, the most widely used non-selective herbicide worldwide. Here, the basis for natural tolerance to glyphosate in three lilyturf species, Ophiopogon japonicus (OJ), Liriope spicata (LS), and Liriope platyphylla (LP), is characterized. These species tolerate glyphosate at about five times the commercially recommended field dose. They share three unique amino acids in their 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) that affect glyphosate binding. These correspond to Asp71Met, Ala112Ile, and Val201Met amino acid variations compared to 231 other published plant EPSPS amino acid sequences. There was also a common deletion at 91 of a highly conserved glutamic acid. Glyphosate-treated lilyturf plants accumulated little shikimic acid but had significantly higher levels of EPSPS mRNA than initially expressed in the control. The IC50 of LsEPSPS was 14.0 µM compared to the 5.1 µM of Arabidopsis thaliana. The higher K m and K i values of LsEPSPS kinetics showed that LsEPSPS had lower substrate binding affinity to glyphosate. Overexpression of LsEPSPS in the recombinant E. coli BL21 (DE3) strain enhanced its tolerance to glyphosate. Both OJ and LS had two copies of the EPSPS gene, while LP had three copies. Therefore, a combination of unique EPSPS structure and increased gene copy number and expression contribute to natural glyphosate tolerance in the three lilyturf species.


Asunto(s)
3-Fosfoshikimato 1-Carboxiviniltransferasa/química , Glicina/análogos & derivados , Liriope (Planta)/enzimología , Ophiopogon/enzimología , Proteínas de Plantas/química , 3-Fosfoshikimato 1-Carboxiviniltransferasa/metabolismo , Secuencia de Aminoácidos , Sustitución de Aminoácidos , Sitios de Unión , Clonación Molecular , Glicina/farmacología , Resistencia a los Herbicidas/genética , Liriope (Planta)/efectos de los fármacos , Liriope (Planta)/genética , Modelos Moleculares , Datos de Secuencia Molecular , Ophiopogon/efectos de los fármacos , Ophiopogon/genética , Proteínas de Plantas/metabolismo , Estructura Terciaria de Proteína , ARN Mensajero/metabolismo , Alineación de Secuencia , Análisis de Secuencia de Proteína , Estrés Fisiológico , Glifosato
5.
Genet Mol Res ; 11(3): 2987-96, 2012 Aug 29.
Artículo en Inglés | MEDLINE | ID: mdl-22653648

RESUMEN

The development of DNA markers that can closely discriminate between Liriope and Ophiopogon species is vital for efficient and accurate identification of these species, and to ensure the quality, safety, and efficacy of medicines made from these plants. We developed species-specific molecular markers for these two genera. Forty RAPD primers were tested to detect polymorphism; species-specific RAPD bands were gel-purified, cloned, and sequenced. Primers for sequence-characterized amplified regions (SCARs) were then designed, based on nucleotide sequences of specific RAPD primers. SCAR markers SA06 and SB05, specific to Ophiopogon japonicus, amplified 460- and 553-bp DNA fragments, respectively. The marker SA12 amplified a 485-bp fragment specific to Liriope platyphylla. This is the first report of a species-specific SCAR marker for this group. These markers will be useful for rapid identification of closely related Liriope and Ophiopogon species.


Asunto(s)
Liriope (Planta)/genética , Ophiopogon/genética , Plantas Medicinales/genética , Reacción en Cadena de la Polimerasa/métodos , Polimorfismo Genético , Secuencia de Bases , Clonación Molecular , ADN de Plantas/genética , ADN de Plantas/aislamiento & purificación , Marcadores Genéticos , Genoma de Planta/genética , Datos de Secuencia Molecular , Nucleótidos/genética , Especificidad de Órganos/genética , Técnica del ADN Polimorfo Amplificado Aleatorio , Análisis de Secuencia de ADN , Especificidad de la Especie
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