Can Electrochemical Sensors Be Used for Identification and Phylogenetic Studies in Lamiaceae?
暂无分享,去创建一个
Shichao Zhao | Yuhong Zheng | Fei Chen | Li Fu | Da Wang | Dongling Li | Yonghua Gu | Shichao Zhao | Yuhong Zheng | L. Fu | Fei Chen | Yonghua Gu | Da Wang | Dongling Li
[1] V. Lanzotti,et al. Corn poppy, Papaver rhoeas L.: a critical review of its botany, phytochemistry and pharmacology , 2020, Phytochemistry Reviews.
[2] R. Nicoletti,et al. Phylogenetic Characterization of Botryosphaeria Strains Associated with Asphondylia Galls on Species of Lamiaceae , 2020 .
[3] I. Novak,et al. Voltammetry of Immobilized Particles of Cannabinoids , 2013 .
[4] J. Galindo,et al. Evolution and current status of ecological phytochemistry. , 2007, Phytochemistry.
[5] B. Drew,et al. Phylogeny and historical biogeography of Isodon (Lamiaceae): rapid radiation in south-west China and Miocene overland dispersal into Africa. , 2014, Molecular phylogenetics and evolution.
[6] R. Boukherroub,et al. A green and sensitive guanine-based DNA biosensor for idarubicin anticancer monitoring in biological samples: A simple and fast strategy for control of health quality in chemotherapy procedure confirmed by docking investigation. , 2021, Chemosphere.
[7] S. Yusuf,et al. Phytochemistry and proximate composition of root, stem bark, leaf and fruit of desert date, Balanites aegyptiaca , 2018, The Journal of Phytopharmacology.
[8] B. Drew,et al. The South American radiation of Lepechinia (Lamiaceae): phylogenetics, divergence times and evolution of dioecy , 2013 .
[9] B. Drew,et al. Phylogenetics, biogeography, and staminal evolution in the tribe Mentheae (Lamiaceae). , 2012, American journal of botany.
[10] Z. Li,et al. Electroanalytical study of infrageneric relationship of Lagerstroemia using glassy carbon electrode recorded voltammograms , 2020 .
[11] Cheng‐Te Lin,et al. Electrochemical Voltammogram Recording for Identifying Varieties of Ornamental Plants , 2020, Micromachines.
[12] Asad Ullah,et al. Silene conoidea L.: A Review on its Systematic, Ethnobotany and Phytochemical profile , 2019, Plant Science Today.
[13] R. Bos,et al. The origin of mentha — gracilis (Lamiaceae). II. essential oils , 1991, Economic Botany.
[14] A. Yu,et al. Early sex determination of Ginkgo biloba based on the differences in the electrocatalytic performance of extracted peroxidase. , 2021, Bioelectrochemistry.
[15] A. Yu,et al. Infrageneric phylogenetics investigation of Chimonanthus based on electroactive compound profiles. , 2020, Bioelectrochemistry.
[16] Huaiwei Zhang,et al. Electrochemical Sex Determination of Dioecious Plants Using Polydopamine-Functionalized Graphene Sheets , 2020, Frontiers in Chemistry.
[17] D. Lincoln,et al. OIL COMPOSITION OF MENTHA AQUATICA × M. SPICATA F1 HYBRIDS IN RELATION TO THE ORIGIN OF X M. PIPERITA , 1972 .
[18] Yixi Xie,et al. Influence of Bovine Serum Albumin-Flavonoid Interaction on the Antioxidant Activity of Dietary Flavonoids: New Evidence from Electrochemical Quantification , 2018, Molecules.
[19] B. Drew,et al. The Chloroplast Genome of Salvia: Genomic Characterization and Phylogenetic Analysis , 2020, International Journal of Plant Sciences.
[20] L. Fu,et al. Embedding leaf tissue in graphene ink to improve signals in electrochemistry-based chemotaxonomy , 2018, Electrochemistry Communications.
[21] I. Huybrechts,et al. Measuring Dietary Botanical Diversity as a Proxy for Phytochemical Exposure , 2021, Nutrients.
[22] Yuhong Zheng,et al. Biometric Identification of Taxodium spp. and Their Hybrid Progenies by Electrochemical Fingerprints , 2021, Biosensors.
[23] Yue Zhao,et al. Molecular and morphological evidence for a new species of Isodon (Lamiaceae) from southern China , 2020, Plant diversity.
[24] L. Alice,et al. Phylogenetics of Mentha (Lamiaceae): Evidence from Chloroplast DNA Sequences , 2004 .
[25] Yucheng Zhao,et al. The complete chloroplast genome of a Chinese medicinal plant, Peristrophe japonica (Thunb.) Bremek. (Lamiales: Acanthaceae) from Nanjing, China , 2021, Mitochondrial DNA. Part B, Resources.
[26] S. Ding,et al. Identification of medicinal herbs in Asteraceae and Polygonaceae using an electrochemical fingerprint recorded using screen-printed electrode , 2021, Journal of Herbal Medicine.
[27] H. Kuang,et al. Phytochemistry and pharmacology of genus Ephedra. , 2018, Chinese journal of natural medicines.
[28] F. Sawicki,et al. L'analyse localisée du politique , 1989 .
[29] T. Karpiński. Essential Oils of Lamiaceae Family Plants as Antifungals , 2020, Biomolecules.
[30] L. Peruzzi,et al. Taxonomy of prickly juniper (Juniperus oxycedrus group): A phytochemical-morphometric combined approach at the contact zone of two cryptospecies. , 2017, Phytochemistry.
[31] Hsi-wen Li,et al. Phylogeny of Isodon (Schrad. ex Benth.) Spach (Lamiaceae) and Related Genera Inferred from Nuclear Ribosomal ITS, trnL—trnF Region, and rps16 Intron Sequences and Morphology , 2010 .
[32] S. Daniele,et al. Multiple-scan voltammetry of immobilized particles of ancient copper/bronze coins , 2020, Journal of Solid State Electrochemistry.
[33] A. Doménech‐Carbó,et al. Characterization of traditional artificial patinas on copper using the voltammetry of immobilized particles , 2020, Journal of Electroanalytical Chemistry.
[34] S. Khanuja,et al. Assessment of genetic relationships in Mentha species , 2004, Euphytica.
[35] A. Ortiz,et al. Taxonomy, Ecology and Distribution of Juniperus oxycedrus L. Group in the Mediterranean Basin Using Bioclimatic, Phytochemical and Morphometric Approaches, with Special Reference to the Iberian Peninsula , 2021, Forests.
[36] A. Oliveira‐Brett,et al. Natural phenolic antioxidants electrochemistry: Towards a new food science methodology. , 2020, Comprehensive reviews in food science and food safety.
[37] T. Mahmood,et al. Phylogeny and diversity of lamiaceae based on rps14 gene in Pakistan , 2020, Genetika.
[38] A. Doménech‐Carbó,et al. Identification of vegetal species in wooden objects using in situ microextraction-assisted voltammetry of microparticles , 2017 .
[39] H. Karimi-Maleh,et al. Electrochemical Fingerprint Biosensor for Natural Indigo Dye Yielding Plants Analysis , 2021, Biosensors.
[40] B. Drew,et al. Resolving the phylogenetic position of Ombrocharis (Lamiaceae), with reference to the molecular phylogeny of tribe Elsholtzieae , 2016 .
[41] Yuhong Zheng,et al. Electrochemical Profile Recording for Pueraria Variety Identification. , 2020, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[42] Trevor C. Wilson,et al. Isodon hsiwenii (Lamiaceae: Nepetoideae), a New Species from Yunnan, China , 2019, Systematic Botany.
[43] Zhiyong Yue,et al. The complete chloroplast genomes of Lycopus lucidus and Agastache rugosa, two herbal species in tribe Mentheae of Lamiaceae family , 2021, Mitochondrial DNA. Part B, Resources.
[44] H. Karimi-Maleh,et al. Characterization of the Electrochemical Profiles of Lycoris Seeds for Species Identification and Infrageneric Relationships , 2020 .
[45] C. Giuliani,et al. Occurrence of flavonoids in different Lamiaceae taxa for a preliminary study on their evolution based on phytochemistry , 2021 .
[46] Yuhong Zheng,et al. Enhanced electrochemical voltammetric fingerprints for plant taxonomic sensing. , 2018, Biosensors & bioelectronics.
[47] F. Karimi,et al. Cyanazine herbicide monitoring as a hazardous substance by a DNA nanostructure biosensor. , 2021, Journal of hazardous materials.