Search Results - "Ohta, Shinji"
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Characterization of volatile compounds in males of the skipper butterfly Daimio tethys (Lepidoptera: Hesperiidae)
Published in Applied entomology and zoology (01-05-2023)“…Butterflies in the family Hesperiidae are characterized by male-specific structures referred to as scent organs. The volatiles released from the male scent…”
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2
The male swallowtail butterfly, Papilio polytes, uses cuticular hydrocarbons for mate discrimination
Published in Animal behaviour (01-12-2020)“…Many species of insects have sex-specific and species-specific cuticular lipid profiles that help regulate mate recognition and courtship behaviour. However,…”
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Chemical Identity of Cuticular Lipid Components in the Mimetic Swallowtail Butterfly Papilio polytes
Published in Chemistry & biodiversity (01-03-2022)“…The swallowtail Papilio polytes shows Batesian and female‐limited polymorphic mimicry. In Japan, P. polytes females have two different forms: the cyrus form is…”
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Asaroidoxazines from the Roots of Asarum asaroides Induce Apoptosis in Human Neuroblastoma Cells
Published in Journal of natural products (Washington, D.C.) (23-10-2020)“…Plants in the family Aristolochiaceae contain phenanthrene skeleton-containing chemical constituents that exhibit nephrotoxic, carcinogenic, mutagenic,…”
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5
The Role of N,N,N-Trimethylglycine in Oviposition of Eurema mandarina on Albizia julibrissin
Published in Journal of chemical ecology (01-04-2019)“…The common grass yellow Eurema mandarina (Lepidoptera: Pieridae) uses the silk tree Albizia julibrissin (Fabaceae) as a primary host in Japan. We previously…”
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Variation in cuticular lipid profiles of black butterflies of the genus Papilio in Japan
Published in Biochemical systematics and ecology (01-06-2021)“…Insect (epi)cuticular lipids characterize sex and species and often play an important role in mating behavior. We previously revealed that two black-colored…”
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A cyanogenic glucoside of Trifolium repens deters oviposition by the common grass yellow Eurema mandarina
Published in Physiological entomology (01-12-2019)“…The common grass yellow Eurema mandarina (Pieridae, Coliadinae) widely inhabits Japan, feeds on various fabaceous plants such as silktree (Albizia julibrissin)…”
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Hydroxylated furanoditerpenoids from pupal cases produced by the bruchid beetle Sulcobruchus sauteri inside the seeds of Caesalpinia decapetala
Published in Phytochemistry (Oxford) (01-12-2018)“…Seven undescribed hydroxylated cassane-type furanoditerpenoids were isolated from pupal cases formed from the secretion/excretion of the larvae of the wild…”
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Oxygenated Cembrene Diterpenes from Sarcophyton convolutum: Cytotoxic Sarcoconvolutum A-E
Published in Marine drugs (13-09-2021)“…The soft coral genus contains the enzymatic machinery to synthesize a multitude of cembrene-type diterpenes. Herein, highly oxygenated cembrenoids,…”
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Cassane diterpenoids from the roots of Caesalpinia decapetala var. japonica and structure revision of caesaljapin
Published in Phytochemistry (Oxford) (01-01-2016)“…Three diterpenoids (1–3) were isolated from the roots of Caesalpinia decapetala var. japonica and the structures were determined based on spectroscopic data as…”
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11
d-Pinitol in Fabaceae: an Oviposition Stimulant for the Common Grass Yellow Butterfly, Eurema mandarina
Published in Journal of chemical ecology (01-11-2016)“…The common grass yellow butterfly, Eurema mandarina (formerly Eurema hecabe mandarina ) (Lepidoptera, Pieridae), recently has been separated taxonomically from…”
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Cembrene Diterpenoids with Ether Linkages from Sarcophyton ehrenbergi: An Anti-Proliferation and Molecular-Docking Assessment
Published in Marine drugs (21-06-2017)“…Three new cembrene diterpenoids, sarcoehrenbergilid A-C ( - ), along with four known diterpenoids, sarcophine ( ), (+)-7α,8β-dihydroxydeepoxysarcophine ( ),…”
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13
Ashitabaol A, a new antioxidative sesquiterpenoid from seeds of Angelica keiskei
Published in Tetrahedron letters (30-06-2010)“…The structure of ashitabaol A was determined on the basis of spectroscopic data and X-ray crystallographic analysis. A new sesquiterpenoid designated…”
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14
Ficusnotins A–F: Rare diarylbutanoids from the leaves of Ficus nota
Published in Phytochemistry (Oxford) (01-09-2017)“…Six diarylbutanoids, designated as ficusnotins A–F, with a rare carbon skeleton consisting of two aromatic rings separated by an unbranched C4-chain have been…”
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New Prenylated ortho‐Dihydroxycoumarins from the Fruits of Ficus nipponica
Published in Chemistry & biodiversity (01-09-2017)“…Two new prenylated ortho‐dihydroxycoumarins, designated fipsomin (1) and fipsotwin (2), were isolated from the fruits of Ficus nipponica together with a known…”
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Sarcoehrenbergilides D-F: cytotoxic cembrene diterpenoids from the soft coral Sarcophyton ehrenbergi
Published in RSC advances (29-08-2019)“…A solvent extract of the soft coral afforded cembrene diterpenoids, sarcoehrenbergilid D-F (1-3). Chemical structures were established by modern spectroscopic…”
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Caesaljaponins A and B: New Cassane-Type Furanoditerpenoids from the Seeds of Caesalpinia decapetala var. japonica
Published in Helvetica chimica acta (01-03-2015)“…Two new cassane‐type furanoditerpenoids, designated caesaljaponin A and caesaljaponin B (1 and 2, resp.), were isolated from seeds of Caesalpinia decapetala…”
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18
Electrospray ionization mass spectrometry and nuclear magnetic resonance spectroscopy data for anacardic acid derivatives
Published in Data in brief (01-04-2022)“…The data presented here are related to the research paper entitled “Janohigenins: Long-chain anacardic acid derivatives with neuroprotective activity from…”
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Results of Mechanical Thrombectomy in Patients Aged ≥80 Years
Published in Journal of Neuroendovascular Therapy (01-01-2021)“…Objective: The effectiveness of mechanical thrombectomy (MT) for anterior circulation large vessel occlusion (LVO) is controversial in elderly patients. The…”
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Carotane sesquiterpenes from Ferula vesceritensis : in silico analysis as SARS-CoV-2 binding inhibitors
Published in RSC advances (16-09-2020)“…Two sesquiterpenes, 8α-anisate-dauc-4-ene-3,9-dione (webiol anisate) (1) and 10α-acetoxy-6α-benzoate-jaeschkeanadiol (2) as well as, ten known analogues…”
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