Differential Responses of Invasive Trees <i>Ailanthus altissima</i> Mill. Swingle and <i>Fraxinus americana</i> L. to Soil Phosphorus Availability. [PDF]
Milutinović M +5 more
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Evaluating the Vitality of Introduced Woody Plant Species in the Donetsk-Makeyevka Urban Agglomeration. [PDF]
Kornienko V +8 more
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Effects of Tribulus (<i>Tribulus terrestris</i> L.) Supplementation on Erectile Dysfunction and Testosterone Levels in Men-A Systematic Review of Clinical Trials. [PDF]
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Is Lycorma delicatula (Hemiptera: Fulgoridae) a blooming threat to citrus? [PDF]
Molfini M +4 more
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Improving Traps for Spotted Lanternflies, <i>Lycorma delicatula</i> (Hemiptera: Fulgoridae), by Leveraging Their Own Signals. [PDF]
Cooperband MF, Murman KM.
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Bioactive Compounds Discovery from French Guiana Plant Extracts Through Antitubercular Screening and Molecular Networking. [PDF]
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Socioeconomic Disparities in the Diversity, Abundance, Structure and Composition of Woody Plants in Residential Streetscapes: Insights for Transitioning to a More Environmentally Just City. [PDF]
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Chemogeographical evolution of quassinoids in simaroubaceae
Phytochemistry, 1991Abstract The presence of canthinones and β-carbolines suggests the derivation of the Simaroubaceae from protorutaceous stock. The evolutionary trend towards the substitution of such anthranilate-derived alkaloids by limonoids in Rutaceae is paralleled by their substitution by quassinoids in Simaroubaceae.
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Quassinoids from the leaves of the Madagascan Simaroubaceae Samadera madagascariensis
Phytochemistry, 2005An investigation of the leaves of the Madagascan Simaroubaceae Samadera madagascariensis has yielded three C18 quassinoids, 5beta,6-dihydrosamaderine A, 2-chlorosamaderine A, and samaderolactone A, and a C19 quassinoid, 3,4beta-dihydrosamaderine C, together with the known quassinoids samaderine A, samaderine B, and cedronin.
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