Publications of W. Boland
All genres
Journal Article (464)
461.
Journal Article
44 (26), pp. 4819 - 4824 (1979)
Stereoselective syntheses of "multifidenes" and related structures. Contribution to the synthetic chemistry of cis-disubstituted alken-1-ylcyclopentenes. Journal of Organic Chemistry 462.
Journal Article
111 (9), pp. 3262 - 3275 (1978)
Synthesis of multifiden the gamete attractant of the brown alga Vutleria multifida and some of its isomers a contribution to the cope rearrangement of 1 alkenyl cyclo pentenes. Chemische Berichte 463.
Journal Article
110 (5), pp. 1823 - 1832 (1977)
Stereospecific synthesis of cis-trans-substituted 1-alkenylcyclopentanes and 1-cyclopentenes. Chemische Berichte 464.
Journal Article
1976 (6), pp. 1135 - 1142 (1976)
Total synthesis of multifiden [cis-3-(cis-1-butehyl)-4-vinylcyclopentene], male attractant of Phaeophyte Cutleria multifida and of its isomers. Liebigs Annalen der Chemie Book (1)
465.
Book
Roempp encyclopedia natural products. Thieme, Stuttgart (2000)
Book Chapter (20)
466.
Book Chapter
The microbiome of Spodoptera littoralis: development, control and adaptation to the insect host. In: Metagenomics for Gut Microbes, pp. 77 - 103 (Ed. Kumavath, R.). IntechOpen, London (2018)
467.
Book Chapter
Chemical ecology of bracken ferns. In: Ferns: Ecology, Importance to Humans and Threats, pp. 58 - 96 (Ed. Nowicki, L.). Nova Science Publishers, Hauppauge, NY (2018)
468.
Book Chapter
How leaf beetle produce toxins to defend themselves (invited article summary about: Becker T, Ploss K, Boland W. (2016) Biosynthesis of isoxazolin-5-one and 3-nitropropanoic acid containing glucosides in juvenile Chrysomelina. Organic & Biomolecular Chemistry, 14, 6274-6280). In: Atlas of Science (2016)
469.
Book Chapter
Harmonine – the defense compound of the Asian lady beetle is active against Leishmania major parasites (invited article summary about: Nagel N, Masic A, Schurigt U, Boland W. (2015) Efficient synthesis of (R)-harmonine–the toxic principle of the multicolored Asian lady beetle (Harmonia axyridis). Organic & Biomolecular Chemistry, 13, 5139-5146). In: Atlas of Science, pp. 1 - 2 (Ed. Wilson, T.). The MIT Press, Cambridge MA (2016)
470.
Book Chapter
RNAi based functional analysis of biosynthetic enzymes and transport proteins involved in the chemical defense of juvenile leaf beetles. In: Insect Molecular Biology and Ecology (Ed. Hoffmann, K. H. H.). CRC Press (2014)
471.
Book Chapter
Methyltrioxorhenium. In: e-EROS Encyclopedia of Reagents for Organic Synthesis, pp. 1 - 11. Wiley, Chichester (2013)
472.
Book Chapter
Chemical ecology of plant-insect interactions. In: Plant Disease Resistance, pp. 261 - 291 (Ed. Parker, J.). Wiley-Blackwell, Chichester (2009)
473.
Book Chapter
Terpenoid biosynthesis and signaling in legume plants in response to herbivorous damage. In: ADVANCES IN PLANT ETHYLENE RESEARCH, pp. 353 - 358. 7th International Symposium on the Plant Hormone Ethylene, Scuola Superiore Sant Anna, Pisa, ITALY (2007)
474.
Book Chapter
The source of IPP for volatile terpene biosynthesis in cotton. In: Terpnet 2005 (2005)
475.
Book Chapter
Mikrobielle Symbionten von Insekten und ihre Bedeutung für die Pflanzen. In: Bedeutung der Mikroorganismen für die Umwelt, pp. 111 - 122 (Eds. Schleifer, K.-H.; Deigele, C.). Dr. Friedrich Pfeil, München (2002)
476.
Book Chapter
Extrafloral nectar produced by Macaranga tanarius is an induced, indirect defence against herbivores. In: Induced Resistance in Plants against Insect and Diseases, pp. 177 - 182 (Eds. Schmitt, A.; Mauch-Mani, B.). International Organisation for Biological and Integrated Control of Noxious Animals and Plants / West Palaearctic Regional Section, Wageningen (2002)
477.
Book Chapter
"Electronic noses". In: Bioresponse-linked Instrumental Analysis, pp. 57 - 78 (Ed. Hock, B.). B. G. Teubner, Stuttgart (2001)
478.
Book Chapter
Induced biosynthesis of insect semiochemicals in plants. In: Insect-Plant Interactions and Induced Plant Defence, pp. 110 - 131 (Eds. Chadwick, D. J.; Goode, J. A.). Wiley, Chichester (1999)
479.
Book Chapter
Recent approaches using alkenyl-oxiranes in organic synthesis. In: Recent Research Developments in Organic Chemistry: Transworld Research Network, (3), pp. 219 - 235 (Ed. Pandalai, S. G.) (1999)
480.
Book Chapter
Induction of plant volatile biosynthesis by jasmonates. In: Natural Product Analysis, pp. 255 - 269 (Eds. Schreier, P.; Herderich, M.; Humpf, H.-U.; Schwab, W.). Vieweg, Braunschweig/Wiesbaden (1998)