Book chapters and Reviews

Shukla, N., P. Lemke, B. M. Moerschbacher, J. Kumar (2021). ‘Cu-Chi-Tri’, a new generation combination for knowledge-based management of oomycete pathogen, Phytophthora infestans. Emerging Trends in Plant Pathology. Springer Nature Singapore Pte Ltd., pp. 297-316

Cord-Landwehr, S., Niehues, A, Wattjes, J., Moerschbacher, B. M. (2020). New developments in the analysis of partially acetylated chitosan polymers and oligomers. Chitin and Chitosan: Properties and Applications.

El Gueddari, N. E., S. Kolkenbrock, A. Schaaf, N. Chilukoti, F.  Brunel, C. Gorzelanny, S. Fehser, S. Chachra, F. Bernard, M. Nampally, T. Kalagara, P. Ihmor, B. M. Moerschbacher (2014). Chitin and chitosan modifying enzymes: versatile novel tools for the analysis of structure-function relationshops of partially acetylated chitosans. Adv. Chitin Sci. 14: 40-47

Moerschbacher, B. M., F. Bernard, N. E. El Gueddari (2011). Enzymatic / mass spectrometric fingerprinting of partially acetylated chitosans. Adv. Chitin Sci. 11b: 185-191

Honorato, T. L., S. Rodrigues, B. M. Moerschbacher, T. T. Franco (2011). Chito-oligosaccharides produced by crude enzyme extract of Trichoderma polysporum. Adv. Chitin Sci. 11b: 114-120

Neeraja, C., A. Kondreddy, P. Pallinti, S. Katta, P. V. S. R. N. Sarma, B. M. Moerschbacher, A. R. Podile (2010). Biotechnological approaches to develop bacterial chitinases as a bioshield against fungal diseases of plants. Critical Reviews in Biotechnology 30: 231-241

Kohlhoff, M., N. E. El Gueddari, C. Gorzelanny, S. Haebel, M. J. Alonso, T. T. Franco, B. M. Moerschbacher (2009). Bio-engineering of chitosans with non-random patterns of acetylation - a novel sequence-specific chitosan hydrolase generating oligomers with block-PA. Adv. Chitin Sci. 11a: 463-468

Chilukoti, N., B. M. Moerschbacher, A. R. Podile (2009). Swapping of chitin-binding domain enhances the binding ability to insoluble substrates of chitin by Bacillus chimeric chitinases. Adv. Chitin Sci. 11a: 288-293

El Gueddari, N. E., A. Schaaf, M. Kohlhoff, C. Gorzelanny, S. W. Schneider, B. M. Moerschbacher (2007). Substrates and products of chitin- and chitosan-modifying enzymes. Adv. Chitin Sci. 10: 119-126. [Google Scholar]

Moerschbacher, B. M. (2005). Bio-activity matrices of chitosans in plant protection. In: S. S. Gnanamanickam, R. Balasubramanian, N. Anand, eds., Emerging Trends in Plant-Microbe Interactions. University of Madras, Chennai, pp. 186-190. [Google Scholar]

El Gueddari, N. E., B. M. Moerschbacher (2004). A bioactivity matrix for chitosans as elicitors of disease resistance reactions in wheat. Adv. Chitin Sci. 7: 56-59. [Google Scholar]

Moerschbacher, B. M. (2002). The plant cell wall - structural aspects and biotechnological developments. In: K. M. Oksman-Caldentey, W. Barz, eds., Plant Biotechnology and Transgenic Plants. Marcel Dekker Inc., New York, pp. 445-476. [Google Scholar]

Moerschbacher, B., K. Mendgen (2000). Structural aspects of defense. In: A. J. Slusarenko, R. S. S. Fraser, L. C. van Loon, eds., Mechanisms of Resistance to Plant Diseases. Kluwer Academic Publishers, Dordrecht, Boston, London, pp.231-277. [Google Scholar]

Moerschbacher, B. M., H. J. Reisener (1997). The hypersensitive resistance reaction. In: H. Hartleb, R. Heitefuss, H. H. Hoppe, eds., Resistance of Crop Plants Against Fungi. Gustav Fischer Verlag, Jena, pp. 126-158. [Google Scholar]

Mierau, M, B. Graeßner, A. J. Mort, B. M. Moerschbacher (1996). Pectins and pectinases in stem rust-infected wheat. In: J. Visser, A. G. J. Voragen, eds., Progress in Biotechnology, Vol. 14:. Pectins and Pectinases. Elsevier, Amsterdam, pp. 687-692. [Google Scholar]

Mierau, M, B. Graeßner, A. J. Mort, B. M. Moerschbacher (1996). The role of pectins in stem rust-infected wheat. In: G. H. J. Kema, R. E. Niks, R. A. Daamen, eds., Proceedings of the 9th European and Mediterranean Cereal Rusts & Powdery Mildews Conference. European and Mediterranean Cereal Rust Foundation, Lunteren, pp. 44-48. [Google Scholar]

Menden, B. P., C. Kaum, B. M. Moerschbacher (1994). Phenolic acids in the resistance of wheat to stem rust. Acta Horticult. 381: 557-560. [Google Scholar]

Vander, P., B. M. Moerschbacher (1993). Chitin oligomers produced by HF-solvolysis induce resistance reactions in higher plants. In: R.A.A. Muzzarelli ed., Chitin Enzymology. European Chitin Society, Ancona, pp. 437-440. [Google Scholar]

Schulte, P., B. M. Moerschbacher (1993). On the role of peroxidases in the temperature-sensitive resistance reaction of wheat to stem rust. In: K. G. Welinder, S. K. Rasmussen, C. Penel, H. Greppin, eds., Plant Peroxidases: Biochemistry and Physiology. University of Geneva, pp. 377-382. [Google Scholar]

Moerschbacher, B. M. (1992). Plant peroxidases: Involvement in response to pathogens. In: C. Penel, T. Gaspar, H. Greppin, eds., Plant Peroxidases 1980-1990, Topics and Detailed Literature on Molecular, Biochemical, and Physiological Aspects. University of Geneva, pp. 91-99. [Google Scholar]

Moerschbacher, B. M. (1989). Lignin biosynthesis in stem rust infected wheat. In: N. G. Lewis, M. G. Paice, eds., Plant Cell Wall Polymers: Biogenesis and Biodegradation. ACS Symposium Series 399, American Chemical Society, Washington, pp. 370-382. [Google Scholar]

Reisener, H. J., R. Tiburzy, K. H. Kogel, B. Moerschbacher, B. Heck (1986). Mechanism of resistance of wheat against stem rust in the Sr5/P5-interaction. In: J. Bailey, ed., Biology and Molecular Biology of Plant Pathogen Interactions. NATO ASI Series, Vol. H1, Springer Verlag Berlin/Heidelberg, pp. 141-148. [Google Scholar]