Cassava Metabolomics and Starch Quality.

Laise Rosado-Souza, Laure C David, Margit Drapal, Paul D Fraser, Jörg Hofmann, Patrick A W Klemens, Frank Ludewig, H Ekkehard Neuhaus, Toshihiro Obata, Laura Perez-Fons, Armin Schlereth, Uwe Sonnewald, Mark Stitt, Samuel C Zeeman, Wolfgang Zierer, Alisdair R Fernie

Journal: Current protocols in plant biology 2020;4(4):e20102

PMID: 31834991

Abstract

Cassava plays an important role as a staple food for more than 800 million people in the world due to its ability to maintain relatively high productivity even in nutrient-depleted soils. Even though cassava has been the focus of several breeding programs and has become a strong focus of research in the last few years, relatively little is currently known about its metabolism and metabolic composition in different tissues. In this article, the absolute content of sugars, organic acids, amino acids, phosphorylated intermediates, minerals, starch, carotenoids, chlorophylls, tocopherols, and total protein as well as starch quality is described based on multiple analytical techniques, with protocols specifically adjusted for material from different cassava tissues. Moreover, quantification of secondary metabolites relative to internal standards is presented using both non-targeted and targeted metabolomics approaches. The protocols have also been adjusted to apply to freeze-dried material in order to allow processing of field harvest samples that typically will require long-distance transport. © 2019 The Authors. Basic Protocol 1: Metabolic profiling by gas chromatography-mass spectrometry (GC-MS) Support Protocol 1: Preparation of freeze-dried cassava material Support Protocol 2: Preparation of standard compound mixtures for absolute quantification of metabolites by GC-MS Support Protocol 3: Preparation of retention-time standard mixture Basic Protocol 2: Determination of organic acids and phosphorylated intermediates by ion chromatography-mass spectrometry (IC-MS) Support Protocol 4: Preparation of standards and recovery experimental procedure Basic Protocol 3: Determination of soluble sugars, starch, and free amino acids Alternate Protocol: Determination of soluble sugars and starch Basic Protocol 4: Determination of anions Basic Protocol 5: Determination of elements Basic Protocol 6: Determination of total protein Basic Protocol 7: Determination of non-targeted and targeted secondary metabolites Basic Protocol 8: Determination of carotenoids, chlorophylls, and tocopherol Basic Protocol 9: Determination of starch quality.

© 2019 The Authors.

Address: Max Planck Institute of Molecular Plant Physiology, Potsdam-Golm, Germany.; Plant Biochemistry, Institute of Molecular Plant Biology, Zurich, Switzerland.; School of Biological Sciences, Royal Holloway University of London, Egham, United Kingdom.; Department of Biochemistry, University of Erlangen-Nuremberg, Erlangen, Germany.; Plant Physiology, University of Kaiserslautern, Kaiserslautern, Germany.; Department of Biochemistry and Center for Plant Science Innovation, University of Nebraska-Lincoln, Lincoln, Nebraska.

Link outs

Free resources

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.