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Detecting variation in starch granule size and morphology by high-throughput microscopy and flow cytometry

Authors :
Mercedes Thieme
Anton Hochmuth
Theresa Elisabeth Ilse
Jose A. Cuesta-Seijo
Szymon Stoma
Roger Meier
Simon Flyvbjerg Nørrelykke
Pai Rosager Pedas
Ilka Braumann
Samuel C. Zeeman
Source :
Carbohydrate Polymers, 299
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

Starch forms semi-crystalline, water-insoluble granules, the size and morphology of which vary according to biological origin. These traits, together with polymer composition and structure, determine the physicochemical properties of starch. However, screening methods to identify differences in starch granule size and shape are lacking. Here, we present two approaches for high-throughput starch granule extraction and size determination using flow cytometry and automated, high-throughput light microscopy. We evaluated the practicality of both methods using starch from different species and tissues and demonstrated their effectiveness by screening for induced variation in starch extracted from over 10,000 barley lines, yielding four with heritable changes in the ratio of large A-granules to small B-granules. Analysis of Arabidopsis lines altered in starch biosynthesis further demonstrates the applicability of these approaches. Identifying variation in starch granule size and shape will enable identification of trait-controlling genes for developing crops with desired properties, and could help optimise starch processing. ISSN:0144-8617 ISSN:1879-1344

Details

ISSN :
01448617
Volume :
299
Database :
OpenAIRE
Journal :
Carbohydrate Polymers
Accession number :
edsair.doi.dedup.....b43ed436c9f0bc35dfea7325a4c7404b