Great interest centres on novel enzyme sources for the biotechnological exploitation of biomass, especially cellulose. Phytophagous insects, including phasmids, could be such sources. However, ‘cellulase’ activity has often been assayed with carboxymethylcellulose as an artificial soluble substrate. We tested whether conclusions with carboxymethylcellulose are applicable to phasmids feeding on leaves containing native (semi-crystalline) cellulose and potentially masked cell-wall-matrix polysaccharides. Specifically, we investigated what leaf carbohydrates are utilisable by the ‘digestome’ of the stick insect Carausius morosus . Alcohol-soluble material and alcohol-insoluble residue (AIR; polysaccharides) from privet ( Ligustrum ovalifolium ) leaves and from the corresponding insect frass were analysed by thin-layer chromatography (TLC). Before TLC, AIR was hydrolysed in trifluoroacetic acid (releasing pectic and hemicellulosic sugars), H 2 SO 4 (releasing cellulosic glucose) or Driselase (distinguishing xylans from xyloglucans). Privet leaves contained 0.5-1.0μg/mm 2 of total free sugars (stachyose, raffinose, sucrose, glucose, fructose, galactose) plus the glycoconjugate oleuropein, all of which were efficiently ‘utilised’ (i.e., not egested by the insects). Other phytochemicals and γ-aminobutyrate were also utilised. Much more utilisable carbohydrate (∼5μg/mm 2 ) came from pectin, xylans and xyloglucans. Unexpectedly, leaf cellulose was only ∼6% utilised, contributing ∼0.3μg/mm 2 glucose. In conclusion, C . morosus obtains >80% of its utilisable carbohydrate from pectin and hemicelluloses, <15% from free sugars and oleuropein, and only ∼5% from cellulose. Therefore, previous reports of high cellulase activity in phasmids, based on carboxymethylcellulose hydrolysis, cannot be unambiguously applied to native cellulose without further evidence. Utilisation of polysaccharides that are still integrated within leaf-cell-wall architecture is a more realistic indicator of polysaccharide utilisation by herbivores. • The Carausius morosus digestome ‘utilises’ (= fails to egest) all privet-leaf sugars. • This phasmid even utilises privet-leaf oleuropein, which is toxic to many animals. • It utilises a large percentage of privet-leaf cell-wall pectin and hemicellulose. • But surprisingly it utilises only 5% of native (ie, semicrystalline) leaf cellulose. • Contrary to previous ideas, a phasmid is not promising for cellulose valorisation.
Yuan et al. (Fri,) studied this question.
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