Metabolic engineering of sugars and simple sugar derivatives in plants
Метаболическая инженерия сахаров и простых производных сахаров у растений
2012-10-08
SCID: 54.1/r6b94d9j
Discuss with AI
plant metabolic engineeringsimple sugar derivativessugar export from leavessugar metabolismsugar-storing sink organs
Figures from the paper
Abstract (AI)
Carbon captured through photosynthesis is transported, and sometimes stored in plants, as sugar. All organic compounds in plants trace to carbon from sugars, so sugar metabolism is highly regulated and integrated with development. Sugars stored by plants are important to humans as foods and as renewable feedstocks for industrial conversion to biofuels and biomaterials. For some purposes, sugars have advantages over polymers including starches, cellulose or storage lipids. This review considers progress and prospects in plant metabolic engineering for increased yield of endogenous sugars and for direct production of higher-value sugars and simple sugar derivatives. Opportunities are examined for enhancing export of sugars from leaves. Focus then turns to manipulation of sugar metabolism in sugar-storing sink organs such as fruits, sugarcane culms and sugarbeet tubers. Results from manipulation of suspected 'limiting' enzymes indicate a need for clearer understanding of flux control mechanisms, to achieve enhanced levels of endogenous sugars in crops that are highly selected for this trait. Outcomes from in planta conversion to novel sugars and derivatives range from severe interference with plant development to field demonstration of crops accumulating higher-value sugars at high yields. The differences depend on underlying biological factors including the effects of the novel products on endogenous metabolism, and on biotechnological fine-tuning including developmental expression and compartmentation patterns. Ultimately, osmotic activity may limit the accumulation of sugars to yields below those achievable using polymers; but results indicate the potential for increases above current commercial sugar yields, through metabolic engineering underpinned by improved understanding of plant sugar metabolism.
Key Findings
1
Enhancing sugar export from leaves and manipulating metabolism in sugar-storing organs are major strategies for improving crop sugar accumulation.
2
In planta production of novel sugars and derivatives can cause severe developmental disruption, but appropriate expression and compartmentation can yield high-value products at high field yields.
3
Manipulation of suspected limiting enzymes has produced limited or inconsistent gains, highlighting the need for better understanding of metabolic flux control.
4
Osmotic activity may constrain sugar accumulation below polymer-based yields, yet metabolic engineering could raise commercial sugar production above current levels.
5
Plant metabolic engineering can increase endogenous sugar yields and enable direct production of higher-value sugars and simple sugar derivatives.
Research Object
plant sugar metabolism and sugar-storing crops, including fruits, sugarcane culms, and sugarbeet tubers
Research Subject
metabolic engineering of endogenous sugar production and in planta synthesis of higher-value sugars and simple sugar derivatives, including their transport, accumulation, and effects on plant development
Publication Details
Publication Date
2012-10-08
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest
References available in scid.ai2
Cited by3
A starting guide to root ecology: strengthening ecological concepts and standardising root classification, sampling, processing and trait measurements2021
Sugar Metabolism in Stone Fruit: Source-Sink Relationships and Environmental and Agronomical Effects2020
Allele-defined genome of the autopolyploid sugarcane Saccharum spontaneum L.2018