UNFAO. The State of Food and Agriculture. Livestock in the Balance. Rome: FAO, ISBN 978-92-5-106215-9.
2.
SophocleousM. Global and regional water availability and demand: Prospects for the future. Natural Resour Res, 2004; 13:61–75.
3.
BurneyJA, DavisSJ, LobellDB. Greenhouse gas mitigation by agricultural intensification. PNAS, 2010; 107; 12052–12057.
4.
BöhringerC, JochemPEP. Measuring the immeasurable—a survey of sustainability indices. Ecol Econ, 2007; 63:1–8.
5.
OECD. OECD's Producer Support Estimate and Related Indicators of Agricultural Support. Concepts, Calculations, Interpretation and Use (The PSE Manual). Paris: OECD Publishing, 2010.
6.
OECD.. OECD Producer and Consumer Support Estimates Database. Available at www.oecd.org/tad/agricultural-policies/producerandconsumersupportestimatesdatabase.htm (Last accessed October2015).
7.
OECD. Sustainable biomass drives the next bioeconomy: A new industrial revolution?. Report of an OECD Workshop, Paris, June 10–11, 2014. Paris, France: OECD Publishing, 2014.
8.
HamiltonJD. Nonlinearities and the macroeconomic effects of oil prices. Macroeconomic Dynamics, 2011; 15(S3):364–378.
9.
BoschR, van de PolM, PhilpJ. Define biomass sustainability. Nature, 2015; 523: 526–527.
10.
D'HondtK, Jiménez-SánchezG, PhilpJC. Reconciling agricultural and industrial needs for an Asian bioeconomy. Asian Biotechnol Dev Rev, 2015; 17: 85–130.
11.
MilneR.Norway fund excludes four Asian groups over palm oil links. Financial Times (2015). Available at www.ft.com/intl/cms/s/0/b8305bbe-44c7-11e5-b3b2-1672f710807b.html#axzz3lKPEGZN4 (Last accessed October2015).
12.
OECD. Entrepreneurship and local economic development. Programme and policy recommendations. Paris, France: OECD Publishing, 2003, ISBN 92-64-19978-0.
13.
Federal Government of Germany. Biorefineries Roadmap. (2012) Available at www.bundesregierung.de (Last accessed October2015).
14.
PeplowM. Cellulosic ethanol fights for life. Pioneering biofuel producers hope that US government largesse will ease their way into a tough market. Nature, 2014; 507:152.
15.
Klein-MarcuschamerD, ChistiY, BenemannJR, LewisD. A matter of detail: Assessing the true potential of microalgal biofuels. Biotechnol Bioeng, 2013; 110: 2317–2322.
16.
Jiménez-SánchezG, PhilpJC. Omics and the bioeconomy. Applications of genomics hold great potential for a future bio-based economy and sustainable development. EMBO Reports, 2015; 16:17–20.
PhilpJC. Balancing the bioeconomy: Supporting biofuels and bio-based materials in public policy. Energy Environ Sci, 2015; doi:10.1039/c5ee01864a
20.
European Commission.. From the Sugar Platform to Biofuels and Biochemicals. Final Report for the European Commission Directorate-General Energy. Contract number ENER/C2/423-2012/SI2.673791. April2015.
21.
Oxford Economics (2014).. Evolution of competitiveness in the European chemical industry: Historical trends and future prospects. A report for Cefic. October2014.
22.
SunJ, LiJ. Driving green growth: Innovation at the Tianjin Institute of Industrial Biotechnology. Ind Biotechnol, 2015; 11(3):151–153.
23.
DaboussiF, LeducS, MaréchalA, et al.Genome engineering empowers the diatom Phaeodactylum tricornutum for biotechnology. Nature Comm, 2014; doi:10.1038/ncomms4831
24.
FieldCB, BehrenfeldMJ, RandersonJT, FalkowskiP. Primary production of the biosphere: Integrating terrestrial and oceanic components. Science, 1998; 281:237–240.
25.
PennisiE. New proteins may expand, improve genome editing. Mining bacterial immune systems yields two new editing tools and has the potential to contribute many more. Science, 2015; 350:16–17.
26.
National Academy of Sciences (2015).. Industrialization of Biology: A Roadmap to Accelerate the Advanced Manufacturing of Chemicals. Washington, DC: National Academies Press, ISBN: 978-0-309-31652-1.