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A major aim in the genetic improvement of Jatropha is the development of high yielding varieties in terms of seed yield, high oil content, and low toxin amount.
A major hindrance to the development of high yielding biofuel feedstocks is the ability to rapidly assess large populations for fermentable sugar yields.
This trend continued through the development of replicating viral vectors and the development of high yielding non-replicating expression systems (for a recent review of the development of such systems, see [ 10]).
At the same time, increases in density tolerance through selective breeding and the concomitant ability to plant crops at a higher population density has been one of the most important factors in the development of high yielding modern cultivars.
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In addition, the development of higher yielding crops and the use of catch crops should guarantee that this potential is realized by 2020.
The development of higher yielding and more nutritious and sustainable varieties will play a key food security role as the world population increases to 10 billion in less than 35 years.
As an example, ADPGPase has been shown to be a rate limiting enzyme in starch biosynthesis whose over-expression in cassava leads to increased root biomass [ 62], the characterization of the molecular diversity of this as well as other enzymes could lead to the development of higher yielding crops.
Characterization of currently unknown QTLs for yield such as these would contribute to the development of high-yielding rice.
Functional analysis of those proteins will contribute to the development of high-yielding crops through artificial manipulation of the basic life phenomena of plants or through the assessment of their stress tolerance.
Here, we introduce the current results coming from the molecular and evolutionary analysis of the semidwarfing gene sd1, one of the most important genes used for the development of high-yielding rice varieties.
One of these challenges is to improve our understanding of crop genotype-to-phenotype relationships in order to assist the development of high-yielding and resource-use efficient genotypes that can adapt to particular (future) target environments.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com