most popular maize embryo oil production plant

Using systems metabolic engineering strategies for high-oil maize

Advances in high-oil maize genomics and genetics and the development of systems metabolic engineering technologies provide new opportunities for high-oil maize breeding. In this review, we discuss the possibility of using kernels and vegetative tissues as factories to produce TAG, eicosapentaenoic acid, and docosahexaenoic acid.

An integrated omics analysis reveals the gene expression profiles of

Embryos of maize (Zea mays) and rapeseed (B. napus) (which is a reference of oil plants for the oil biosynthesis analysis in embryo) and endosperm tissues of castor bean (R. communis) were collected from developing seeds at different developmental stages for transcriptome analyses.

Genetic architecture of embryo size and related traits in maize

However, a reduction in seed size has been associated with an increase in the proportion of the embryo in previous high-oil maize selection experiments [5], [6], suggesting complex relationships between embryo size, kernel size, and kernel nutrition components.

Transcriptomics at Maize Embryo/Endosperm Interfaces Identifies a

In maize (Zea mays), the accumulation of oil in the embryo and of starch and protein in the endosperm requires the development of adapted structures and the coordinated regulation and distribution of nutrient flow from the mother plant.

Genetic basis of the oil biosynthesis in ultra-high-oil maize grains

These novel findings will help clarify the genetic basis of the increased oil production in ultra-high-oil maize lines with grain oil contents exceeding 20%. The KASP markers developed in this study may be useful for breeding new high-oil sweet maize varieties.

Molecular breeding approaches for the improvement of oil content

A comprehensive understanding of the relationship between the genetic architecture of kernel oil traits and lipid metabolism in maize will be important to establish selection strategies for high-oil maize breeding and biotechnology-driven improvements.

Identification of Key Genes Involved in Embryo Development

It is discovered that both acyl-CoA-dependent and acyl CoA-independent processes are essential for the high oil accumulation in maize embryo. Maize is an important oil seed crop and a major food crop in different parts of the world. Since maize has relatively lower seed oil content as compared to other oil crops, efforts are continuing to improve its oil content percentage. In this study, we ...

High-Oil Maize Genomics | Springer Nature Link

High-oil maize is a crop developed by artificial selection. Maize oil is high in energy and levels of polyunsaturated fatty acids, which makes high-oil maize a popular resource for food, feed, and bioenergy. Multiple high-oil germplasm resources have been developed,...

Seed Oil Press Machines for Sale-Industrial Oil Press and Home Use Oil

Integrated Screw Oil Press Suitable for both hot extraction and cold extraction; integrate pressing and filtering procedure saving time and energy; apply to over twenty oils seeds such as soybean, flaxseed, rapeseed, sunflower seed, etc. High oil yield and purer edible oil.

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Most of maize seed oil is located in the embryo. Seed oil content is thus primarily determined by the oil concentration of the embryo and embryo size (Weber, 2003).