Transcriptome Analysis Comparison of Lipid Biosynthesis in the Leaves and Developing Seeds of Brassica napus

J Chen, RK Tan, XJ Guo, ZL Fu, Z Wang, ZY Zhang… - PLoS …, 2015 - journals.plos.org
Brassica napus seed is a lipid storage organ containing approximately 40% oil, while its
leaves contain many kinds of lipids for many biological roles, but the overall amounts are …

Correlation analysis of the transcriptome and metabolome reveals the regulatory network for lipid synthesis in developing Brassica napus embryos

H Tan, J Zhang, X Qi, X Shi, J Zhou, X Wang… - Plant molecular …, 2019 - Springer
Key message In this manuscript, we explored the key molecular networks for oil biosynthesis
with the transcriptome and metabolome of B. napus embryo at different developmental …

An integrated omics analysis reveals the gene expression profiles of maize, castor bean, and rapeseed for seed oil biosynthesis

N Liu, J Liu, S Fan, H Liu, XR Zhou, W Hua, M Zheng - BMC Plant Biology, 2022 - Springer
Background Seed storage lipids are valuable for human diet and for the sustainable
development of mankind. In recent decades, many lipid metabolism genes and pathways …

Gene expression in plant lipid metabolism in Arabidopsis seedlings

AS Hsiao, RP Haslam, LV Michaelson, P Liao… - PLoS …, 2014 - journals.plos.org
Events in plant lipid metabolism are important during seedling establishment. As it has not
been experimentally verified whether lipid metabolism in 2-and 5-day-old Arabidopsis …

Global analysis of gene expression profiles in Brassica napus developing seeds reveals a conserved lipid metabolism regulation with Arabidopsis thaliana

Y Niu, GZ Wu, R Ye, WH Lin, QM Shi, LJ Xue, XD Xu… - Molecular plant, 2009 - cell.com
In order to study Brassica napus fatty acid (FA) metabolism and relevant regulatory
networks, a systematic identification of fatty acid (FA) biosynthesis-related genes was …

New insights into the genetic networks affecting seed fatty acid concentrations in Brassica napus

X Wang, Y Long, Y Yin, C Zhang, L Gan, L Liu, L Yu… - BMC Plant …, 2015 - Springer
Abstract Background Rapeseed (B. napus, AACC, 2n= 38) is one of the most important oil
seed crops in the world, it is also one of the most common oil for production of biodiesel. Its …

Plant lipid biology and biotechnology

MC Suh, G Hahne, JR Liu, CN Stewart - Plant Cell Reports, 2015 - Springer
Lipids function as the structural components of cell membranes, which serve as permeable
barriers to the external environment of cells. In plants, lipids play especially important roles …

Transcriptome Analysis of Genes Involved in Fatty Acid and Lipid Biosynthesis in Developing Walnut (Juglans regia L.) Seed Kernels from Qinghai Plateau

W Shi, D Zhang, Z Ma - Plants, 2022 - mdpi.com
Walnut (Juglans regia) is an important woody oil-bearing plant with high nutritional value.
For better understanding of the underlying molecular mechanisms of its oil accumulation in …

Spatial analysis of lipid metabolites and expressed genes reveals tissue‐specific heterogeneity of lipid metabolism in high‐ and low‐oil Brassica napus L. seeds

S Lu, D Sturtevant, M Aziz, C Jin, Q Li… - The Plant …, 2018 - Wiley Online Library
Despite the importance of oilseeds to worldwide human nutrition, and more recently to the
production of bio‐based diesel fuels, the detailed mechanisms regulating seed oil …

Transcriptome analyses reveals the dynamic nature of oil accumulation during seed development of Plukenetia volubilis L.

G Liu, Z Wu, Y Peng, X Shang, Y Xie, RJ Arnold - Scientific Reports, 2020 - nature.com
Sacha inchi (Plukenetia volubilis L.) is a shrub native to Amazon rainforests that's of
commercial interest as its seeds contain 35–60% edible oil (dry weight). This oil is one of the …