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Abiotech|October 28, 2022
Multi-strategy engineering greatly enhances provitamin A carotenoid accumulation and stability in Arabidopsis seedsTianhu Sun, Qinlong Zhu, Ziqing Wei, et al.Frontiers in Plant Science|May 10, 2021
CRISPR/Cas9-Induced fad2 and rod1 Mutations Stacked With fae1 Confer High Oleic Acid Seed Oil in Pennycress (Thlaspi arvense L.)Brice A Jarvis, Trevor B Romsdahl, Michaela G McGinn, et al.The Plant Cell|June 13, 2020
Unregulated Sphingolipid Biosynthesis in Gene-Edited Arabidopsis ORM Mutants Results in Nonviable Seeds with Strongly Reduced Oil ContentAriadna Gonzalez-Solis, Gongshe Han, Lu Gan, et al.Proceedings of the National Academy of Sciences of the United States of America|December 28, 2012
AtABCA9 transporter supplies fatty acids for lipid synthesis to the endoplasmic reticulumSangwoo Kim, Yasuyo Yamaoka, Hirofumi Ono, et al.The Plant Cell|November 12, 2013
Arabidopsis 56-amino acid serine palmitoyltransferase-interacting proteins stimulate sphingolipid synthesis, are essential, and affect mycotoxin sensitivityAthen N Kimberlin, Saurav Majumder, Gongshe Han, et al.Phytochemistry|March 22, 2015
Sphingolipid metabolism is strikingly different between pollen and leaf in Arabidopsis as revealed by compositional and gene expression profilingKyle D Luttgeharm, Athen N Kimberlin, Rebecca E Cahoon, et al.Nature Communications|June 11, 2026
High-throughput Raman-activated cell sorting of microalgal genome-wide edited library revealed a regulatory pathway for carotenoid synthesisQintao Wang, Yanhai Gong, Lianhong Wang, et al.Eukaryotic Cell|September 21, 2014
A high-throughput fatty acid profiling screen reveals novel variations in fatty acid biosynthesis in Chlamydomonas reinhardtii and related algaeErin L Pflaster, Michael J Schwabe, Joyanne Becker, et al.BMC Bioinformatics|October 22, 2021
A consensus-based ensemble approach to improve transcriptome assemblyAdam Voshall, Sairam Behera, Xiangjun Li, et al.Journal of Experimental Botany|July 2, 2013
A thraustochytrid diacylglycerol acyltransferase 2 with broad substrate specificity strongly increases oleic acid content in engineered Arabidopsis thaliana seedsChunyu Zhang, Umidjon Iskandarov, Elliott T Klotz, et al.Pageof 23