Literature DB >> 29654768

Seed-specific overexpression of AtFAX1 increases seed oil content in Arabidopsis.

Yinshuai Tian1, Xueyan Lv2, Guilan Xie2, Jing Zhang2, Ying Xu2, Fang Chen3.   

Abstract

Biosynthesis of plant seed oil is accomplished through the coordinate action of multiple enzymes in multiple subcellular compartments. Fatty acid (FA) has to be transported from plastid to endoplasmic reticulum (ER) for TAG synthesis. However, the role of plastid FA transportation during seed oil accumulation has not been evaluated. AtFAX1 (Arabidopsis fatty acid export1) mediated the FA export from plastid. In this study, we overexpressed AtFAX1 under the control of a seed specific promoter in Arabidopsis. The resultant overexpression lines (OEs) produced seeds which contained 21-33% more oil and 24-30% more protein per seed than those of the wild type (WT). The increased oil content was probably because of the enhanced FA and TAG synthetic activity. The seed size and weight were both increased accordingly. In addition, the seed number per silique and silique number per plant had no changes in transgenic plants. Taken together, our results demonstrated that seed specific overexpression of AtFAX1 could promote oil accumulation in Arabidopsis seeds and manipulating FA transportation is a feasible strategy for increasing the seed oil content.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  AtFAX1; Biofuel; Fatty acid transport; Plant oil; Seed oil content

Mesh:

Substances:

Year:  2018        PMID: 29654768     DOI: 10.1016/j.bbrc.2018.04.081

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  10 in total

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2.  A Well-Oiled Machine: Two Fatty Acid Exporters Involved in Seed Oil Biosynthesis.

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4.  Comprehensive evaluation of fuel properties and complex regulation of intracellular transporters for high oil production in developing seeds of Prunus sibirica for woody biodiesel.

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5.  Increased expression of fatty acid and ABC transporters enhances seed oil production in camelina.

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6.  Integument-Specific Transcriptional Regulation in the Mid-Stage of Flax Seed Development Influences the Release of Mucilage and the Seed Oil Content.

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Authors:  Janick Peter; Marie Huleux; Benjamin Spaniol; Frederik Sommer; Jens Neunzig; Michael Schroda; Yonghua Li-Beisson; Katrin Philippar
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9.  4D genetic networks reveal the genetic basis of metabolites and seed oil-related traits in 398 soybean RILs.

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Review 10.  Mining of Potential Gene Resources for Breeding Nutritionally Improved Maize.

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  10 in total

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