Chen Junjie, Gao Jing, Zhang Lingling, Zhang Lin
Key Laboratory of Cultivation and Protection for Non-Wood Forest Trees, Ministry of Education, Central South University of Forestry and Technology, Changsha, China.
CAS Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Wuhan, China.
Front Plant Sci. 2023 Mar 7;14:1144853. doi: 10.3389/fpls.2023.1144853. eCollection 2023.
The seed oil of tung tree is rich in a-eleostearic acid (ESA), which endows tung oil with the characteristic of an excellently dry oil. The stearoyl-acyl carrier protein δ9 desaturase (SAD) is a rate-limiting enzyme that converts the stearic acid to the oleic acid, the substrate for the production of the α-ESA. However, the function of the two predicted and genes in the tung tree has not been determined. In this study, quantitative real-time PCR (qRT-PCR) analysis showed that and were expressed in multiple organs of tung tree but were highly expressed in the seed during the oil rapid accumulation period. Heterologous expression of and could promote the production of oleic acid and its derivatives in Arabidopsis thaliana and yeast BY4741, indicating that and possess the stearoyl-ACP desaturases function. Furthermore, both and could significantly improve seed oil accumulation in Arabidopsis. VfSAD1 could also significantly promote the oil accumulation in the yeast BY4741 strain. In addition, overexpression of and enhanced the tolerance of yeast and Arabidopsis seedlings to low temperature stress. This study indicates that the two genes play a vital role in the process of oil accumulation and fatty acid biosynthesis in the tung tree seed, and both of them could be used for molecular breeding in tung tree and other oil crops.
油桐种子油富含α-桐酸(ESA),这赋予了桐油作为优质干性油的特性。硬脂酰-酰基载体蛋白δ9去饱和酶(SAD)是一种限速酶,可将硬脂酸转化为油酸,而油酸是合成α-ESA的底物。然而,油桐中两个预测的 和 基因的功能尚未确定。在本研究中,实时定量PCR(qRT-PCR)分析表明, 和 在油桐的多个器官中均有表达,但在种子油快速积累期,它们在种子中高表达。 和 在拟南芥和酵母BY4741中的异源表达可促进油酸及其衍生物的产生,表明 和 具有硬脂酰-ACP去饱和酶功能。此外, 和 均能显著提高拟南芥种子油的积累。VfSAD1也能显著促进酵母BY4741菌株的油脂积累。此外, 和 的过表达增强了酵母和拟南芥幼苗对低温胁迫的耐受性。本研究表明,这两个 基因在油桐种子油积累和脂肪酸生物合成过程中起着至关重要的作用,它们均可用于油桐和其他油料作物的分子育种。