Inducible expression of DEFECTIVE IN ANTHER DEHISCENCE 1 enhances triacylglycerol accumulation and lipid droplet formation in vegetative tissues

IF 5.7 1区 生物学 Q1 PLANT SCIENCES The Plant Journal Pub Date : 2025-03-07 DOI:10.1111/tpj.70088
Athen N. Kimberlin, Sakil Mahmud, Rebekah E. Holtsclaw, Alexie Walker, Kristyn Conrad, Stewart A. Morley, Ruth Welti, Doug K. Allen, Abraham J. Koo
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Abstract

Bioengineering efforts to increase oil in non-storage vegetative tissues, which constitute the majority of plant biomass, are promising sustainable sources of renewable fuels and feedstocks. While plants typically do not accumulate significant amounts of triacylglycerol (TAG) in vegetative tissues, we report here that the expression of a plastid-localized phospholipase A1 protein, DEFECTIVE IN ANTHER DEHISCENCE1 (DAD1), led to a substantial increase in leaf TAG in Arabidopsis. Using an inducible system to control DAD1 expression circumvented growth penalties associated with overexpressing DAD1 and resulted in a rapid burst of TAG within several hours. The increase of TAG was accompanied by the formation of oil bodies in the leaves, petioles, and stems, but not in the roots. Lipid analysis indicated that the increase in TAG was negatively correlated with plastidial galactolipid concentration. The fatty acid (FA) composition of TAG predominantly consisted of 18:3. Expression of DAD1 in the fad3fad7fad8 mutant, devoid of 18:3, resulted in comparable TAG accumulation with 18:2 as the major FA constituent, reflecting the flexible in vivo substrate use of DAD1. The transient expression of either Arabidopsis DAD1 or Nicotiana benthamiana DAD1 (NbDAD1) in N. benthamiana leaves stimulated the accumulation of TAG. Similarly, transgenic soybeans expressing Arabidopsis DAD1 exhibited an accumulation of TAG in the leaves, showcasing the biotechnological potential of this technology. In summary, inducible expression of a plastidial lipase resulted in enhanced oil production in vegetative tissues, extending our understanding of lipid remodeling mediated by DAD1 and offering a valuable tool for metabolic engineering.

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诱导表达缺陷的IN花药开裂1促进营养组织中甘油三酯的积累和脂滴的形成
生物工程努力增加非储存性营养组织中的油,这构成了植物生物量的大部分,是有希望的可再生燃料和原料的可持续来源。虽然植物通常不会在营养组织中积累大量的三酰甘油(TAG),但我们在这里报道了一种质体定位磷脂酶A1蛋白的表达,即花药开裂缺陷1 (DAD1),导致拟南芥叶片TAG的显著增加。使用诱导系统来控制DAD1表达,避免了与DAD1过表达相关的生长惩罚,并导致TAG在数小时内快速爆发。TAG的增加伴随着叶片、叶柄和茎中油体的形成,而根中没有油体的形成。脂质分析显示TAG的升高与质体半乳脂浓度呈负相关。TAG的脂肪酸(FA)组成主要为18:3。在缺乏18:3的fad3fad7fad8突变体中,DAD1的表达导致了与18:2作为主要FA成分相当的TAG积累,反映了DAD1在体内对底物的灵活利用。拟南芥DAD1或本烟DAD1 (NbDAD1)在本烟叶片中的瞬时表达均刺激了TAG的积累。同样,表达拟南芥DAD1的转基因大豆在叶片中也表现出TAG的积累,显示了该技术的生物技术潜力。总之,诱导表达一种可塑性脂肪酶可提高营养组织的油脂产量,扩展了我们对DAD1介导的脂质重塑的理解,并为代谢工程提供了有价值的工具。
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来源期刊
The Plant Journal
The Plant Journal 生物-植物科学
CiteScore
13.10
自引率
4.20%
发文量
415
审稿时长
2.3 months
期刊介绍: Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community. Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.
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