Biology Department, Brookhaven National Laboratory, Upton, NY, 11973, USA.
New Phytol. 2022 Nov;236(3):1128-1139. doi: 10.1111/nph.18392. Epub 2022 Aug 8.
Storage lipids (mostly triacylglycerols, TAGs) serve as an important energy and carbon reserve in plants, and hyperaccumulation of TAG in vegetative tissues can have negative effects on plant growth. Purple acid phosphatase2 (PAP2) was previously shown to affect carbon metabolism and boost plant growth. However, the effects of PAP2 on lipid metabolism remain unknown. Here, we demonstrated that PAP2 can stimulate a futile cycle of fatty acid (FA) synthesis and degradation, and mitigate negative growth effects associated with high accumulation of TAG in vegetative tissues. Constitutive expression of PAP2 in Arabidopsis thaliana enhanced both lipid synthesis and degradation in leaves and led to a substantial increase in seed oil yield. Suppressing lipid degradation in a PAP2-overexpressing line by disrupting sugar-dependent1 (SDP1), a predominant TAG lipase, significantly elevated vegetative TAG content and improved plant growth. Diverting FAs from membrane lipids to TAGs in PAP2-overexpressing plants by constitutively expressing phospholipid:diacylglycerol acyltransferase1 (PDAT1) greatly increased TAG content in vegetative tissues without compromising biomass yield. These results highlight the potential of combining PAP2 with TAG-promoting factors to enhance carbon assimilation, FA synthesis and allocation to TAGs for optimized plant growth and storage lipid accumulation in vegetative tissues.
储存脂质(主要是三酰基甘油(TAGs))是植物中重要的能量和碳储备,营养组织中 TAG 的过度积累会对植物生长产生负面影响。先前的研究表明,紫色酸性磷酸酶 2(PAP2)会影响碳代谢并促进植物生长。然而,PAP2 对脂质代谢的影响尚不清楚。在这里,我们证明 PAP2 可以刺激脂肪酸 (FA) 合成和降解的无效循环,并减轻与营养组织中 TAG 积累过高相关的负生长效应。在拟南芥中组成型表达 PAP2 可增强叶片中的脂质合成和降解,并导致种子油产量大幅增加。通过破坏主要的 TAG 脂肪酶糖依赖性 1(SDP1)来抑制 PAP2 过表达系中的脂质降解,可显著提高营养组织中的 TAG 含量并改善植物生长。通过组成型表达磷脂:二酰基甘油酰基转移酶 1(PDAT1)将 FAs 从膜脂质转移到 PAP2 过表达植物中的 TAG 中,可在不影响生物量产量的情况下大大增加营养组织中的 TAG 含量。这些结果强调了将 PAP2 与促进 TAG 形成的因子结合使用的潜力,以增强碳同化、FA 合成和分配到 TAGs 中,从而优化植物生长和营养组织中储存脂质的积累。