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对遏蓝菜脂滴蛋白的靶向调控会影响脂滴形态和种子油含量。

Targeted modulation of pennycress lipid droplet proteins impacts droplet morphology and seed oil content.

作者信息

Guzha Athanas, Gautam Barsanti, Marchiafava Damiano, Ver Sagun Julius, Garcia Tatiana, Jarvis Brice A, Barbaglia-Hurlock Allison M, Johnston Christopher, Grotewold Erich, Sedbrook John C, Alonso Ana Paula, Chapman Kent D

机构信息

BioDiscovery Institute, Department of Biological Sciences, University of North Texas, Denton, 76203, Texas, USA.

School of Biological Sciences, Illinois State University, Normal, Illinois, USA.

出版信息

Plant J. 2024 Dec;120(5):2151-2171. doi: 10.1111/tpj.17109. Epub 2024 Oct 28.

Abstract

Lipid droplets (LDs) are unusual organelles that have a phospholipid monolayer surface and a hydrophobic matrix. In oilseeds, this matrix is nearly always composed of triacylglycerols (TGs) for efficient storage of carbon and energy. Various proteins play a role in their assembly, stability and turnover, and even though the major structural oleosin proteins in seed LDs have been known for decades, the factors influencing LD formation and dynamics are still being uncovered mostly in the "model oilseed" Arabidopsis. Here we identified several key LD biogenesis proteins in the seeds of pennycress, a potential biofuel crop, that were correlated previously with seed oil content and characterized here for their participation in LD formation in transient expression assays and stable transgenics. One pennycress protein, the lipid droplet associated protein-interacting protein (LDIP), was able to functionally complement the Arabidopsis ldip mutant, emphasizing the close conservation of lipid storage among these two Brassicas. Moreover, loss-of-function ldip mutants in pennycress exhibited increased seed oil content without compromising plant growth, raising the possibility that LDIP or other LD biogenesis factors may be suitable targets for improving yields in oilseed crops more broadly.

摘要

脂滴(LDs)是一种特殊的细胞器,具有磷脂单层表面和疏水基质。在油籽中,这种基质几乎总是由三酰甘油(TGs)组成,用于高效储存碳和能量。各种蛋白质在其组装、稳定性和周转中发挥作用,尽管种子脂滴中的主要结构油质蛋白已为人所知数十年,但影响脂滴形成和动态的因素仍主要在“模式油籽”拟南芥中被揭示。在这里,我们在潜在生物燃料作物水芹种子中鉴定了几种关键的脂滴生物发生蛋白,这些蛋白先前与种子油含量相关,并在此通过瞬时表达试验和稳定转基因对它们参与脂滴形成的情况进行了表征。一种水芹蛋白,即脂滴相关蛋白相互作用蛋白(LDIP),能够在功能上互补拟南芥ldip突变体,强调了这两种十字花科植物在脂质储存方面的密切保守性。此外,水芹中功能缺失的ldip突变体种子油含量增加,而不影响植物生长,这增加了LDIP或其他脂滴生物发生因子可能更广泛地成为提高油籽作物产量合适靶点的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac9a/11629743/41cef472e99f/TPJ-120-2151-g009.jpg

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