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原发性脉管系统中创伤应答茉莉酸动力学。

Wound-response jasmonate dynamics in the primary vasculature.

机构信息

Institute of Pharmaceutical Sciences of Western Switzerland, University of Geneva, CMU, 1206, Geneva, Switzerland.

School of Pharmaceutical Science, University of Geneva, CMU, 1206, Geneva, Switzerland.

出版信息

New Phytol. 2023 Nov;240(4):1484-1496. doi: 10.1111/nph.19207. Epub 2023 Aug 20.

Abstract

The links between wound-response electrical signalling and the activation of jasmonate synthesis are unknown. We investigated damage-response remodelling of jasmonate precursor pools in the Arabidopsis thaliana leaf vasculature. Galactolipids and jasmonate precursors in primary veins from undamaged and wounded plants were analysed using MS-based metabolomics and NMR. In parallel, DAD1-LIKE LIPASEs (DALLs), which control the levels of jasmonate precursors in veins, were identified. A novel galactolipid containing the jasmonate precursor 12-oxo-phytodienoic acid (OPDA) was identified in veins: sn-2-O-(cis-12-oxo-phytodienoyl)-sn-3-O-(β-galactopyranosyl) glyceride (sn-2-OPDA-MGMG). Lower levels of sn-1-OPDA-MGMG were also detected. Vascular OPDA-MGMGs, sn-2-18:3-MGMG and free OPDA pools were reduced rapidly in response to damage-activated electrical signals. Reduced function dall2 mutants failed to build resting vascular sn-2-OPDA-MGMG and OPDA pools and, upon wounding, dall2 produced less jasmonoyl-isoleucine (JA-Ile) than the wild-type. DALL3 acted to suppress excess JA-Ile production after wounding, whereas dall2 dall3 double mutants strongly reduce jasmonate signalling in leaves distal to wounds. LOX6 and DALL2 function to produce OPDA and the non-bilayer-forming lipid sn-2-OPDA-MGMG in the primary vasculature. Membrane depolarizations trigger rapid depletion of these molecules. We suggest that electrical signal-dependent lipid phase changes help to initiate vascular jasmonate synthesis in wounded leaves.

摘要

伤口反应电信号与茉莉酸合成的激活之间的联系尚不清楚。我们研究了拟南芥叶片脉管系统中茉莉酸前体库的损伤反应重塑。使用基于 MS 的代谢组学和 NMR 分析了来自未受伤和受伤植物的主脉中的半乳糖脂和茉莉酸前体。同时,鉴定了控制脉管中茉莉酸前体水平的 DAD1 样脂酶 (DALLs)。在脉管中鉴定出一种新型含有茉莉酸前体 12-氧代-植物二烯酸 (OPDA) 的半乳糖脂:sn-2-O-(顺式-12-氧代-植物二烯酰基)-sn-3-O-(β-半乳糖吡喃糖苷基)甘油 (sn-2-OPDA-MGMG)。还检测到 sn-1-OPDA-MGMG 的水平较低。血管 OPDA-MGMG、sn-2-18:3-MGMG 和游离 OPDA 库在响应损伤激活的电信号后迅速减少。功能降低的 dall2 突变体未能建立静止的血管 sn-2-OPDA-MGMG 和 OPDA 库,并且在受伤后 dall2 产生的茉莉酰异亮氨酸 (JA-Ile) 比野生型少。DALL3 在受伤后起作用以抑制过量的 JA-Ile 产生,而 dall2 dall3 双突变体则强烈降低叶片远离伤口处的茉莉酸信号。LOX6 和 DALL2 的功能是在初级脉管系统中产生 OPDA 和非双层形成脂质 sn-2-OPDA-MGMG。膜去极化会迅速耗尽这些分子。我们认为,电信号依赖性脂质相变化有助于启动受伤叶片中血管的茉莉酸合成。

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