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沉默编码ω-3 脂肪酸去饱和酶的基因改变了大豆的种子大小和豇豆斑驳病毒的积累。

Silencing genes encoding omega-3 fatty acid desaturase alters seed size and accumulation of Bean pod mottle virus in soybean.

机构信息

Department of Plant Pathology, University of Kentucky, Lexington, USA.

出版信息

Mol Plant Microbe Interact. 2011 Apr;24(4):506-15. doi: 10.1094/MPMI-09-10-0201.

Abstract

Omega-3 fatty acid desaturase (FAD3)-catalyzed conversion of linoleic acid to linolenic acid (18:3) is an important step for the biosynthesis of fatty acids as well as the phytohormone jasmonic acid (JA) in plants. We report that silencing three microsomal isoforms of GmFAD3 enhanced the accumulation of Bean pod mottle virus (BPMV) in soybean. The GmFAD3-silenced plants also accumulated higher levels of JA, even though they contained slightly reduced levels of 18:3. Consequently, the GmFAD3-silenced plants expressed JA-responsive pathogenesis-related genes constitutively and exhibited enhanced susceptibility to virulent Pseudomonas syringae. Increased accumulation of BPMV in GmFAD3-silenced plants was likely associated with their JA levels, because exogenous JA application also increased BPMV accumulation. The JA-derived increase in BPMV levels was likely not due to repression of salicylic acid (SA)-derived signaling because the GmFAD3-silenced plants were enhanced in SA-dependent defenses. Furthermore, neither exogenous SA application nor silencing the SA-synthesizing phenylalanine ammonia lyase gene altered BPMV levels in soybean. In addition to the altered defense responses, the GmFAD3-silenced plants also produced significantly larger and heavier seed. Our results indicate that loss of GmFAD3 enhances JA accumulation and, thereby, susceptibility to BPMV in soybean.

摘要

ω-3 脂肪酸去饱和酶(FAD3)催化亚油酸向亚麻酸(18:3)的转化,是植物脂肪酸以及植物激素茉莉酸(JA)生物合成的重要步骤。我们报告称,沉默大豆中三种微粒体同工型 GmFAD3 会增强豆荚斑驳病毒(BPMV)在大豆中的积累。GmFAD3 沉默的植株还积累了更高水平的 JA,尽管它们的 18:3 含量略低。因此,GmFAD3 沉默的植株持续表达 JA 响应的病程相关基因,并表现出对强毒丁香假单胞菌的易感性增强。GmFAD3 沉默植株中 BPMV 的积累增加可能与其 JA 水平有关,因为外源 JA 的应用也会增加 BPMV 的积累。JA 衍生的 BPMV 水平增加可能不是由于抑制水杨酸(SA)衍生的信号传导,因为 GmFAD3 沉默的植株增强了 SA 依赖的防御。此外,外源 SA 的应用或沉默 SA 合成苯丙氨酸解氨酶基因都不会改变大豆中 BPMV 的水平。除了改变防御反应外,GmFAD3 沉默的植株还产生了明显更大和更重的种子。我们的结果表明,GmFAD3 的缺失增强了 JA 的积累,从而增强了大豆对 BPMV 的易感性。

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