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用细菌环二肽对种子进行生物引发处理可激发黄瓜和辣椒的免疫力。

Seed defense biopriming with bacterial cyclodipeptides triggers immunity in cucumber and pepper.

机构信息

Molecular Phytobacteriology Laboratory, KRIBB, Daejeon, 34141, South Korea.

Eco-Friendly New Materials Research Center, KRICT, Daejeon, 34114, South Korea.

出版信息

Sci Rep. 2017 Oct 27;7(1):14209. doi: 10.1038/s41598-017-14155-9.

Abstract

Seed priming is to expose seeds to specific compounds to enhance seed germination. Few studies of plant immune activation through seed priming have been conducted. Here, we introduce an emerging technology that combines seed priming with elicitation of plant immunity using biologically active compounds. This technology is named 'seed defense biopriming' (SDB). We prepared heat-stable metabolites from 1,825 root-associated Bacillus spp. isolated from the rhizosphere in South Korea. These preparations were tested for their ability to induce SDB in cucumber and pepper seeds and trigger plant immunity. SDB with heat-stable metabolites of the selected Bacillus gaemokensis strain PB69 significantly reduced subsequent bacterial diseases under in vitro and field conditions and increased fruit yield. Transcriptional analysis of induced resistance marker genes confirmed the upregulation of salicylic acid, ethylene, and jasmonic acid signaling. Mortality of the insect pest Spodoptera litura increased when larvae fed on SDB-treated cucumber tissues. Analysis of the causative bacterial metabolites identified a leucine-proline cyclodipeptide and a commercially obtained leucine-proline cyclodipeptide induced similar results as treatment with the bacterial preparation. Our results indicate that SDB treatment with the heat-stable bacterial metabolite effectively elicited immunity and controlled disease in seedlings to whole plants, thereby increasing yield even under field conditions.

摘要

种子引发是指将种子暴露于特定化合物中以增强种子发芽。目前,通过种子引发来激活植物免疫的研究较少。在这里,我们介绍一种新兴技术,该技术将种子引发与使用生物活性化合物引发植物免疫相结合。该技术被命名为“种子防御生物引发(SDB)”。我们从韩国根际分离的 1825 株根相关芽孢杆菌中制备了热稳定代谢物。这些制剂被测试诱导黄瓜和辣椒种子 SDB 的能力,并触发植物免疫。具有选定的 Bacillus gaemokensis 菌株 PB69 的热稳定代谢物的 SDB 在体外和田间条件下显著降低了随后的细菌病害,并增加了果实产量。诱导抗性标记基因的转录分析证实了水杨酸、乙烯和茉莉酸信号的上调。当小菜蛾幼虫以 SDB 处理过的黄瓜组织为食时,其死亡率增加。对致病细菌代谢物的分析鉴定出一种亮氨酸-脯氨酸环二肽,并且市售的亮氨酸-脯氨酸环二肽与细菌制剂处理具有相似的结果。我们的结果表明,SDB 用热稳定细菌代谢物处理可有效诱导免疫,并控制幼苗到整株植物的疾病,从而即使在田间条件下也能提高产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d77b/5660235/0e4dc42bbb66/41598_2017_14155_Fig1_HTML.jpg

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