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感染胶孢炭疽菌后油棕(Elaeis guineensis Jacq.)幼苗根部防御反应的变化。

Defense response changes in roots of oil palm (Elaeis guineensis Jacq.) seedlings after internal symptoms of Ganoderma boninense Pat. infection.

机构信息

Plant Breeding and Biotechnology Study Program, Department of Agronomy and Horticulture, Faculty of Agriculture, Bogor Agricultural University (IPB University), Jl. Meranti, Dramaga Campus, Bogor, 16680, Indonesia.

Indonesian Oil Palm Research Institute, Jl. Brigjen Katamso No. 51, Medan, North Sumatera, 20158, Indonesia.

出版信息

BMC Plant Biol. 2022 Mar 24;22(1):139. doi: 10.1186/s12870-022-03493-0.

Abstract

BACKGROUND

The development of basal stem rot (BSR) disease in oil palm is associated with lignin during vegetative growth and salicylic acid (SA) biosynthesis. The increase in the lignin content, SA accumulation, growth, and root biomass could indicate the resistance of oil palm seedlings to BSR disease. Therefore, although there are many studies on the interactions between the Ganoderma boninense and oil palm, research on evaluation of physiological processes, biochemistry, and molecules occurring during early internal symptoms of BSR in roots of oil palm (Elaeis guineensis Jacq.) are essential.

RESULTS

Ganoderma boninense inoculation indicated that C01, C02, and C05 seedlings were susceptible, while the other three seedlings, C03, C07, and C08, were resistant based on Ganoderma Disease Index (GDI). Infection by G. boninense in the most susceptible seedlings C05 reduced fresh weight of roots (FW) by 9.0%, and lignin content by 10.9%. The most resistant seedlings C08 were reduced by only 8.4%, and 0.2% regarding their fresh weight and lignin content, respectively. BSR disease induced SA accumulation in the most susceptible C08 and decreased peroxidase (PRX) enzyme (EC 1.11.1.7) activities in root tissues of oil palm seedlings except C07 and C08 where PRX activities remained high in the 4 months after planting. Infection with G. boninense also increased glutathione S-transferase U19-like (EgGSTU19) gene expression in the root tissues of susceptible seedlings, while laccase-24 (EgLCC24) gene expression was associated with resistance against BSR disease. Based on the relative expression of twelve genes, two genes are categorized as receptors (EgWAKL5, EgMIK1), two genes as biosynthesis signal transduction compound (EgOPR5, EgACO1), five genes as defense responses (EgROMT, EgSOT12, EgLCC24, EgGLT3, EgGSTU19), and one gene as trans-resveratrol di-O-methyltransferase-like (EgRNaseIII) predicted related to BSR infection. While two other genes remain unknown (EgUnk1, EgUnk2).

CONCLUSIONS

Ganoderma infection-induced SA accumulation and lignification in resistant accessions promote the seedlings root biomass. Oil palm seedlings have a synergistic physical, biochemical, and molecular defense mechanism to the BSR disease. The utilization of nucleotide-based molecular markers using EgLCC24 gene is able to detect resistant oil palm seedlings to G. boninense.

摘要

背景

油棕在营养生长阶段木质素和水杨酸(SA)生物合成与基部茎腐病(BSR)的发展有关。木质素含量、SA 积累、生长和根生物量的增加,可能表明油棕幼苗对 BSR 病的抗性。因此,尽管有许多关于胶孢炭疽菌与油棕相互作用的研究,但对油棕根内 BSR 早期内部症状发生的生理过程、生物化学和分子的研究至关重要。

结果

胶孢炭疽菌接种表明,C01、C02 和 C05 幼苗易感,而另外三个幼苗 C03、C07 和 C08 则具有抗性,这是基于胶孢炭疽菌疾病指数(GDI)得出的。在最易感的 C05 幼苗中,胶孢炭疽菌的感染导致根鲜重(FW)减少 9.0%,木质素含量减少 10.9%。最具抗性的 C08 幼苗分别减少了 8.4%和 0.2%。BSR 病诱导最易感的 C08 中 SA 积累,并降低油棕幼苗根组织中过氧化物酶(PRX)酶(EC 1.11.1.7)的活性,但 C07 和 C08 中 PRX 活性在种植后 4 个月内仍然很高。胶孢炭疽菌的感染也增加了易感幼苗根组织中谷胱甘肽 S-转移酶 U19 样(EgGSTU19)基因的表达,而漆酶-24(EgLCC24)基因的表达与 BSR 病的抗性有关。基于 12 个基因的相对表达,有两个基因被归类为受体(EgWAKL5、EgMIK1),两个基因作为生物合成信号转导化合物(EgOPR5、EgACO1),五个基因作为防御反应(EgROMT、EgSOT12、EgLCC24、EgGLT3、EgGSTU19),一个基因作为反式白藜芦醇二-O-甲基转移酶样(EgRNaseIII),预测与 BSR 感染有关。而另外两个基因仍然未知(EgUnk1、EgUnk2)。

结论

胶孢炭疽菌诱导的 SA 积累和木质素在抗性品系中促进了幼苗的根生物量。油棕幼苗具有协同的物理、生化和分子防御机制来抵抗 BSR 病。利用 EgLCC24 基因的核苷酸基分子标记能够检测到对胶孢炭疽菌具有抗性的油棕幼苗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c178/8944027/c748b01930ac/12870_2022_3493_Fig1_HTML.jpg

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