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从代谢角度来讲:‘甜心贝尔’杂交柑橘对黄龙病耐受性背后的可能原因。

Metabolically speaking: Possible reasons behind the tolerance of 'Sugar Belle' mandarin hybrid to huanglongbing.

作者信息

Killiny Nabil, Valim Maria Filomena, Jones Shelley E, Omar Ahmad A, Hijaz Faraj, Gmitter Fred G, Grosser Jude W

机构信息

Department of Plant Pathology, University of Florida, IFAS, CREC, 700 Experiment Station Rd, Lake Alfred, FL 33850, USA.

Department of Plant Pathology, University of Florida, IFAS, CREC, 700 Experiment Station Rd, Lake Alfred, FL 33850, USA.

出版信息

Plant Physiol Biochem. 2017 Jul;116:36-47. doi: 10.1016/j.plaphy.2017.05.001. Epub 2017 May 4.

Abstract

Huanglongbing (HLB) is currently considered the most destructive disease of citrus. Since its spread to the Americas, HLB has killed millions of trees and caused a sharp decline in production in many citrus growing regions. With the continuous spread of HLB disease in Florida and worldwide, there is an urgent need for the development of commercial citrus cultivars with a strong tolerance to HLB. Interestingly, field observations showed that some of the recently released mandarin hybrids such as 'Sugar Belle' were tolerant to HLB. In this study, we investigated the volatile and non-volatile metabolites of greenhouse-grown 'Sugar Belle' mandarin and four of its ancestors in order to understand why 'Sugar Belle' mandarin is relatively tolerant to HLB. Leaf volatiles were directly extracted with hexane and analyzed using gas chromatography-mass spectrometry (GC-MS). Leaf polar metabolites were extracted with a mixture of methanol:water (1:1, v/v), derivatized to their trimethylsilyl ethers, and analyzed using GC-MS. Forty-seven volatile compounds and forty-two polar metabolites were detected in 'Sugar Belle' mandarin leaves and its ancestors. 'Sugar Belle' was high in several volatiles such as α-thujene, para-cymene, γ-terpinene, thymol, β-elemene, and (E)-β-caryophyllene. Some of these volatiles, especially thymol, β-elemene, and (E)-β-caryophyllene are known for their anti-microbial activity. In addition, 'Sugar Belle' mandarin was the highest in synephrine, benzoic acid, ferulic acid, caffeic acid, chiro-inositol, fructose, glucose, threonic acid, saccharic acid, and galactaric acid, and the second in threonine, malic acid, and myo-inositol compared to the ancestors. Phenolic compounds such as benzoic, ferulic, and caffeic acids may act as antibacterial agents, whereas others like sugar alcohols may protect 'Sugar Belle' mandarin from stress during pathogen attack. The tolerance of 'Sugar Belle' and other newly released mandarin hybrids should be further evaluated using greenhouse controlled studies. If tolerance of these hybrids is confirmed, they could be used to replace the traditionally susceptible cultivars.

摘要

黄龙病(HLB)目前被认为是柑橘最具毁灭性的病害。自其传播至美洲以来,黄龙病已导致数百万棵树木死亡,并使许多柑橘种植区的产量急剧下降。随着黄龙病在佛罗里达州及全球范围内的持续传播,迫切需要培育出对黄龙病具有强耐受性的商业柑橘品种。有趣的是,实地观察表明,一些最近推出的柑橘杂交品种,如“糖美人”,对黄龙病具有耐受性。在本研究中,我们调查了温室种植的“糖美人”柑橘及其四个亲本的挥发性和非挥发性代谢物,以了解“糖美人”柑橘相对耐受黄龙病的原因。叶片挥发性物质用己烷直接提取,并用气相色谱 - 质谱联用仪(GC - MS)进行分析。叶片极性代谢物用甲醇:水(1:1,v/v)的混合物提取,衍生化为其三甲基硅醚,并用GC - MS进行分析。在“糖美人”柑橘叶片及其亲本中检测到47种挥发性化合物和42种极性代谢物。“糖美人”在几种挥发性物质中含量较高,如α - 侧柏烯、对伞花烃、γ - 萜品烯、百里香酚、β - 榄香烯和(E) - β - 石竹烯。其中一些挥发性物质,特别是百里香酚、β - 榄香烯和(E) - β - 石竹烯以其抗菌活性而闻名。此外,与亲本相比,“糖美人”柑橘中的辛弗林、苯甲酸、阿魏酸、咖啡酸、手性肌醇、果糖、葡萄糖、苏糖酸、糖二酸和半乳糖二酸含量最高,在苏氨酸、苹果酸和肌醇含量方面位居第二。苯甲酸、阿魏酸和咖啡酸等酚类化合物可能作为抗菌剂,而其他如糖醇类物质可能在病原体攻击期间保护“糖美人”柑橘免受胁迫。应使用温室对照研究进一步评估“糖美人”和其他新推出的柑橘杂交品种的耐受性。如果这些杂交品种的耐受性得到证实,它们可用于替代传统上易感的品种。

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