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首页> 外文期刊>Plant Physiology and Biochemistry >All roads lead to Rome: Towards understanding different avenues of tolerance to huanglongbing in citrus cultivars
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All roads lead to Rome: Towards understanding different avenues of tolerance to huanglongbing in citrus cultivars

机译:所有道路都通往罗马:在柑橘品种中了解对黄龙兵的不同宽度

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摘要

Citrus tolerance to huanglongbing could result from tolerance to the pathogen Candidatus Liberibacter asiaticus (CLas) and/or to its vector Diaphorina citri. Field observations and greenhouse-controlled studies showed that some citrus cultivars were more tolerant than others. However, the mechanism(s) behind the tolerance has not been determined yet. Using GC-MS, we investigated the volatile organic compounds (VOCs) and the non-volatile metabolite profiles of two tolerant citrus cultivars-Australian finger lime, 'LB8-9' Sugar Belle(.) mandarin hybrid, and a recently released mandarin hybrid 'Bingo'. The three were grafted onto the rootstock, Carrizo citrange. Our findings showed that the metabolomic profiles of Australian finger lime were different from that of 'LB8-9'. Finger lime was high in many amino acids and tricarboxylic acid intermediates, whereas 'LB8-9' was high in several amino acids, sugars, and sugar alcohols. `LB8-9' was high in thymol, which is known for its strong antimicrobial activity against a panel of pathogenic bacteria. The metabolomic profiles of 'Bingo' were intensely different from the other mandarin hybrid, 'LB8-9', including a reduced thymol biosynthetic pathway and low amounts of most of the amino acids and sugar alcohols. Remarkably, 1,8-cineole (eucalyptol) was only detected in 'Bingo', indicating that eucalyptol could have feeding and ovipositional repellency against D. cirri. The metabolite profiles generated for HLB-tolerant citrus species will improve the ability of citrus breeders and will allow them to take more informed decisions. Metabolomic profiling of HLB-tolerant citrus species could identify tolerance specific markers that can be introduced to other commercial citrus cultivars to improve their tolerance to HLB disease.
机译:对黄龙兵的柑橘耐受可能因病原体Candidatus和isiaticus(Clas)和/或其载体的载体癸酸Citri而导致耐受性。场观测和温室对照研究表明,一些柑橘品种比其他柑橘品种更耐受。然而,尚未确定公差背后的机制。使用GC-MS,我们研究了两种耐受性柑橘品种 - 澳大利亚手指石灰的挥发性有机化合物(VOC)和非挥发性代谢物谱,'LB8-9'Sugar Belle(。)普通话杂交,以及最近发布的普通话杂交'答对了'。这三者嫁接到砧木,Carrizo Citrange。我们的研究结果表明,澳大利亚手指石灰的代谢物谱不同于“LB8-9”。手指石灰在许多氨基酸和三羧酸中间体高,而“LB8-9”在几个氨基酸,糖和糖醇中高。 “LB8-9”在胸腺中很高,这是针对其对致病细菌面板的强抗微生物活性而闻名。 '宾果'的代谢物谱与其他普通话杂交,'LB8-9'的不同,包括降低的静脉化生物合成途径和少量大部分氨基酸和糖醇。值得注意的是,只有1,8-桉(桉树)在“宾果果岭”中仅检测到,表明桉树可能对D. Cirri喂养和产卵泄露。为HLB耐受性柑橘物种产生的代谢物谱将改善柑橘育种者的能力,并将允许他们采取更明智的决定。 HLB耐受性柑橘物种的代谢物分析可以鉴定可耐受可引入其他商业柑橘品种的特异性标志物,以改善其对HLB疾病的耐受性。

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