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猕猴桃对 pv. 的抗性和由 Acibenzolar-S-methyl 和茉莉酸甲酯诱导的防御反应因品种而异。

Kiwifruit Resistance to and pv. and Defence Induction by Acibenzolar-S-methyl and Methyl Jasmonate Are Cultivar Dependent.

机构信息

Ruakura Research Centre, The New Zealand Institute for Plant and Food Research Limited, Hamilton 3214, New Zealand.

Palmerston North Research Centre, The New Zealand Institute for Plant and Food Research Limited, Palmerston North 4410, New Zealand.

出版信息

Int J Mol Sci. 2023 Nov 3;24(21):15952. doi: 10.3390/ijms242115952.

Abstract

Pathogen susceptibility and defence gene inducibility were compared between the cultivar 'Hortgem Tahi' and the two cultivars of 'Hayward' and 'Zesy002'. Plants were treated with acibenzolar-s-methyl (ASM) or methyl jasmonate (MeJA) one week before inoculation with pv. (Psa biovar3) or , or secondary induction with chitosan+glucan (Ch-Glu) as a potential pathogen proxy. Defence expression was evaluated by measuring the expression of 18 putative defence genes. 'Hortgem Tahi' was highly susceptible to sclerotinia and very resistant to Psa, whereas 'Zesy002' was highly resistant to both, and 'Hayward' was moderately susceptible to both. Gene expression in 'Hayward' and 'Zesy002' was alike but differed significantly from 'Hortgem Tahi' which had higher basal levels of , , , and but lower expression of and . Treatment with ASM caused upregulation of , , , and in all cultivars and induced resistance to Psa in 'Zesy002' and 'Hayward' but decreased resistance to sclerotinia in 'Zesy002'. MeJA application caused upregulation of LOX2 and downregulation of , and but did not affect disease susceptibility. The Ch-Glu inducer induced PR-gene families in each cultivar, highlighting its possible effectiveness as an alternative to actual pathogen inoculation. The significance of variations in fundamental and inducible gene expression among the cultivars is explored.

摘要

病原菌易感性和防御基因诱导性在 'Hortgem Tahi' 品种与 'Hayward' 和 'Zesy002' 两个品种之间进行了比较。在接种 pv. (Psa 生物型 3)或 之前一周,用 acibenzolar-s-methyl (ASM) 或茉莉酸甲酯 (MeJA) 处理植物,或用壳聚糖+葡聚糖 (Ch-Glu) 进行二次诱导作为潜在的病原菌替代物。通过测量 18 个假定防御基因的表达来评估防御表达。'Hortgem Tahi'对菌核病高度敏感,对 Psa 非常抗性,而 'Zesy002' 对两者都高度抗性,'Hayward' 对两者都中度敏感。'Hayward'和'Zesy002'的基因表达相似,但与 'Hortgem Tahi' 有显著差异,'Hortgem Tahi' 的 、 、 和 基础水平较高,但 和 的表达水平较低。ASM 处理导致所有品种的 、 、 和 上调,并诱导 'Zesy002' 和 'Hayward' 对 Psa 的抗性,但降低了 'Zesy002' 对菌核病的抗性。MeJA 处理导致 LOX2 上调和 、 、 下调,但不影响发病敏感性。Ch-Glu 诱导剂在每个品种中诱导 PR 基因家族,突出了其作为实际病原菌接种替代物的可能有效性。探讨了品种间基本和诱导基因表达变化的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93b2/10647243/8b32ceaaa762/ijms-24-15952-g001.jpg

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