外源绿原酸对苹果自身绿原酸合成及灰霉病抗性的影响
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(西北农林科技大学园艺学院 陕西杨凌 712100)

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国家现代农业产业体系项目(nycytx-08-05-02);陕西省苹果产业重大专项研究课题(2020zdzx03-05-01);陕西省自然科学基金项目(2021JZ-15)


ffects of Exogenous Chlorogenic Acid on Resistance to Gray Mold of Apple and Its Own Chlorogenic Acid Synthesis
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(College of Horticulture, Northwest A & F University, Yangling 712100, Shaanxi)

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    摘要:

    为了探讨外源绿原酸对苹果灰霉病抗性及自身绿原酸合成的影响,用300 μg/mL绿原酸溶液处理富士苹果30 min,1 d后接种灰霉菌,以清水处理作为对照组(CK),统计病斑直径和发病率,测定绿原酸合成相关酶基因表达量及酶活性变化。结果表明:用300 μg/mL绿原酸处理后,苯丙烷代谢途径上游关键酶PAL、C4H、4CL活性显著增加,相应的基因表达量在接种灰霉菌6 h后均达到高峰,分别为CK组的10,5,2.5倍。同时,下游合成基因羟基肉桂酸-CoA酸酯/奎宁酸羟肉桂酸转移酶(HCT/HQT)48 h时处理组基因表达量达到峰值,约是CK组的3倍;对香豆酸3'-羟化酶(C3H)处理组在6 h和12 h时有两个较高的基因表达量,分别约为CK组基因表达量的3倍和5倍,刺激绿原酸合成量增加,从而诱导果实抗性增强,有效降低苹果灰霉病的发病率,减缓病斑扩张。结论:外源绿原酸处理能够诱导苯丙烷代谢途径酶类的响应,提高苹果体内自身的绿原酸水平,有效抑制苹果灰霉病。

    Abstract:

    In order to investigate the effect of exogenous chlorogenic acid on apple gray mold resistance and its own chlorogenic acid synthesis, Fuji apple was treated with 300 μg/mL chlorogenic acid solution for 30 min, and then inoculated with gray mold after 1 d, and treated with water as the control group (CK), the spot diameter and incidence were counted, and the changes in gene expression and enzyme activity of enzymes related to chlorogenic acid synthesis were determined. The results showed that after treatment with 300 μg/mL chlorogenic acid, the activities of PALC4H and 4CL, the key enzymes upstream of the phenolpropane metabolic pathway, increased significantly, and the corresponding gene expressions all reached the peak after 6 h of inoculation with gray mold, which were 10, 5 times and 2.5 times of the CK group, respectively. Meanwhile, the gene expression of the downstream synthesis gene hydroxycinnamic acid-CoA acid ester/ quinic acid hydroxycinnamic acid transferase (HCT/HQT) reached a peak at 48 h in the treated group, which was about 3 times higher than that in the CK group, and there were two higher gene expressions at 6 h and 12 h in the treated group for coumaric acid 3'-hydroxylase (C3H), which were about 3 times and 5 times higher than that in the CK group, respectively, stimulating chlorogenic acid synthesis This stimulated the increase of chlorogenic acid synthesis, which induced the increase of fruit resistance, effectively reduced the incidence of apple gray mold and slowed down the expansion of spots. Conclusion: Exogenous chlorogenic acid treatment can induce the response of enzymes of the phenolpropane metabolic pathway, increase the level of chlorogenic acid in apples, and effectively suppress apple gray mold.

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王大将,刘洪冲,张梦宇,岳正洋,周会玲.外源绿原酸对苹果自身绿原酸合成及灰霉病抗性的影响[J].中国食品学报,2023,23(3):309-317

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  • 收稿日期:2022-03-06
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  • 在线发布日期: 2023-04-06
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