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酵母提取物诱导的钩藤根培养物中葡萄糖吲哚生物碱积累参与防御反应。

Glucoindole alkaloid accumulation induced by yeast extract in Uncaria tomentosa root cultures is involved in defense response.

作者信息

Correa-Higuera Lady Johana, Sepúlveda-García Edgar Baldemar, Ponce-Noyola Teresa, Trejo-Espino José Luis, Jiménez-Aparicio Antonio Ruperto, Luna-Palencia Gabriela R, Trejo-Tapia Gabriela, Ramos-Valdivia Ana C

机构信息

Departamento de Biotecnología, Centro de Desarrollo de Productos Bióticos, Instituto Politécnico Nacional (CEPROBI-IPN), 62730, Yautepec, Morelos, Mexico.

Departamento de Biotecnología y Bioingeniería, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Av. I. P. N. 2508. Col. San Pedro Zacatenco, 07360, Mexico City, Mexico.

出版信息

Biotechnol Lett. 2019 Oct;41(10):1233-1244. doi: 10.1007/s10529-019-02714-1. Epub 2019 Aug 6.

Abstract

OBJECTIVE

To evaluate the induction of monoterpenoid indole alkaloids (MIA) and phenolic compound production by yeast extract (YE) and its relationship with defense responses in Uncaria tomentosa (Rubiaceae) root cultures.

RESULTS

Root cultures were elicited by YE at three concentrations. The 0.5 mg YE ml treatment did not affect cell viability but increased the hydrogen peroxide concentration by 5.7 times; guaiacol peroxidase activity by twofold; and the glucoindole alkaloid 3α-dihydrocadambine (DHC) content by 2.6 times (to 825.3 ± 27.3 μg g). This treatment did not affect the contents of monoterpenoid oxindole alkaloids or chlorogenic acids. In response to 0.5 mg YE ml treatment, the transcript levels of MIA biosynthetic genes, TDC and LAMT, increased 5.4 and 1.9-fold, respectively, that of SGD decreased by 32%, and that of STR did not change. The transcript levels of genes related to phenolic compounds, PAL, CHS and HQT, increased by 1.7, 7.7, and 1.2-fold, respectively. Notably, the transcript levels of Prx1 and Prx encoding class III peroxidases increased by 1.4 and 2.5-fold.

CONCLUSION

The YE elicitor induced an antioxidant defense response, increased the transcript levels of genes encoding enzymes related to strictosidine biosynthesis precursors and class III peroxidases, and decreased the transcript level of SGD. Thus, YE could stimulate antifungal DHC production in root cultures of U. tomentosa.

摘要

目的

评估酵母提取物(YE)对单萜吲哚生物碱(MIA)的诱导作用以及酚类化合物的产生,并探讨其与毛钩藤(茜草科)根培养物中防御反应的关系。

结果

用三种浓度的YE对根培养物进行诱导处理。0.5 mg YE/ml的处理不影响细胞活力,但使过氧化氢浓度增加了5.7倍;愈创木酚过氧化物酶活性提高了两倍;葡萄糖吲哚生物碱3α-二氢卡丹宾(DHC)含量增加了2.6倍(达到825.3±27.3 μg/g)。该处理不影响单萜吲哚生物碱或绿原酸的含量。在0.5 mg YE/ml处理下,MIA生物合成基因TDC和LAMT的转录水平分别增加了5.4倍和1.9倍,SGD的转录水平下降了32%,STR的转录水平没有变化。与酚类化合物相关的基因PAL、CHS和HQT的转录水平分别增加了1.7倍、7.7倍和1.2倍。值得注意的是,编码III类过氧化物酶的Prx1和Prx的转录水平分别增加了1.4倍和2.5倍。

结论

YE诱导剂引发了抗氧化防御反应,提高了与士的宁生物合成前体相关的酶和III类过氧化物酶的编码基因的转录水平,并降低了SGD的转录水平。因此,YE可以刺激毛钩藤根培养物中抗真菌DHC的产生。

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