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Journal of Zhejiang University SCIENCE B

ISSN 1673-1581(Print), 1862-1783(Online), Monthly

Hemin-induced increase in saponin content contributes to the alleviation of osmotic and cold stress damage to Conyza blinii in a heme oxygenase 1-dependent manner

Abstract: Hemin can improve the stress resistance of plants through the heme oxygenase system. Additionally, substances contained in plants, such as secondary metabolites, can improve stress resistance. However, few studies have explored the effects of hemin on secondary metabolite content. Therefore, the effects of hemin on saponin synthesis and the mechanism of plant injury relief by hemin in Conyza blinii were investigated in this study. Hemin treatment promoted plant growth and increased the antioxidant enzyme activity and saponin content of C. blinii under osmotic stress and cold stress. Further study showed that hemin could provide sufficient precursors for saponin synthesis by improving the photosynthetic capacity of C. blinii and increasing the gene expression of key enzymes in the saponin synthesis pathway, thus increasing the saponin content. Moreover, the promotion effect of hemin on saponin synthesis is dependent on heme oxygenase-1 and can be reversed by the inhibitor Zn-protoporphyrin-IX (ZnPPIX). This study revealed that hemin can increase the saponin content of C. blinii and alleviate the damage caused by abiotic stress, and it also broadened the understanding of the relationship between hemin and secondary metabolites in plant abiotic stress relief.

Key words: Hemin; Saponin; Conyza blinii; Heme oxygenase; Abiotic stress

Chinese Summary  <19> æ°¯åŒ–血红素通过血红素加氧酶-1ä¾èµ–æ–¹å¼è¯±å¯¼çš‚ç”™å«é‡å¢žåŠ ï¼Œæœ‰åŠ©äºŽå‡è½»æ¸—é€å’Œå†·èƒè¿«å¯¹é‡‘龙胆è‰çš„æŸä¼¤

目的:研究氯化血红素对金龙胆è‰çš‚è‹·å«é‡çš„å½±å“,以åŠä¸Žæ¤ç‰©éžç”Ÿç‰©èƒè¿«çš„相关性。
创新点:通过施加外æºæ°¯åŒ–血红素研究金龙胆è‰ä¸­çš‚è‹·çš„å˜åŒ–与冷èƒè¿«æˆ–渗é€èƒè¿«çš„相关性。
方法:在渗é€èƒè¿«å’Œä½Žæ¸©èƒè¿«ä¸‹ï¼Œæ–½åŠ å¤–æºæ°¯åŒ–血红素åŠå…¶æŠ‘制剂,检测并分æžé‡‘龙胆è‰å¤šé¡¹ç”Ÿç†æŒ‡æ ‡ã€çš‚è‹·å«é‡å·®å¼‚和关键基因表达é‡å·®å¼‚。
结论:氯化血红素能通过ä¾èµ–血红素加氧酶-1的调控方å¼ï¼Œæ高金龙胆è‰çš‚è‹·çš„å«é‡ï¼Œä»Žè€Œå‡è½»éžç”Ÿç‰©èƒè¿«å¯¹é‡‘龙胆è‰çš„伤害。

关键è¯ç»„:氯化血红素;皂苷;金龙胆è‰ï¼›è¡€çº¢ç´ åŠ æ°§é…¶ï¼›éžç”Ÿç‰©èƒè¿«


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DOI:

10.1631/jzus.B2000697

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On-line Access:

2021-08-20

Received:

2020-10-28

Revision Accepted:

2021-04-01

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