2002Biologia PlantarumRequires access

Oxidative Stress and Taxol Production Induced by Fungal Elicitor in Cell Suspension Cultures of Taxus Chinensis

Luís Yu, Wenzhi Lan, Wenmin Qin, Wenxiao Jin, Hang Xu

Open publisher page 33 citations

Abstract

Treatment of Taxus chinensis cell suspension cultures with fungal elicitor resulted in an oxidative stress characterized by H2O2 production, malondiadehyde (MDA) accumulation and cell death. This oxidative stress was dependent on the concentration of elicitor. Cells exposed to elicitor accumulated taxol, however, not proportional to elicitor concentration. High production of taxol occurred in cells treated with the suitable elicitor concentration. We concluded that oxidative stress had the deleterious effect on taxol production. Simultaneous treatment with elicitor and ascorbic acid (ASA) changed the oxidative stress and taxol production. Production of taxol in cells treated with 200 mg dm-3 elicitor and ASA was enhanced compared with that in cells treated with only 200 mg dm-3 elicitor, while production of taxol in cells treated with 100 and 50 mg dm-3 elicitor and ASA was decreased compared with that in cells treated with 100 and 50 mg dm-3 elicitor.

About this research paper

What this paper is about

Treatment of Taxus chinensis cell suspension cultures with fungal elicitor resulted in an oxidative stress characterized by H2O2 production, malondiadehyde (MDA) accumulation and cell death. This oxidative stress was dependent on the concentration of elicitor. Cells exposed to elicitor accumulated taxol, however, not proportional to elicitor concentration. High production of taxol occurred in cells treated with the suitable elicitor concentration. We concluded that oxidative stress had the deleterious effect on taxol production. Simultaneous treatment with elicitor and ascorbic acid (ASA) changed the oxidative stress and taxol production. Production of taxol in cells treated with 200 mg dm-3 elicitor and ASA was enhanced compared with that in cells treated with only 200 mg dm-3 elicitor, while production of taxol in cells treated with 100 and 50 mg dm-3 elicitor and ASA was decreased compared with that in cells treated with 100 and 50 mg dm-3 elicitor.

Why it matters

OpenAlex reports 33 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Treatment of Taxus chinensis cell suspension cultures with fungal elicitor resulted in an oxidative stress characterized by H2O2 production, malondiadehyde (MDA) accumulation and cell death. This oxidative stress was dependent on the concentration of elicitor. Cells exposed to elicitor accumulated taxol, however, not proportional to elicitor concentration. High production of taxol occurred in cells treated with the suitable elicitor concentration. We concluded that oxidative stress had the deleterious effect on taxol production. Simultaneous treatment with elicitor and ascorbic acid (ASA) changed the oxidative stress and taxol production. Production of taxol in cells treated with 200 mg dm-3 elicitor and ASA was enhanced compared with that in cells treated with only 200 mg dm-3 elicitor, while production of taxol in cells treated with 100 and 50 mg dm-3 elicitor and ASA was decreased compared with that in cells treated with 100 and 50 mg dm-3 elicitor.

Key concepts: Elicitor, Oxidative stress, Taxus, Biochemistry, Biology, Cell culture, Chemistry, Botany

Related papers

Back to paper searchBrowse research topicsOriginal source
Oxidative Stress and Taxol Production Induced by Fungal Elicitor in Cell Suspension Cultures of Taxus Chinensis — Research Paper | ScholarLens