2009•Pakistan Journal of BotanyOpen access

CADMIUM STRESS STIMULATES NITRIC OXIDE PRODUCTION BY WHEAT ROOTS

Tahir Mahmood, Kapuganti Jagadis Gupta, Werner M. Kaiser

Open full text 57 citations

Abstract

Study was conducted to elucidate the nitrite-dependent nitric oxide (NO) production by wheat roots grown in hydroponics under cadmium (Cd) stress. In a long-term Cd exposure experiment, plants were grown for 4 weeks under 1 µM Cd. The root Cd concentration in the Cd-stressed plants was 2.5 mM compared to 0.1 mM in the untreated plants. Most of the Cd taken up by plants was restricted to roots where its concentration was 9 times higher than that in shoots. Despite the high Cd concentration in roots and shoots, the plant growth was not affected. However, Cd stress caused a 1.7-fold decrease in the root respiration, whereas it produced a 2.4-fold increase in NO emission (detected by gas phase chemiluminescence). In a short-term Cd exposure experiment, freshly harvested Cd-free roots were exposed to 10 µM Cd for 3 h. Here also, the root respiration decreased by 42% and NO production increased by 73%, thus confirming the stimulatory effect of Cd stress on NO production by wheat roots.

About this research paper

What this paper is about

Study was conducted to elucidate the nitrite-dependent nitric oxide (NO) production by wheat roots grown in hydroponics under cadmium (Cd) stress. In a long-term Cd exposure experiment, plants were grown for 4 weeks under 1 µM Cd. The root Cd concentration in the Cd-stressed plants was 2.5 mM compared to 0.1 mM in the untreated plants. Most of the Cd taken up by plants was restricted to roots where its concentration was 9 times higher than that in shoots. Despite the high Cd concentration in roots and shoots, the plant growth was not affected. However, Cd stress caused a 1.7-fold decrease in the root respiration, whereas it produced a 2.4-fold increase in NO emission (detected by gas phase chemiluminescence). In a short-term Cd exposure experiment, freshly harvested Cd-free roots were exposed to 10 µM Cd for 3 h. Here also, the root respiration decreased by 42% and NO production increased by 73%, thus confirming the stimulatory effect of Cd stress on NO production by wheat roots.

Why it matters

OpenAlex reports 57 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

Study was conducted to elucidate the nitrite-dependent nitric oxide (NO) production by wheat roots grown in hydroponics under cadmium (Cd) stress. In a long-term Cd exposure experiment, plants were grown for 4 weeks under 1 µM Cd. The root Cd concentration in the Cd-stressed plants was 2.5 mM compared to 0.1 mM in the untreated plants. Most of the Cd taken up by plants was restricted to roots where its concentration was 9 times higher than that in shoots. Despite the high Cd concentration in roots and shoots, the plant growth was not affected. However, Cd stress caused a 1.7-fold decrease in the root respiration, whereas it produced a 2.4-fold increase in NO emission (detected by gas phase chemiluminescence). In a short-term Cd exposure experiment, freshly harvested Cd-free roots were exposed to 10 µM Cd for 3 h. Here also, the root respiration decreased by 42% and NO production increased by 73%, thus confirming the stimulatory effect of Cd stress on NO production by wheat roots.

Key concepts: Cadmium, Hydroponics, Shoot, Nitrite, Nitric oxide, Respiration, Chemistry, Horticulture

Related papers

Back to paper searchBrowse research topicsOriginal source
CADMIUM STRESS STIMULATES NITRIC OXIDE PRODUCTION BY WHEAT ROOTS — Research Paper | ScholarLens