Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

CHLOROPHYLL DEGRADATION UNDER SMOG EXPOSURE: UNVEILING THE MOLECULAR AND ECOLOGICAL CONSEQUENCES

View through CrossRef
The current study revealed that exposure to smog posed a major source of environmental stress and reduced photosynthesis and vigor in plants. Chlorophyll breakdown is a major aspect of smog sensitivity triggered by altered oxidative stress, an integral aspect of photosynthesis. Therefore, the general objective of this study is to evaluate the molecular and ecological impacts of chlorophyll degradation in Arabidopsis thaliana plants under smog conditions as evidenced by oxidative stress markers, hormonal regulation, and chlorophyllase activity. The Arabidopsis thaliana plants were cultivated in a growth chamber under optimal conditions of temperature, and light/dark regime, and after acclimatization the plants were exposed to artificial smog for a total of 48 hours NO₂ 50 ppm, O₃ 120 ppm, and PM10. Untreated plants or control plants were arranged in similar photoperiod regimes and with no exposure to smog. Chlorophyll a and b, malondialdehyde (MDA) and hydrogen peroxide (H₂O₂), SOD, abscisic acid (ABA), cytokinins, gibberellins, auxins, potassium (K⁺), chloride (Cl⁻), calcium (Ca²⁺), hydrogen (H⁺), chlorophyllase, and ROS were assessed. The treatment outcomes were compared with appropriate control using p-values to determine the significance level of change between control and smog-exposed plants. Smog led to decreases in chlorophyll content (from 1.20 ± 0.05 to 0.75 ± 0.03 mg/g) and chlorophyll b content (from 0.50 ± 0.02 to 0.30 ± 0.02 mg/g; p-values = 0.015 and 0.019, respectively). There were also increased levels of oxidative stress MDA (1.45 ± 0.10 nmol/g), H₂O₂ (4.50 ± 0.12 µmol/g), and SOD (21.6 ± 1.53 U/mg protein) compared to the control plants (15.2 ± 1.37 U/mg protein, p-values = 0.023, 0.022, and Phytohormones responded to the smog treatments by increasing the ABA contents (85.79 ng/g FW) while decreasing the cytokinin content to 40.63 ng/g FW. Concentrations of potassium, chloride, calcium, and hydrogen ions were changed in guard cells, where the difference was significant between control and smog-exposed plants, potassium ions (85.32 mM), chloride ions (70.27 mM), calcium ions (45.17 mM) and hydrogen ions (0.0156 mM). Chlorophyllase activity in smog-exposed plants was higher than that of controls: 0.30 ± 0.02 µmolg-1h-1 compared to 0.15 ± 0.01 µmolg-1h-1; p < 0.004. ROS levels were higher and the fluorescence intensity (280.22 ± 18.33 AU) associated with smog-exposed plants was statistically significant (p = 0.003). This work proves that smog impacts negatively on the chlorophyll content of Arabidopsis thaliana by increasing oxidative stress levels, changing hormonal regulation, and upregulating chlorophyllase activity. The findings reveal molecular processes involved in plant stress responses and show that smog-induced chlorophyll loss impacts plant health and ecosystem services.
Title: CHLOROPHYLL DEGRADATION UNDER SMOG EXPOSURE: UNVEILING THE MOLECULAR AND ECOLOGICAL CONSEQUENCES
Description:
The current study revealed that exposure to smog posed a major source of environmental stress and reduced photosynthesis and vigor in plants.
Chlorophyll breakdown is a major aspect of smog sensitivity triggered by altered oxidative stress, an integral aspect of photosynthesis.
Therefore, the general objective of this study is to evaluate the molecular and ecological impacts of chlorophyll degradation in Arabidopsis thaliana plants under smog conditions as evidenced by oxidative stress markers, hormonal regulation, and chlorophyllase activity.
The Arabidopsis thaliana plants were cultivated in a growth chamber under optimal conditions of temperature, and light/dark regime, and after acclimatization the plants were exposed to artificial smog for a total of 48 hours NO₂ 50 ppm, O₃ 120 ppm, and PM10.
Untreated plants or control plants were arranged in similar photoperiod regimes and with no exposure to smog.
Chlorophyll a and b, malondialdehyde (MDA) and hydrogen peroxide (H₂O₂), SOD, abscisic acid (ABA), cytokinins, gibberellins, auxins, potassium (K⁺), chloride (Cl⁻), calcium (Ca²⁺), hydrogen (H⁺), chlorophyllase, and ROS were assessed.
The treatment outcomes were compared with appropriate control using p-values to determine the significance level of change between control and smog-exposed plants.
Smog led to decreases in chlorophyll content (from 1.
20 ± 0.
05 to 0.
75 ± 0.
03 mg/g) and chlorophyll b content (from 0.
50 ± 0.
02 to 0.
30 ± 0.
02 mg/g; p-values = 0.
015 and 0.
019, respectively).
There were also increased levels of oxidative stress MDA (1.
45 ± 0.
10 nmol/g), H₂O₂ (4.
50 ± 0.
12 µmol/g), and SOD (21.
6 ± 1.
53 U/mg protein) compared to the control plants (15.
2 ± 1.
37 U/mg protein, p-values = 0.
023, 0.
022, and Phytohormones responded to the smog treatments by increasing the ABA contents (85.
79 ng/g FW) while decreasing the cytokinin content to 40.
63 ng/g FW.
Concentrations of potassium, chloride, calcium, and hydrogen ions were changed in guard cells, where the difference was significant between control and smog-exposed plants, potassium ions (85.
32 mM), chloride ions (70.
27 mM), calcium ions (45.
17 mM) and hydrogen ions (0.
0156 mM).
Chlorophyllase activity in smog-exposed plants was higher than that of controls: 0.
30 ± 0.
02 µmolg-1h-1 compared to 0.
15 ± 0.
01 µmolg-1h-1; p < 0.
004.
ROS levels were higher and the fluorescence intensity (280.
22 ± 18.
33 AU) associated with smog-exposed plants was statistically significant (p = 0.
003).
This work proves that smog impacts negatively on the chlorophyll content of Arabidopsis thaliana by increasing oxidative stress levels, changing hormonal regulation, and upregulating chlorophyllase activity.
The findings reveal molecular processes involved in plant stress responses and show that smog-induced chlorophyll loss impacts plant health and ecosystem services.

Related Results

SMOG IN LAHORE: A LOOMING THREAT TO REPRODUCTIVE HEALTH
SMOG IN LAHORE: A LOOMING THREAT TO REPRODUCTIVE HEALTH
Smog, a pervasive environmental health hazard, has cast a shadow over Lahore, endangering the health of its inhabitants and disrupting the delicate ecosystem. Among its numerous ad...
Mitigating Pakistan's Smog Crisis Through Predictive Modeling
Mitigating Pakistan's Smog Crisis Through Predictive Modeling
Smog, a persistent environmental challenge in Pakistan, poses severe threats to public health, the economy, and the environment. Characterized by a toxic mixture of pollutants such...
SMOG AND HEALTH
SMOG AND HEALTH
Smog is a declared threatening Public Health Emergency in South Asia recently. The most affected areas are Pakistan, India, and China.1 Pakistan is today the world's fourth most po...
SMOG RELATED AWARENESS AND PERCEPTION AMONG MEDICAL STUDENTS
SMOG RELATED AWARENESS AND PERCEPTION AMONG MEDICAL STUDENTS
Abstract Background: Smog is a significant environmental and public health issue, particularly in urban areas with high levels of air pollution. It is associated with adverse heal...
From Constitutional Comparison to Life in the Biosphere
From Constitutional Comparison to Life in the Biosphere
From Constitutional Comparison to Life in the Biosphere is a monograph that argues for a fundamental reorientation of constitutional law around the realities of biospheric interdep...
Biogeochemical variability in the equatorial Indian Ocean during the monsoon transition
Biogeochemical variability in the equatorial Indian Ocean during the monsoon transition
Abstract. In this paper we examine time-series measurements of near-surface chlorophyll concentration from a mooring that was deployed at 80.5° E on the equator in the Indian Ocean...
Estimation of the Chlorophyll Concentration in Sorghum Using Three High Throughput Phenotyping Imaging Techniques
Estimation of the Chlorophyll Concentration in Sorghum Using Three High Throughput Phenotyping Imaging Techniques
Abstract BackgroundLeaf chlorophyll content plays an important role in indicating plant stresses and nutrient status. Traditional approaches for the quantification of chlor...
Biogeochemical variability in the central equatorial Indian Ocean during the monsoon transition
Biogeochemical variability in the central equatorial Indian Ocean during the monsoon transition
Abstract. In this paper we examine time-series measurements of near-surface chlorophyll concentration from a mooring that was deployed at 80.5°E on the equator in the Indian Ocean ...

Back to Top