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

Improvement of maize drought tolerance by foliar application of zinc selenide quantum dots

View through CrossRef
Maize (Zea mays L.) is an important cereal crop grown in arid and semiarid regions of the world. During the reproductive phase, it is more frequently exposed to drought stress, resulting in lower grain yield due to oxidative damage. Selenium and zinc oxide nanoparticles possess inherent antioxidant properties that can alleviate drought-induced oxidative stress by the catalytic scavenging of reactive oxygen species, thereby protecting maize photosynthesis and grain yield. However, the effect of zinc selenide quantum dots (ZnSe QDs) under drought stress was not been quantified. Hence, the aim of this study was to quantify the (i) toxicity potential of ZnSe QDs and (ii) drought mitigation potential of ZnSe QDs by assessing the transpiration rate, photosynthetic rate, oxidant production, antioxidant enzyme activity and seed yield of maize under limited soil moisture levels. Toxicity experiments were carried out with 0 mg L−1 to 500 mg L−1 of ZnSe QDs on earthworms and azolla. The results showed that up to 20 mg L−1, the growth rates of earthworms and azolla were not affected. The dry-down experiment was conducted with three treatments: foliar spray of (i) water, (ii) ZnSe QDs (20 mg L−1), and (iii) combined zinc sulfate (10 mg L−1) and sodium selenate (10 mg L−1). ZnSe or Se applications under drying soil reduced the transpiration rate compared to water spray by partially closing the stomata. ZnSe application at 20 mg L−1 at the tasselling stage significantly increased the photosynthetic rate (25%) by increasing catalase (98%) and peroxidase (85%) enzyme activity and decreased the hydrogen peroxide (23%) content compared to water spray, indicating that premature leaf senescence was delayed under rainfed conditions. ZnSe spray increased seed yield (26%) over water spray by increasing the number of seeds cob-1 (42%). The study concluded that foliar application of ZnSe (20 mg L−1) could decrease drought-induced effects in maize.
Title: Improvement of maize drought tolerance by foliar application of zinc selenide quantum dots
Description:
Maize (Zea mays L.
) is an important cereal crop grown in arid and semiarid regions of the world.
During the reproductive phase, it is more frequently exposed to drought stress, resulting in lower grain yield due to oxidative damage.
Selenium and zinc oxide nanoparticles possess inherent antioxidant properties that can alleviate drought-induced oxidative stress by the catalytic scavenging of reactive oxygen species, thereby protecting maize photosynthesis and grain yield.
However, the effect of zinc selenide quantum dots (ZnSe QDs) under drought stress was not been quantified.
Hence, the aim of this study was to quantify the (i) toxicity potential of ZnSe QDs and (ii) drought mitigation potential of ZnSe QDs by assessing the transpiration rate, photosynthetic rate, oxidant production, antioxidant enzyme activity and seed yield of maize under limited soil moisture levels.
Toxicity experiments were carried out with 0 mg L−1 to 500 mg L−1 of ZnSe QDs on earthworms and azolla.
The results showed that up to 20 mg L−1, the growth rates of earthworms and azolla were not affected.
The dry-down experiment was conducted with three treatments: foliar spray of (i) water, (ii) ZnSe QDs (20 mg L−1), and (iii) combined zinc sulfate (10 mg L−1) and sodium selenate (10 mg L−1).
ZnSe or Se applications under drying soil reduced the transpiration rate compared to water spray by partially closing the stomata.
ZnSe application at 20 mg L−1 at the tasselling stage significantly increased the photosynthetic rate (25%) by increasing catalase (98%) and peroxidase (85%) enzyme activity and decreased the hydrogen peroxide (23%) content compared to water spray, indicating that premature leaf senescence was delayed under rainfed conditions.
ZnSe spray increased seed yield (26%) over water spray by increasing the number of seeds cob-1 (42%).
The study concluded that foliar application of ZnSe (20 mg L−1) could decrease drought-induced effects in maize.

Related Results

Breeding Drought-Tolerant Maize (Zea mays) Using Molecular Breeding Tools: Recent Advancements and Future Prospective
Breeding Drought-Tolerant Maize (Zea mays) Using Molecular Breeding Tools: Recent Advancements and Future Prospective
As a most significant cereal crop, maize provides vital nutritional components to humans and livestock. Drought stress curtails maize growth and yield by impairing several morpholo...
Advanced frameworks for fraud detection leveraging quantum machine learning and data science in fintech ecosystems
Advanced frameworks for fraud detection leveraging quantum machine learning and data science in fintech ecosystems
The rapid expansion of the fintech sector has brought with it an increasing demand for robust and sophisticated fraud detection systems capable of managing large volumes of financi...
Comparison of Flash Drought and Traditional Drought on Characteristics and Driving Forces in Xinjiang
Comparison of Flash Drought and Traditional Drought on Characteristics and Driving Forces in Xinjiang
In the context of climate warming, flash drought has become increasingly frequent, posing significant threats to agriculture, ecosystems, and the environment. Xinjiang, located in ...
Functional thresholds of plant resistance and recovery to drought
Functional thresholds of plant resistance and recovery to drought
<p>With ongoing climate change, the predicted increase in climate variability is likely to increase the intensity of extreme drought events. This could significantly ...
Meteorological Drought Variability over Africa from Multisource Datasets
Meteorological Drought Variability over Africa from Multisource Datasets
This study analyses the spatiotemporal variability of meteorological drought over Africa and its nine climate subregions from an ensemble of 19 multisource datasets (gauge-based, s...
Drought
Drought
Drought is a natural disaster that has plagued human society throughout history. However, the meaning of drought varies by perspective and academic discipline, and the cause of dro...
Contributions to uncertainty in projections of future drought under climate change scenarios
Contributions to uncertainty in projections of future drought under climate change scenarios
Abstract. Drought is a cumulative event, often difficult to define and involving wide reaching consequences for agriculture, ecosystems, water availability, and society. Understand...
A Study on the Estimation of the Occurrence Frequency of Mega-drought by the Characteristics of Drought Damage
A Study on the Estimation of the Occurrence Frequency of Mega-drought by the Characteristics of Drought Damage
<p>Unlike natural disasters such as typhoons, torrential rains and floods, drought is a disaster caused by long-term effects as well as short-term effects. The effect...

Back to Top