Trehalose: a key organic osmolyte effectively involved in plant abiotic stress tolerance

F Kosar, NA Akram, M Sadiq, F Al-Qurainy… - Journal of Plant Growth …, 2019 - Springer
Trehalose is a natural non-reducing sugar that is found in the vast majority of organisms
such as bacteria, yeasts, invertebrates and even in plants. Regarding its features, it is …

[HTML][HTML] Trehalose: A sugar molecule involved in temperature stress management in plants

A Raza, S Bhardwaj, MA Rahman, P García-Caparrós… - The Crop Journal, 2023 - Elsevier
Trehalose (Tre) is a non-reducing disaccharide found in many species, including bacteria,
fungi, invertebrates, yeast, and even plants, where it acts as an osmoprotectant, energy …

Trehalose: a key player in plant growth regulation and tolerance to abiotic stresses

MU Hassan, M Nawaz, AN Shah, A Raza… - Journal of Plant Growth …, 2023 - Springer
Plant abiotic stresses endanger crop production and food security to a growing degree
under the present climate change scenario. This calls for effective measures to be deployed …

Stress responsive gene regulation in relation to hydrogen sulfide in plants under abiotic stress

AK Pandey, A Gautam - Physiologia plantarum, 2020 - Wiley Online Library
Plants often face a variety of abiotic stresses, which affects them negatively and lead to yield
loss. The antioxidant system efficiently removes excessive reactive oxygen species and …

Adaptation strategies and defence mechanisms of plants during environmental stress

E Lamalakshmi Devi, S Kumar, T Basanta Singh… - Medicinal plants and …, 2017 - Springer
Several biotic and abiotic stresses affect plant growth, development and crop productivity. To
cope up all these stresses, plant develops certain efficient strategies to avoid or tolerate the …

Metabolic changes associated with differential salt tolerance in sorghum genotypes

DF de Oliveira, LS Lopes, E Gomes-Filho - Planta, 2020 - Springer
Main conclusion Accumulation of specific metabolites, mainly γ-aminobutyric acid,
polyamines, and proline, was essential to homeostasis regulation and differential salt …

Compatible solute engineering of crop plants for improved tolerance toward abiotic stresses

T Dutta, NRR Neelapu, SH Wani, S Challa - Biochemical, physiological and …, 2018 - Elsevier
Among abiotic stresses, drought, salinity, and extreme temperatures are responsible for a
reduction in crop yields across the globe. The situation may worsen with a decrease in …

Transgenic approaches to enhance salt and drought tolerance in plants

SH Wani, T Dutta, NRR Neelapu, C Surekha - Plant Gene, 2017 - Elsevier
Abiotic stresses including drought, salinity, extreme temperatures, and heavy metal stress,
are responsible for reduction in crop yields around the globe. The situation may further …

Elevated CO2 and temperature influence key proteins and metabolites associated with photosynthesis, antioxidant and carbon metabolism in Picrorhiza kurroa

R Kumar, R Joshi, M Kumari, R Thakur, D Kumar… - Journal of …, 2020 - Elsevier
Global warming is currently one of the most serious issues in ecology. Rising CO 2 level and
temperature have begun to impact life cycles, distribution and yield of various plants yet …

Overexpression of a Rice Monosaccharide Transporter Gene (OsMST6) Confers Enhanced Tolerance to Drought and Salinity Stress in Arabidopsis thaliana

HH Monfared, JK Chew, P Azizi, GP Xue, SF Ee… - Plant Molecular Biology …, 2020 - Springer
Monosaccharide transporter (MSTs) is a large family of integral membrane proteins that
plays a crucial role in cell-to-cell and long-distance distribution of sugars throughout the …