Osmoprotection in plants under abiotic stresses: New insights into a classical phenomenon

F Zulfiqar, NA Akram, M Ashraf - Planta, 2020 - Springer
Main conclusion Plant osmoprotectants protect against abiotic stresses. Introgression of
osmoprotectant genes into crop plants via genetic engineering is an important strategy in …

Identification of QTN-by-environment interactions and their candidate genes for soybean seed oil-related traits using 3VmrMLM

JF Zuo, Y Chen, C Ge, JY Liu, YM Zhang - Frontiers in Plant Science, 2022 - frontiersin.org
Introduction Although seed oil content and its fatty acid compositions in soybean were
affected by environment, QTN-by-environment (QEIs) and gene-by-environment interactions …

Wheat Myo-inositol phosphate synthase influences plant growth and stress responses via ethylene mediated signaling

N Sharma, C Chaudhary, P Khurana - Scientific Reports, 2020 - nature.com
L-myo-inositol phosphate synthase (MIPS; EC 5.5. 1.4) is involved in abiotic stress
tolerance, however its disruption and overexpression has also been associated with …

Developmentally controlled changes during Arabidopsis leaf development indicate causes for loss of stress tolerance with age

A Kanojia, S Gupta, M Benina, AR Fernie… - Journal of …, 2020 - academic.oup.com
Leaf senescence is the final stage of leaf development and is induced by the gradual
occurrence of age-related changes (ARCs). The process of leaf senescence has been well …

Ameliorating abiotic stress tolerance in crop plants by metabolic engineering

S Narula, S Chaudhry, GPS Sidhu - Metabolic Engineering in Plants, 2022 - Springer
Environmental adversities like heat, cold, drought, salinity, ultraviolet radiation and flooding
induces abiotic distress in plants and are the pioneer limiting factors for plant growth …

Myo-inositol phosphate synthase improves heat stress tolerance by ethylene-mediated modulation of chlorophyll content and photosynthetic efficiency

N Sharma, B Shree, P Khurana - Protoplasma, 2023 - Springer
L-myo-inositol phosphate synthase (MIPS; EC 5.5. 1.4) encodes the enzyme synthesizing
Myo-inositol for plant growth and development. Myo-inositol and its phosphate derivatives …

Metabolomics by UHPLC-HRMS reveals the impact of heat stress on pathogen-elicited immunity in maize

SA Christensen, EA Santana, HT Alborn, AK Block… - Metabolomics, 2021 - Springer
Introduction Studies investigating crop resistance to abiotic and biotic stress have largely
focused on plant responses to singular forms of stress and individual biochemical pathways …

Root metabolites remodeling regulated by γ-aminobutyric acid (GABA) improves adaptability to high temperature in creeping bentgrass

Z Li, M Zhou, W Zeng, Y Zhang, L Liu, W Liu, Y Peng - Plant and Soil, 2024 - Springer
Aims Global warming due to increasing greenhouse gas emissions intensifies frequency
and duration of extreme high temperature which has become a primary threat to cool …

The host and pathogen myo‐inositol‐1‐phosphate synthases are required for Rhizoctonia solani AG1‐IA infection in tomato

K Tyagi, RK Chandan, D Sahoo… - Molecular Plant …, 2024 - Wiley Online Library
Abstract The myo‐inositol‐1‐phosphate synthase (MIPS) catalyses the biosynthesis of myo‐
inositol, an important sugar that regulates various physiological and biochemical processes …

Emerging roles of osmoprotectants in response to multiple abiotic stress tolerance in plants

UN Mishra, D Saha, J Chauhan, V Kumar… - Omics analysis of …, 2022 - taylorfrancis.com
Field crops are subjected to multiple abiotic stresses such as drought, flood, heat, cold
salinity, and extreme climatic situations have adapted 180many strategies, including …