Transcriptional regulatory network of plant cold-stress responses

S Kidokoro, K Shinozaki, K Yamaguchi-Shinozaki - Trends in Plant Science, 2022 - cell.com
Recent studies have revealed the complex and flexible transcriptional regulatory network
involved in cold-stress responses. Focusing on two major signaling pathways that respond …

ICE-CBF-COR signaling cascade and its regulation in plants responding to cold stress

D Hwarari, Y Guan, B Ahmad, A Movahedi… - International journal of …, 2022 - mdpi.com
Cold stress limits plant geographical distribution and influences plant growth, development,
and yields. Plants as sessile organisms have evolved complex biochemical and …

Advances and challenges in uncovering cold tolerance regulatory mechanisms in plants

Y Ding, Y Shi, S Yang - New Phytologist, 2019 - Wiley Online Library
Contents Summary I. Introduction II. Cold stress and physiological responses in plants III.
Sensing of cold signals in plants IV. Messenger molecules involved in cold signal …

Sensing, signalling, and regulatory mechanism of cold-stress tolerance in plants

S Gusain, S Joshi, R Joshi - Plant Physiology and Biochemistry, 2023 - Elsevier
Cold stress is a crucial environmental factor influencing growth and distribution and
possessing yield penalties. To survive in the cold, plants have evolved to use a range of …

Integrated multi-omics framework of the plant response to jasmonic acid

M Zander, MG Lewsey, NM Clark, L Yin, A Bartlett… - Nature plants, 2020 - nature.com
Understanding the systems-level actions of transcriptional responses to hormones provides
insight into how the genome is reprogrammed in response to environmental stimuli. Here …

An alternative splicing variant of PtRD26 delays leaf senescence by regulating multiple NAC transcription factors in Populus

HL Wang, Y Zhang, T Wang, Q Yang, Y Yang… - The Plant …, 2021 - academic.oup.com
During leaf senescence, the final stage of leaf development, nutrients are recycled from
leaves to other organs, and therefore proper control of senescence is thus critical for plant …

Molecular and physiological mechanisms to mitigate abiotic stress conditions in plants

BS Saharan, B Brar, JS Duhan, R Kumar, S Marwaha… - Life, 2022 - mdpi.com
Agriculture production faces many abiotic stresses, mainly drought, salinity, low and high
temperature. These abiotic stresses inhibit plants' genetic potential, which is the cause of …

GROWTH-REGULATING FACTORS interact with DELLAs and regulate growth in cold stress

O Lantzouni, A Alkofer, P Falter-Braun… - The Plant …, 2020 - academic.oup.com
DELLA proteins are repressors of the gibberellin (GA) hormone signaling pathway that act
mainly by regulating transcription factor activities in plants. GAs induce DELLA repressor …

[HTML][HTML] Swimming downstream: statistical analysis of differential transcript usage following Salmon quantification

MI Love, C Soneson, R Patro - F1000Research, 2018 - ncbi.nlm.nih.gov
Detection of differential transcript usage (DTU) from RNA-seq data is an important
bioinformatic analysis that complements differential gene expression analysis. Here we …

mRNA N6‐methyladenosine is critical for cold tolerance in Arabidopsis

G Govindan, B Sharma, YF Li, CD Armstrong… - The Plant …, 2022 - Wiley Online Library
Plants respond to low temperatures by altering the mRNA abundance of thousands of genes
contributing to numerous physiological and metabolic processes that allow them to adapt. At …