Mechanistic insights into DNA damage recognition and checkpoint control in plants

J Herbst, QQ Li, L De Veylder - Nature Plants, 2024 - nature.com
The plant DNA damage response (DDR) pathway safeguards genomic integrity by rapid
recognition and repair of DNA lesions that, if unrepaired, may cause genome instability …

[HTML][HTML] Heating up meiosis–chromosome recombination and segregation under high temperatures

J De Jaeger-Braet, A Schnittger - Current Opinion in Plant Biology, 2024 - Elsevier
Heat stress is one of the major constraints to plant growth and fertility. During the current
climate crisis, heat waves have increased dramatically, and even more extreme conditions …

Heat shock protein 101 contributes to the thermotolerance of male meiosis in maize

Y Li, Y Huang, H Sun, T Wang, W Ru, L Pan… - The Plant …, 2022 - academic.oup.com
High temperatures interfere with meiotic recombination and the subsequent progression of
meiosis in plants, but few genes involved in meiotic thermotolerance have been …

Maize cytosolic invertase INVAN6 ensures faithful meiotic progression under heat stress

W Huang, Y Li, Y Du, L Pan, Y Huang, H Liu… - New …, 2022 - Wiley Online Library
Faithful meiotic progression ensures the generation of viable gametes. Studies suggested
the male meiosis of plants is sensitive to ambient temperature, but the underlying molecular …

Asynapsis and meiotic restitution in tomato male meiosis induced by heat stress

C Schindfessel, N De Storme, HK Trinh… - Frontiers in Plant …, 2023 - frontiersin.org
Susceptibility of the reproductive system to temperature fluctuations is a recurrent problem
for crop production under a changing climate. The damage is complex as multiple processes …

GLUTAMYL-tRNA SYNTHETASE 1 deficiency confers thermosensitive male sterility in rice by affecting reactive oxygen species homeostasis

H Liu, H You, C Liu, Y Zhao, J Chen, Z Chen… - Plant …, 2024 - academic.oup.com
Temperature is one of the key environmental factors influencing crop fertility and yield.
Understanding how plants sense and respond to temperature changes is, therefore, crucial …

Rosmarinic acid and hesperidin regulate gas exchange, chlorophyll fluorescence, antioxidant system and the fatty acid biosynthesis-related gene expression in …

B Arikan, C Ozfidan-Konakci, FN Alp, G Zengin… - Phytochemistry, 2022 - Elsevier
The impacts of exogenous rosmarinic acid (RA, 100 μM) and/or hesperidin (HP, 100 μM)
were evaluated in improving tolerance on the gas exchange, chlorophyll fluorescence and …

Architecture and plasticity: optimizing plant performance in dynamic environments

R Pierik, C Fankhauser, LC Strader, N Sinha - Plant Physiology, 2021 - academic.oup.com
Architecture and plasticity: optimizing plant performance in dynamic environments | Plant
Physiology | Oxford Academic Skip to Main Content Advertisement Oxford Academic Journals …

Heat stress impairs centromere structure and segregation of meiotic chromosomes in Arabidopsis

LC Khaitova, P Mikulkova, J Pecinkova, M Kalidass… - Elife, 2024 - elifesciences.org
Heat stress is a major threat to global crop production, and understanding its impact on plant
fertility is crucial for develo** climate-resilient crops. Despite the known negative effects of …

Interfered chromosome pairing at high temperature promotes meiotic instability in autotetraploid Arabidopsis

H Fu, J Zhao, Z Ren, K Yang, C Wang, X Zhang… - Plant …, 2022 - academic.oup.com
Abstract Changes in environmental temperature affect multiple meiotic processes in
flowering plants. Polyploid plants derived from whole-genome duplication (WGD) have …