| Literature DB >> 33890138 |
Saqlain Haider1, Javed Iqbal2,3, Sana Naseer1, Tabassum Yaseen4, Muzaffar Shaukat1, Haleema Bibi1, Yumna Ahmad1, Hina Daud1, Nayyab Laiba Abbasi1, Tariq Mahmood5.
Abstract
KEY MESSAGE: We summarize recent studies focusing on the molecular basis of plant heat stress response (HSR), how HSR leads to thermotolerance, and promote plant adaptation to recurring heat stress events. The global crop productivity is facing unprecedented threats due to climate change as high temperature negatively influences plant growth and metabolism. Owing to their sessile nature, plants have developed complex signaling networks which enable them to perceive changes in ambient temperature. This in turn activates a suite of molecular changes that promote plant survival and reproduction under adverse conditions. Deciphering these mechanisms is an important task, as this could facilitate development of molecular markers, which could be ultimately used to breed thermotolerant crop cultivars. In current article, we summarize mechanisms involve in plant heat stress acclimation with special emphasis on advances related to heat stress perception, heat-induced signaling, heat stress-responsive gene expression and thermomemory that promote plant adaptation to short- and long-term-recurring heat-stress events. In the end, we will discuss impact of emerging technologies that could facilitate the development of heat stress-tolerant crop cultivars.Entities:
Keywords: Epigenetics; Gene expression regulation; Heat stress; Signal transduction; Thermomemory; Thermotolerance; Transcription factors
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Year: 2021 PMID: 33890138 DOI: 10.1007/s00299-021-02696-3
Source DB: PubMed Journal: Plant Cell Rep ISSN: 0721-7714 Impact factor: 4.570