Physiological and molecular signatures reveal differential response of rice genotypes to drought and drought combination with heat and salinity stress
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Molecular Biology,Physiology
Link
https://link.springer.com/content/pdf/10.1007/s12298-022-01162-y.pdf
Reference91 articles.
1. Ahmed IM, Dai H, Zheng W, Cao F, Zhang G, Sun D, Wu F (2013) Genotypic differences in physiological characteristics in the tolerance to drought and salinity combined stress between Tibetan wild and cultivated barley. Plant Physiol Biochem 63:49–60
2. Alam MZ, Stuchbury T, Naylor RE, Rashid MA (2004) Effect of salinity on growth of some modern rice cultivars. J Agron
3. Avni A, Golan Y, Shirron N, Shamai Y, Golumbic Y, Danin-Poleg Y, Gepstein S, Gupta P, Bagri J, Singh D, Dewi AK, Tao L, Islam M, Sarsu F, Singla-Pareek SL, Pareek A (2020) (2018a) Forward and reverse genetics approaches for combined stress tolerance in rice. Indian J Plant Physiol 23(4):630 – 46
4. Bahuguna RN, Jagadish KS (2015) Temperature regulation of plant phenological development. Environ Exp Bot 111:83–90
5. Bahuguna RN, Jha J, Pal M, Shah D, Lawas LM, Khetarpal S, Jagadish KS (2015) Physiological and biochemical characterization of NERICA-L‐44: a novel source of heat tolerance at the vegetative and reproductive stages in rice. Physiol Plant 154(4):543–559
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