Epigenetics – The Molecular Tool in Understanding Abiotic Stress Response in Plants
391
Hauser, M. T., Aufsatz, W., Jonak, C., & Luschnig, C., (2011). Transgenerational epigenetic
inheritance in plants. Biochim. Biophys. Acta Gene. Regul. Mech., 1809(8), 459–468.
Heard, E., & Martienssen, R. A., (2014). Transgenerational epigenetic inheritance: Myths and
mechanisms. Cell, 157(1), 95–109.
Holoch, D., & Moazed, D., (2015). RNA-mediated epigenetic regulation of gene expression.
Nat. Rev. Genet., 16(2), 71–84.
Hou, J., Lu, D., Mason, A. S., Li, B., Xiao, M., An, S., & Fu, D., (2019). Non-coding RNAs
and transposable elements in plant genomes: Emergence, regulatory mechanisms and roles
in plant development and stress responses. Planta, 250(1), 23–40.
Hsu, F. C., Chou, M. Y., Chou, S. J., Li, Y. R., Peng, H. P., & Shih, M. C., (2013). Submergence
confers immunity mediated by the WRKY22 transcription factor in Arabidopsis. Plant
Cell, 25(7), 2699–2713.
Huang, S. Q., Xiang, A. L., Che, L. L., Chen, S., Li, H., Song, J. B., & Yang, Z. M., (2010). A
set of miRNAs from Brassica napus in response to sulphate deficiency and cadmium stress.
Plant Biotechnol. J., 8(8), 887–899.
Isayenkov, S. V., & Maathuis, F. J., (2019). Plant salinity stress: Many unanswered questions
remain. Front. Plant Sci., 10, 80.
Jablonka, E., & Lamb, M. J., (2002). The changing concept of epigenetics. Ann. N. Y. Acad.
Sci., 981(1), 82–96.
Jaglo, K. R., Kleff, S., Amundsen, K. L., Zhang, X., Haake, V., Zhang, J. Z., Deits, T., &
Thomashow, M. F., (2001). Components of the Arabidopsis C-repeat/dehydration
responsive element binding factor cold-response pathway are conserved in Brassica napus
and other plant species. Plant Physiol., 127(3), 910–917.
Jaleel, C. A., Gopi, R., Sankar, B., Gomathinayagam, M., & Panneerselvam, R., (2008).
Differential responses in water use efficiency in two varieties of Catharanthus roseus under
drought stress. Comptes Rendus Biologies, 331(1), 42–47.
Jaleel, C. A., Manivannan, P., Sankar, B., Kishorekumar, A., Gopi, R., Somasundaram,
R., & Panneerselvam, R., (2007). Water deficit stress mitigation by calcium chloride in
Catharanthus roseus: Effects on oxidative stress, proline metabolism and indole alkaloid
accumulation. Colloids Surf. B, 60(1), 110–116.
James, R. A., Blake, C., Byrt, C. S., & Munns, R., (2011). Major genes for Na+ exclusion,
Nax1 and Nax2 (wheat HKT1; 4 and HKT1; 5), decrease Na+ accumulation in bread wheat
leaves under saline and waterlogged conditions. J. Exp. Bot., 62(8), 2939–2947.
Jeong, D. H., & Green, P. J., (2013). The role of rice microRNAs in abiotic stress responses.
J. Plant Biol., 56(4), 187–197.
Kachroo, A., & Robin, G. P., (2013). Systemic signaling during plant defense. Curr. Opin.
Plant Biol., 16(4), 527–533.
Kalisz, S., & Purugganan, M. D., (2004). Epialleles via DNA methylation: Consequences for
plant evolution. Trends Ecol. Evol., 19(6), 309–314.
Kaplan, F., Kopka, J., Haskell, D. W., Zhao, W., Schiller, K. C., Gatzke, N., Sung, D. Y., &
Guy, C. L., (2004). Exploring the temperature-stress metabolome of Arabidopsis. Plant
Physiol., 136(4), 4159–4168.
Khan, A., Ijaz, M., Muhammad, J., Goheer, A., Akbar, G., & Adnan, M., (2016). Climate
change implications for wheat crop in Dera Ismail Khan District of Khyber Pakhtunkhwa.
Pakistan Journal of Meteorology, 13(25).
Kim, J. H., (2021). Multifaceted chromatin structure and transcription changes in plant stress
response. Int. J. Mol. Sci., 22(4).