213
Towards Engineering Smart Transcription Factors for Enhanced Abiotic Stress
Calvo-Polanco, M., Señorans, J., & Zwiazek, J. J., (2012). Role of adventitious roots in water
relations of tamarack (Larix laricina) seedlings exposed to flooding. BMC Plant Biol., 12,
1.
Campos, J. F., Cara, B., Perez-Martın, F., Pineda, B., Egea, I., Flores, F. B., Fernandez-Garcia,
N., Cape, J., Moreno, V., Angosto, T., et al., (2016). The tomato mutant ars1 (altered response
to salt stress 1) identifies an R1-type MYB transcription factor involved in stomatal closure
under salt acclimation. Plant Biotechnol. J., 14, 1345–1356.
Cao, L., Yu, Y., Ding, X., Zhu, D., Yang, F., Liu, B., Sun, X., et al., (2017). The Glycine soja
NAC transcription factor GsNAC019 mediates the regulation of plant alkaline tolerance and
ABA sensitivity. Plant Mol. Biol., 95, 253–268.
Capell, T., Bassie, L., & Christou, P., (2004). Modulation of the polyamine biosynthetic
pathway in transgenic rice confers tolerance to drought stress. Proc. Natl. Acad. Sci. USA,
101, 9909–9914.
Casaretto, J. A., El-kereamy, A., Zeng, B., Stiegelmeyer, S. M., Chen, X., Bi, Y. M., &
Rothstein, S. J., (2016). Expression of OsMYB55 in maize activates stress-responsive genes
and enhances heat and drought tolerance. BMC Genom., 17, 312.
Century, K., Reuber, T. L., & Ratcliffe, O. J., (2008). Regulating the regulators: The future
prospects for transcription-factor-based agricultural biotechnology products. Plant Physiol.,
147, 20–29.
Chang, Y., Nguyen, B. H., Xie, Y., Xiao, B., Tang, N., Zhu, W., Mou, T., & Xiong, L., (2017).
Co-overexpression of the constitutively active form of OsbZIP46 and ABA-activated
protein kinase SAPK6 improves drought and temperature stress resistance in rice. Front.
Plant Sci., 8, 1102.
Chanwala, J., Satpati, S., Dixit, A., Parida, A., Giri, M. K., & Dey, N., (2020). Genome-
wide identification and expression analysis of WRKY transcription factors in pearl millet
(Pennisetum glaucum) under dehydration and salinity stress. BMC Genom., 21, 1–16.
Chaves, M. M., & Oliveira, M. M., (2004). Mechanisms underlying plant resistance to water
deficits: Prospects for water-saving agriculture. J. Exp. Bot., 55, 2365–2384.
Chen, D., Chai, S., McIntyre, C. L., & Xue, G. P., (2018). Overexpression of a predominantly
root-expressed NAC transcription factor in wheat roots enhances root length, biomass and
drought tolerance. Plant Cell Rep., 37, 225–237.
Chen, H. C., Cheng, W. H., Hong, C. Y., Chang, Y. S., & Chang, M. C., (2018). The
transcription factor OsbHLH035 mediates seed germination and enables seedling recovery
from salt stress through ABA-dependent and ABA-independent pathways, respectively.
Rice, 11, 50.
Chen, H. C., Hsieh-Feng, V., Liao, P. C., Cheng, W. H., Liu, L. Y., Yang, Y. W., Lai, M. H., &
Chang, M. C., (2017). The function of OsbHLH068 is partially redundant with its homolog,
AtbHLH112, in the regulation of the salt stress response but has opposite functions to
control flowering in Arabidopsis. Plant Mol. Biol., 94, 531–548.
Chen, J. B., Wang, S. M., Jing, R. L., & Mao, X. G., (2009). Cloning the PvP5CS gene from
common bean (Phaseolus vulgaris) and its expression patterns under abiotic stresses. J.
Plant Physiol., 166, 12–19.
Chen, J. Q., Meng, X. P., Zhang, Y., Xia, M., & Wang, X. P., (2008). Over-expression of
OsDREB genes lead to enhanced drought tolerance in rice. Biotechnol. Lett., 30, 2191–2198.
Chen, L., Song, Y., Li, S., Zhang, L., Zou, C., & Yu, D., (2012). The role of WRKY transcription
factors in plant abiotic stresses. Biochim. Biophys. Acta, 1819, 120–128.