Physiological characterization of the tomato cutin mutant cd1 under salinity and nitrogen stress
Author:
Funder
Nevada Department of Agriculture
USDA-NIFA
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s00425-024-04494-z.pdf
Reference60 articles.
1. Arif Y, Singh P, Siddiqui H, Bajguz A, Hayat S (2020) Salinity induced physiological and biochemical changes in plants: an omic approach toward salt stress tolerance. Plant Physiol Biochem 156:64–77
2. Arya GC, Sarkar S, Manasherova E, Aharoni A, Cohen H (2021) The plant cuticle: an ancient guardian barrier set against long-standing rivals. Front Plant Sci 12:663165
3. Barberon M, Vermeer JEM, De Bellis D, Wang P et al (2016) Adaptation of root function by nutrient-induced plasticity of endodermal differentiation. Cell 164(3):447–459
4. Barrios-Masias FH, Jackson LE (2014) California processing tomatoes: morphological, physiological and phenological traits associated with crop improvement during the last 80 years. Eur J Agron 53:45–55
5. Bates D, Maechler M, Bolker B, Walker S (2015) Fitting linear mixed-effects models using lme4. J Stat Softw 67(1):1–48. https://doi.org/10.18637/jss.v067.i01
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