American Journal of Plant Sciences

Volume 5, Issue 5 (March 2014)

ISSN Print: 2158-2742   ISSN Online: 2158-2750

Google-based Impact Factor: 1.20  Citations  h5-index & Ranking

Growth, Physiological and Molecular Responses of Cotton (Gossypium arboreum L.) under NaCl Stress

HTML  Download Download as PDF (Size: 1245KB)  PP. 605-614  
DOI: 10.4236/ajps.2014.55075    6,155 Downloads   8,852 Views  Citations

ABSTRACT

Salinity is one of the most serious growth limiting factor, therefore, no longer being ignored. Although, cotton is fairly salt tolerant; its sensitivity at crop stand and yield is affected. This study is planned to identify the growth, physiological and molecular parameters in local cotton varieties FDH 171 and FDH 786 under NaCl stress. There was 100% seed germination but hypocotyl length was reduced at increasing level of NaCl. Plant height, fresh and dry biomass were reduced as the plants were subjected to increased stress of NaCl. Stomatal conductance, transpiration and photosynthetic rate and ionic imbalance were found to be reduced under the gradual increase in NaCl stress and affected the plant’s overall physiological processes. PCR product of AtNHX3 has been identified in stressed and non-stressed plants. Thus, the genotypes FDH 171 & FDH 786 were found tolerant to adoption of salt stress and could be used as a source in crop improvement.

Share and Cite:

Hassan, S. , Sarwar, M. , Sadique, S. , Rashid, B. , Aftab, B. , Mohamed, B. and Husnain, T. (2014) Growth, Physiological and Molecular Responses of Cotton (Gossypium arboreum L.) under NaCl Stress. American Journal of Plant Sciences, 5, 605-614. doi: 10.4236/ajps.2014.55075.

Cited by

[1] Ionomic and antioxidant system responses to Na2SO4 stress of two cotton cultivars differing in salt tolerance
2021
[2] A critical review: impacts of salinity on yield and fiber quality traits of cotton
Nature and Science, 2021
[3] Mutant Gossypium universal stress protein-2 (GUSP-2) gene confers resistance to various abiotic stresses in E. coli BL-21 and CIM-496-Gossypium hirsutum
Scientific reports, 2021
[4] Ionomic and antioxidant system responses to Na/sub 2/SO/sub 4/stress of two cotton cultivars differing in salt tolerance
Pakistan Journal of Botany, 2021
[5] Physiological characterization of cotton genotypes (Gossypium herbaceum L.) for salinity at seedling stage
2020
[6] Cotton Response to Differential Salt Stress
2019
[7] Nitrogen nutrition and adaptation of glycophytes to saline environment: a review
Applied Earth Science, 2018
[8] Potassium distribution in root and non‐root zones of two cotton genotypes and its accumulation in their organs as affected by drought and potassium stress conditions
Polymer composites, 2018
[9] Zinc finger transcription factor induces the drought, salt and cold stress tolerance in transgenic cotton
2017
[10] Effect of Soil Salinization on Plant Growth and Physiology of Plectranthus Species
Soil Salinity Management in Agriculture, 2017
[11] Varied Responses and Tolerant Mechanisms towards Salinity Stress in Plants
International Journal of Plant & Soil Science, 2016
[12] Morpho-physiological, biochemical and developmental responses of diploid cotton (Gossypium arboreum L.) cultivars under varying NaCl stress.
International Journal of Biosciences, 2015
[13] Tolerance of Roselle (Hibiscus Sabdariffa L.) Genotypes to Drought Stress at Vegetative Stage
Advancements in Life Sciences, 2015
[14] PHYSIOLOGICAL, MORPHOLOGICAL, BIOCHEMICAL AND MOLECULAR BASIS OF DROUGHT TOLERANCE IN COTTON
2015
[15] Morpho-physiological, biochemical and developmental responses of diploid cotton (Gossypium arboreum L.) cultivars under varying NaCl stress
2015
[16] Tolerance of Roselle (Hibiscus sabdariffa L.) Genotypes to Drought Stress at Vegetative
Advances in Life Sciences, 2015

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.