Germination of cotton cultivar seeds under water stress induced by polyethyleneglycol-6000

Authors

  • Carlos Henrique Salvino Gadelha Meneses Embrapa Agrobiologia; Lab. de Genética e Bioquímica
  • Riselane de Lucena Alcântara Bruno UFPB; CCA; Depto. de Fitotecnia
  • Pedro Dantas Fernandes UFPB; CCA; Depto. de Fitotecnia
  • Walter Esfrain Pereira UFPB; CCA; Depto. de Fitotecnia
  • Leonardo Henrique Guedes de Morais Lima Embrapa Algodão; Lab. de Biotecnologia Vegetal
  • Marleide Magalhães de Andrade Lima Embrapa Algodão; Lab. de Biotecnologia Vegetal
  • Márcia Soares Vidal Embrapa Agrobiologia; Lab. de Genética e Bioquímica

DOI:

https://doi.org/10.1590/S0103-90162011000200001

Keywords:

Gossypium hirsutum var. latifolium L., PEG-6000, vigor, water potential

Abstract

The physiological quality of cotton cultivar seeds (Gossypium hirsutum var. latifolium L.) was evaluated in laboratory by the simulation of water potentials with polyethyleneglycol-6000 (0.0; -0.2; -0.4; -0.6; -0.8 and -1.0 MPa), at 25ºC using germitest paper as substrate. A completely randomized design in a 4 × 6 factorial scheme with four replications of 50 seeds each was used. The studied variables were: germination percentage, first count of germination, germination velocity index, accelerated aging in water, electrical conductivity, humidity, vigor classification, radicle length and radicle/shoot length ratio. The effect of water stress on seed viability and on plantlet vigor was severe at potentials below -0.4 MPa. The 'CNPA 187 8H' cultivar was the least sensitive to the tested osmotic potentials, both in terms of germination and of vigor. The 'BRS-201' cultivar was mostly affected by the viability and vigor tests under water deficit conditions. Differential viability and vigor between cultivars were observed under the water stress levels.

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Published

2011-04-01

Issue

Section

Crop Science

How to Cite

Germination of cotton cultivar seeds under water stress induced by polyethyleneglycol-6000 . (2011). Scientia Agricola, 68(2), 131-138. https://doi.org/10.1590/S0103-90162011000200001