1. Germination responses of Lens Culiunaris L. seeds to osmotic potentials at cardinal temperatures using hydrothermal time model.
- Author
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Ullah I, Ullah S, Amin F, Al-Hawadi JS, Okla MK, Alaraidh IA, AbdElgawad H, Liu K, Harrison MT, Saud S, Hassan S, Nawaz T, Zhu M, Liu H, and Fahad S
- Subjects
- Water metabolism, Models, Biological, Osmotic Pressure, Germination physiology, Seeds physiology, Seeds growth & development, Lens Plant physiology, Lens Plant growth & development, Temperature
- Abstract
Background: Lentil is a significant legume that are consumed as a staple food and have a significant economic impact around the world. The purpose of the present research on lentil was to assess the hydrothermal time model's capacity to explain the dynamics of Lens culinaris L. var. Markaz-09 seed germination, as well as to ascertain the germination responses at various sub-optimal temperatures (T) and water potentials (Ψ). In order to study lentil seed germination (SG) behavior at variable water potentials (Ψs) and temperatures (Ts). A lab experiment employing the hydrothermal time model was created. Seeds were germinated at six distinct temperatures: 15
0 С, 200 С, 250 С, 300 С, 350 С, and 400 С, with five Ψs of 0, -0.3, -0.6, -0.9, and - 1.2 MPa in a PEG-6000 (Polyethylene glycol 6000) solution., Results: The results indicated that the agronomic parameters like Germination index (GI), Germination energy (GE), Timson germination index (TGI), were maximum in 250 C at (-0.9 MPa) and lowest at 400 C in 0 MPa. On other hand, mean germination time (MGT) value was highest at 150 C in -1.2 MPa and minimum at 400 C in (-0.6 MPa) while Mean germination rate (MGR) was maximum at 400 C in (0 MPa) and minimum at 150 C in (-0.6 MPa)., Conclusions: The HTT model eventually defined the germination response of Lens culinaris L. var. Markaz-09 (Lentil) for all Ts and Ψs, allowing it to be employed as a predictive tool in Lens culinaris L. var. Markaz-09 (Lentil) seed germination simulation models., (© 2024. The Author(s).)- Published
- 2024
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