| Literature DB >> 35207497 |
Abd Ullah1,2,3,4, Sadaf Sadaf5, Sami Ullah5, Huda Alshaya6, Mohammad K Okla7, Yasmeen A Alwasel7, Akash Tariq1,2,3,4.
Abstract
Barley (Hordeum vulgare L.) is a salt-tolerant crop with considerable economic value in salinity-affected arid and semiarid areas. In the laboratory experiment, the halothermal time (HaloTT) model was used to examine barley seed germination (SG) at six constant cardinal temperatures (Ts) of 15, 20, 25, 30, 35, and 40 °C under five different water potentials (ψs) of 0, -0.5, -1.5, -1.0, and -2.0 MPa. Results showed that at optimum moisture (0 MPa), the highest germination percentage (GP) was recorded at 20 °C and the lowest at 40 °C. Moreover, GP increased with the accelerated aging period (AAP) and significantly (p ≤ 0.05) decreased with high T. In addition, with a decrease of ψ from 0 to -0.5, -1, 1.5, and -2.0 MPa, GP decreased by 93.33, 76.67, 46.67, and 33.33%, respectively, in comparison with 0 MPa. The maximum halftime constant (θHalo) and coefficient of determination (R2) values were recorded at 20 °C and 30 °C, respectively. The optimum temperature (To) for barley is 20 °C, base Ψ of 50th percentile (Ψb (50)) is -0.23 Mpa, and standard deviation of Ψb (σΨb) is 0.21 MPa. The cardinal Ts for germination is 15 °C (Tb), 20 °C (To), and 40 °C (Tc). The GP, germination rate index (GRI), germination index (GI), coefficient of the velocity of germination (CVG), germination energy (GE), seed vigor index I and II (SVI-I & II), Timson germination index (GI), and root shoot ratio (RSR) were recorded maximum at 0 MPa at 20 °C and minimum at -2.0 MPa at 40 °C. Mean germination time (MGT) and time to 50% germination (T 50%) were maximum at -2 MPa at 40 °C, and minimum at 20 °C, respectively. In conclusion, the HaloTT model accurately predicted the germination time course of barley in response to T, Ψ, or NaCl. Therefore, barley can be regarded as a salt-tolerant plant and suitable for cultivation in arid and semi-arid regions due to its high resistance to salinity.Entities:
Keywords: barley; cardinal temperatures; halothermal time model; seed germination; water potential
Year: 2022 PMID: 35207497 PMCID: PMC8878096 DOI: 10.3390/life12020209
Source DB: PubMed Journal: Life (Basel) ISSN: 2075-1729
Figure 1Cumulative germination for Hordeum vulgare L. at (a) 15 °C, (b) 20 °C, (c) 25 °C, (d) 30 °C, (e) 35 °C, and (f) 40 °C having different water potentials. Symbols indicate water potential and lines indicate cumulative germination.
The estimated parameters of the halo and thermal time model to describe Hordeum vulgare L. seed germination under different temperatures (Ts) and water potentials (ψs).
| T | Ψ | TTsub (θT1) | TTsupra | θHalo | θHaloTT | Halo Time GR(g) | Thermal Time GR(g) |
|---|---|---|---|---|---|---|---|
| 15 °C | 0 | 768 | 1920 | 38.4 | 384 | 0.013 | 0.013 |
| −0.5 | 544 | 1360 | 27.2 | 272 | 0.018 | 0.018 | |
| −1.0 | 448 | 1120 | 22.4 | 224 | 0.022 | 0.022 | |
| −1.5 | 448 | 1120 | 22.4 | 224 | 0.022 | 0.022 | |
| −2.0 | 96.0 | 240.0 | 4.8 | 48.0 | 0.104 | 0.104 | |
| 20 °C | 0 | 896 | 2240 | 44.8 | 448 | 0.011 | 0.011 |
| −0.5 | 736 | 1840 | 36.8 | 368 | 0.014 | 0.014 | |
| −1.0 | 640 | 1600 | 32.0 | 320 | 0.016 | 0.016 | |
| −1.5 | 448 | 1120 | 22.4 | 224 | 0.022 | 0.022 | |
| −2.0 | 128 | 320.0 | 6.40 | 64.0 | 0.078 | 0.078 | |
| 25 °C | 0 | 640 | 1600 | 32.0 | 320 | 0.016 | 0.016 |
| −0.5 | 448 | 1120 | 22.4 | 224 | 0.022 | 0.022 | |
| −1.0 | 320 | 800.0 | 16.0 | 160 | 0.031 | 0.031 | |
| −1.5 | 320 | 800.0 | 16.0 | 160 | 0.031 | 0.031 | |
| −2.0 | 96.0 | 240.0 | 4.80 | 48.0 | 0.104 | 0.104 | |
| 30 °C | 0 | 576 | 1440 | 28.8 | 288 | 0.017 | 0.017 |
| −0.5 | 448 | 1120 | 22.4 | 224 | 0.022 | 0.022 | |
| −1.0 | 352 | 880.0 | 17.6 | 176 | 0.028 | 0.028 | |
| −1.5 | 224 | 560.0 | 11.2 | 112 | 0.045 | 0.045 | |
| −2.0 | 96.0 | 240.0 | 4.80 | 48.0 | 0.104 | 0.104 | |
| 35 °C | 0 | 256 | 640.0 | 12.8 | 128 | 0.039 | 0.039 |
| −0.5 | 416 | 1040 | 20.8 | 208 | 0.024 | 0.024 | |
| −1.0 | 320 | 800.0 | 16.0 | 160 | 0.031 | 0.031 | |
| −1.5 | 320 | 800.0 | 16.0 | 160 | 0.031 | 0.031 | |
| −2.0 | 96.0 | 240.0 | 4.80 | 48.0 | 0.104 | 0.104 | |
| 40 °C | 0 | 224 | 560.0 | 11.2 | 112 | 0.045 | 0.045 |
| −0.5 | 96.0 | 240.0 | 4.80 | 48.0 | 0.104 | 0.104 | |
| −1 | 96.0 | 240.0 | 4.80 | 48.0 | 0.104 | 0.104 | |
| −1.5 | 64.0 | 160.0 | 3.20 | 32.0 | 0.156 | 0.156 | |
| −2.0 | 32.0 | 80.0 | 1.60 | 16.0 | 0.313 | 0.313 |
Temperatures (T); water potential (ψ); thermal time constant at sub-optimal temperature (TTsub); thermal time constant at supra-optimal temperature (TTsupra); halotime constant (θH); halothermal time constant (θHTT); germination rate (GR).
Figure 2Plot showing changes in halotime constant (θH) as a function of temperature (T) for Hordeum vulgare L.
Predictable values of R2, ψb(50) and σψb using halo thermal time (HaloTT) model to describe Hordeum vulgare L. seed germination under different Ts and ψs.
| Barley | T(°C) | ψb(50) (MPa) | σψb (MPa) | R | R2 | T | Sig. |
|---|---|---|---|---|---|---|---|
| 15 | −0.20 | 0.13 | 0.940 | 0.884 | 18.47 | Sig | |
| 20 | −0.23 | 0.21 | 0.976 | 0.953 | 19.42 | 0.018 | |
| AAJ | 25 | −0.17 | 0.12 | 0.965 | 0.930 | 13.36 | 0.004 |
| 30 | −0.13 | 0.9 | 0.999 | 0.998 | 27.78 | 0.008 | |
| 35 | −0.10 | 0.8 | 0.555 | 0.308 | 7.161 | 0.000 | |
| 40 | −0.8 | 0.6 | 0.901 | 0.812 | 11.64 | 0.331 |
R and R2 is the coefficient determination, σψb is the standard deviation. Ψb(50) is base water potential at 50 percentiles, θH is halotime constant, F is variability between different means, Sig. is significant value.
Estimated values of kT, σψb, and To using halothermal time model (HaloTT) for describing seed germination of Hordeum vulgare L. under different Ts and ψs.
| Variables | |
|---|---|
| Halothermal time model parameters | |
| ψb(50) (MPa) | −0.23 |
| σψb (MPa) | 0.21 |
| θHalo (MPa °C h−1) | 17.65 |
| kT (MPa °C h−1) | 0.104 |
| Cardinal temperatures | |
| Tb (°C) | 15 |
| To (°C) | 20 |
| Tc (°C) | 40 |
| R2 | 0.953 |
Ψb(50) = base water potential at 50 percentiles, Tb = base temperature, To = optimum temperature, Tc = ceiling temperature.
Figure 3Interactive effect of salinity and temperature on (a) germination percentage (b) mean germination time (c) germination rate index (d) germination index of barley (Hordeum vulgare L.) var. AAJ using halo thermal time (HaloTT) model.
Figure 4Interactive effect of salinity and temperature on (a) coefficient of the velocity of germination (b) germination energy (c) Timson germination index (d) mean germination rate of barley (Hordeum vulgare L.) var. AAJ using HaloTT model.
Figure 5Interactive effect of salinity and temperature on (a) seed vigor index-I (b) seed vigor index-II (c) time to 50% germination (d) root shoot ratio of barley (Hordeum vulgare L.) var. AAJ using HaloTT model.