Department of Botany, University of Peshawar, Peshawar, 25120, Pakistan.
Biological Sciences Research Division, Pakistan Forest Institute, Peshawar, 25120, Pakistan.
Sci Rep. 2024 May 1;14(1):9978. doi: 10.1038/s41598-024-60015-8.
An extremely important oil crop in the world, Helianthus annuus L. is one of the world's most significant members of the Asteraceae family. The rate and extent of seed germination and agronomic features are consistently affecting by temperature (T) and changes in water potential (ψ). A broad hydrothermal time model with T and ψ components could explain sunflower responses over suboptimal T and ψ. A lab experiment was performed using the HTT model to discover both T and ψ and their interactive effects on sunflower germination and also to figure out the cardinal Ts values. The sunflower seeds were germinated at temperatures (15 °C, 20 °C, 25 °C and 30 °C); each Ts had five constant ψs of 0, 0.3, 0.6, 0.9, and 1.2 MPa via PEG 6000 as osmotic stress inducer. The results revealed that highest germination index was found in seed grown at 20 °C in distilled water (0 MPa) and the lowest at 30 °C with osmotic stress of (- 1.2 MPa). The highest value of germination rate index was found in seed grown at 20 °C in distilled water (0 MPa) and the lowest at 15 °C with an osmotic stress of (- 1.2 MPa). In conclusion, water potential, temperature, and their interactions have a considerable impact on seed germination rate, and other metrics (GI, SVI-I, GRI, GE, SVI-II, and MGT). Seeds sown at 20 °C with zero water potential showed high germination metrics such as GE, GP, GRI, and T50%. The maximum value to TTsub noted at 30 °C in - 0.9 MPa osmotic stress and the minimum value was calculated at 15 °C in - 1.2 MPa osmotic stress. The result of TTsupra recorded highest at 15 °C in controlled group (0 MPa). Moreover, θH was highest at 30 °C in controlled condition (0 MPa) and minimum value was observed at 20 °C under - 1.2 MPa osmotic stress. The value of θHTT were maximum at 30 °C in controlled group (0 MPa) and minimum value was recorded at 15 °C under - 1.2 MPa osmotic potential. The base, optimum and ceiling temperatures for sunflower germination metrics in this experiment were noted 6.8, 20 and 30 °C respectively.
作为世界上最重要的油料作物之一,向日葵属植物是菊科植物中最重要的成员之一。种子的发芽率和发芽速度以及农艺性状一直受到温度(T)和水势(ψ)的影响。一个具有 T 和 ψ 分量的广泛热时间模型可以解释向日葵在亚最优 T 和 ψ 条件下的反应。通过使用 HTT 模型进行实验室实验,我们发现了 T 和 ψ 及其对向日葵发芽的相互作用,并确定了关键的 Ts 值。向日葵种子在温度(15°C、20°C、25°C 和 30°C)下发芽;每个 Ts 值都有五个恒定的 ψ 值,通过 PEG 6000 作为渗透胁迫诱导剂,ψ 值分别为 0、0.3、0.6、0.9 和 1.2 MPa。结果表明,在蒸馏水中(0 MPa)20°C 下生长的种子发芽指数最高,在渗透胁迫为(-1.2 MPa)下 30°C 下生长的种子发芽指数最低。在蒸馏水中(0 MPa)20°C 下生长的种子发芽率指数最高,在渗透胁迫为(-1.2 MPa)下 15°C 下生长的种子发芽率指数最低。总之,水势、温度及其相互作用对种子发芽率和其他指标(GI、SVI-I、GRI、GE、SVI-II 和 MGT)有很大影响。在零水势下播种 20°C 的种子表现出高的发芽指标,如 GE、GP、GRI 和 T50%。在 30°C 下,在-0.9 MPa 渗透胁迫下记录到最高的 TTsub 值,在 15°C 下,在-1.2 MPa 渗透胁迫下记录到最低的 TTsub 值。在对照组(0 MPa)下记录到 TTsupra 的最高值在 15°C。此外,θH 在对照条件(0 MPa)下在 30°C 时最高,在-1.2 MPa 渗透胁迫下在 20°C 时最低。θHTT 的值在对照组(0 MPa)中最高,在-1.2 MPa 渗透势下在 15°C 时最低。本实验中,向日葵发芽指标的基温、最适温和最高温分别为 6.8°C、20°C 和 30°C。