首页> 外文期刊>Acta Physiologiae Plantarum >Modeling seed germination of unprimed and primed seeds of sweet sorghum under PEG-induced water stress through the hydrotime analysis
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Modeling seed germination of unprimed and primed seeds of sweet sorghum under PEG-induced water stress through the hydrotime analysis

机译:通过水时间分析模拟PEG诱导的水分胁迫下甜高粱的未引发和引发的种子萌发

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The effects of reduced water potential (psi) on seed germination at 25 and 15 degrees C in unprimed (UP) and primed (P) seeds of two cultivars of sweet sorghum (cv. Keller and cv. Makueni local), were analyzed through the hydrotime model. Six psi (from 0 to -1.0 MPa) in polyethylene glycol 6000 (PEG) solutions were used for the tests. Seeds were primed in 250 g/L PEG solution at 15 degrees C for 48 h. Decreasing psi of imbibition solution reduced and delayed germination. At 15 degrees C seeds germinated less and slower than at 25 degrees C at any psi. Seeds of cv. Makueni local exhibited a greater sensitivity to water stress in terms of germination percentage, than seeds of cv. Keller, but they were faster in germination. Osmopriming was beneficial for seed germination, both in terms of final percentage and rate, at any temperature and psi. The hydrotime analysis revealed that predicted theta(H) constant was increased when temperature was reduced to 15 degrees C and at this temperature median base water potential [psi(b(50))] for germination was higher (less negative) than at 25 degrees C. Seed priming shifted psi(b(50)) towards more negative values and reduced theta(H) requirements for germination. At 25 degrees C the two cultivars behaved similarly while at 15 degrees C cv. Keller exhibited a psi(b) more negative but required a greater theta(H) to germinate, indicating a greater water-stress tolerance but a slower germination, than cv. Makueni local. The application of the model allows to identify water stress tolerant cultivars during germination, to include into breeding programs for the selection of well-performing cultivars under stress conditions.
机译:通过以下方法分析了降低的水势(psi)对两个甜高粱品种(cv。Keller和cv。Makueni local)的未初生(UP)和初生(P)种子在25和15摄氏度时种子萌发的影响。水文时间模型。在聚乙二醇6000(PEG)溶液中使用6 psi(从0到-1.0 MPa)进行测试。将种子在15摄氏度的250 g / L PEG溶液中灌注48小时。吸收溶液的psi降低会减少发芽并延迟发芽。在15摄氏度下,种子的发芽率比在任何psi下25摄氏度时的发芽率都低。简历的种子。 Makueni本地对发芽率表现出的水分敏感性比对CV种子更高。凯勒,但是它们发芽更快。在任何温度和psi下,渗透压均有利于种子萌发,无论是最终百分率还是最终速率。水文时间分析显示,当温度降低到15摄氏度时,预计的theta(H)常数会增加,并且在此温度下,发芽的中位基础水势[psi(b(50))]高于(低于)25度。 C.种子启动将psi(b(50))移向更大的负值,并降低了发芽的theta(H)要求。在25摄氏度时,两个品种在15摄氏度时表现相似。凯勒(Keller)表现出的psi(b)更大的负值,但需要更大的theta(H)才能发芽,这表明与cv相比,其更大的耐水胁迫能力但发芽速度更慢。 Makueni当地。该模型的应用可以确定发芽过程中耐水胁迫的品种,并将其纳入育种程序中以选择在胁迫条件下表现良好的品种。

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