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首页> 外文期刊>American Journal of Plant Sciences >Germination of Sweet Sorghum Seeds in Different Water Potentials
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Germination of Sweet Sorghum Seeds in Different Water Potentials

机译:不同水势中甜高粱种子的萌发

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摘要

The implantation of sweet sorghum has been shown as viable alternative in crop rotation in sugar cane plantation reform areas. The seed environment in the field is complex and several factors, such as different genotypes and osmotic stress, can negatively influence the seeds water uptake and, therefore, the sequence of germination events can be compromised. In this context, the objective of this study was to evaluate the different physiological responses of sweet sorghum seeds (Sorghum bicolor (L.) Moench) belonging to the hybrids CV 007 and CV 147 and cultivar BRS 506 when submitted to substrates with different water potentials (-0.1, -0.2, -0.3, -0.4, and -0.5 MPa) using solutions of polyethylene glycol (PEG 6000). The seeds remained in Biochemical Oxygen Demand-type germination chambers, under constant white light and the temperature of 25°C for 14 h in the high temperature and 10 h in the low temperature. The moisture of the substrates was regularly monitored. The physiological potential of the genotypes was evaluated using the following characteristics: first count, germination, germination speed index (GSI), root length, and fresh and dry weights of seedlings. In general, germination and early growth of seedlings were negatively affected by the reduction of water potentials below -0.1 MPa, which was also damaging to the GSI of the seeds. Germination and growth of seedlings of the hybrids CV 007 and CV 147 and of the cultivar BRS 506 were affected by reduced water potentials starting at -0.1 MPa. The seeds of hybrid CV 147 were more tolerant to simulated water stress with PEG 6000 than those of hybrid CV 007 and cultivar BRS 506.
机译:甜高粱的植入已被证明是甘蔗种植改革区域作物旋转中的可行替代品。该领域的种子环境是复杂的,并且若干因素,例如不同的基因型和渗透胁迫,可以对种子吸水产生负面影响,因此,可以损害萌发事件的序列。在这种情况下,本研究的目的是评估属于杂种CV 007和CV 147和品种BRS 506的甜高粱种子的不同生理反应(高粱双子硼(L.)moench)。使用聚乙二醇(PEG 6000)的溶液,将具有不同水电位(-0.1,0.2,-0.3,-0.4和-0.4和-0.5MPa)的底物。在恒定白光下持续在生化氧需求型萌发室中,在低温下在高温和10小时的温度下,在恒定白光下持续25℃的温度。规则地监测基材的水分。使用以下特征评估基因型的生理潜力:首先计数,萌发,萌发速度指数(GSI),根长度和新鲜和干重的幼苗。通常,通过降低低于-0.1MPa的水电位,幼苗的萌发和早期生长受到负面影响,这对种子的GSI也有害。杂交种CV 007和CV 147和品种BRS 506的幼苗的萌发和生长受到在-0.1MPa的降低的水电位的影响。杂交CV 147的种子比杂交CV 007和品种BRS 506更容易耐受模拟水胁迫与PEG 6000的水胁迫。

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