OSMOPRIMING AND ITS RELATIONSHIP WITH THE QUALITY OF Urochloa decumbens SEEDS UNDER WATER DEFICIT

Gabriel Cordeiro de Oliveira Peris, D. T. Pinheiro, M. A. R. Limão, Lucas Rodrigues de Souza, Rafaela Martins Alves Ramos, D. Dias
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Abstract

The use of high-quality Urochloa decumbens seeds is an essential factor for the establishment of pastures, and osmopriming under stress conditions may improve seed performance. This study was conducted at the Universidade Federal de Viçosa in a completely randomized design and aimed to evaluate the effects of osmopriming and its relationship with physical and physiological attributes of U. decumbens seeds subjected to water deficit. Seeds from ten lots were primed in H2O (0 MPa) and PEG (−0.8 MPa), KNO3 (0.2%), and SNP (0.10 mmol L−1) solutions for 24 hours. Unprimed seeds were used as control. The seeds were evaluated in two trials after osmopriming. Trial I consisted of the X-ray test to evaluate physical attributes and germination and vigor tests. In Trial II, the seeds were placed to germinate under favorable (0 MPa) and water deficit conditions (−0.2 MPa) to evaluate physiological attributes. In general, osmopriming of U. decumbens seeds assisted in increasing physical attributes such as area, gray scale, perimeter, and tissue density. Osmopriming does not contribute to the best physiological performance of U. decumbens seeds under ideal germination conditions (0 MPa). However, osmopriming with SNP (0.10 mmol L−1) and PEG (−0.8 MPa) for 24 hours contributes to the better physiological performance of seeds under water deficit.
缺水条件下的定向培育及其与罂粟种子质量的关系
使用高质量的十胜草种子是建立牧场的一个重要因素,而在胁迫条件下进行渗透处理可提高种子的性能。这项研究是在维索萨联邦大学(Universidade Federal de Viçosa)进行的,采用完全随机设计,目的是评估渗透处理的效果及其与缺水条件下十日莲种子的物理和生理属性之间的关系。十批种子在 H2O(0 兆帕)和 PEG(-0.8 兆帕)、KNO3(0.2%)和 SNP(0.10 mmol L-1)溶液中浸种 24 小时。未催芽的种子作为对照。渗漉后,对种子进行了两次试验评估。试验 I 包括评估物理属性的 X 射线测试以及发芽和活力测试。在试验 II 中,种子在有利条件(0 兆帕)和缺水条件(-0.2 兆帕)下发芽,以评估生理特性。一般来说,渗透处理有助于提高十日红种子的物理属性,如面积、灰度、周长和组织密度。在理想的萌发条件(0 兆帕)下,渗透修剪并不能使十香紫云英种子达到最佳生理表现。然而,用 SNP(0.10 mmol L-1)和 PEG(-0.8 MPa)进行 24 小时的渗透修剪有助于提高种子在缺水条件下的生理表现。
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