Grupo de Biotecnología de Frutales-Dept. Mejora Vegetal, CEBAS-CSIC, Campus Universitario Espinardo, Apartado de Correos P.O. Box 164, E-30100 Murcia, Spain.
Plant Physiol Biochem. 2012 Oct;59:30-6. doi: 10.1016/j.plaphy.2011.12.002. Epub 2011 Dec 17.
In this work we investigate the effect of the imbibition of pea seeds with different thioproline (TP) concentrations on the germination percentage and the early growth of the seedlings. The interaction between TP and hydrogen peroxide (H₂O₂) treatments is also analysed in order to test if any synergy in germination and growth occurs. Although the imbibition of pea seeds in the presence of TP did not significantly improve the germination percentage, TP and/or H₂O₂ pre-treatments increased seedlings growth. This increase in seedling growth was reduced by abscisic acid (ABA) addition. Imbibition of pea seeds in the presence of ABA also reduced the endogenous H₂O₂ contents of pea seedlings in control and TP-treated seeds. The incubation of pea seeds with TP and/or H₂O₂ in presence or absence of ABA decreased the activity of H₂O₂-scavenging enzymes. The increase of the endogenous H₂O₂ contents observed in TP and/or H₂O₂ treatments in absence of ABA could be correlated with the decrease in these activities. Finally, the hormone profile of pea seedlings was investigated. The results show that the increase in seedling growth is correlated with a decrease in ABA in samples pre-treated with H₂O₂ and TP + H₂O₂. Nevertheless, no significant differences in endogenous ABA concentration were observed with the TP pre-treatment. This paper suggests a relationship between endogenous H₂O₂ contents and plant growth, so reinforcing the intricate crosstalk between reactive oxygen species (ROS) and plant hormones in seed germination signalling and early seedling development.
在这项工作中,我们研究了不同巯基脯氨酸(TP)浓度的豌豆种子吸水对发芽率和幼苗早期生长的影响。还分析了 TP 和过氧化氢(H₂O₂)处理之间的相互作用,以检验是否存在发芽和生长协同作用。虽然在 TP 存在下吸水并没有显著提高豌豆种子的发芽率,但 TP 和/或 H₂O₂预处理增加了幼苗的生长。添加脱落酸(ABA)会降低这种幼苗生长的增加。ABA 存在下豌豆种子的吸水也降低了对照和 TP 处理种子中豌豆幼苗的内源性 H₂O₂含量。在有或没有 ABA 的情况下,豌豆种子与 TP 和/或 H₂O₂孵育降低了 H₂O₂清除酶的活性。在没有 ABA 的情况下,TP 和/或 H₂O₂处理中观察到的内源性 H₂O₂含量增加可能与这些活性的降低有关。最后,研究了豌豆幼苗的激素谱。结果表明,在 H₂O₂和 TP+H₂O₂预处理的样品中,幼苗生长的增加与 ABA 的减少有关。然而,在 TP 预处理中,内源性 ABA 浓度没有观察到显著差异。本文提出了内源性 H₂O₂含量与植物生长之间的关系,从而加强了活性氧(ROS)与植物激素在种子萌发信号转导和早期幼苗发育中的复杂相互作用。