College of Horticulture, Northeast Agricultural University Harbin, 150030, Heilongjiang, China.
Department of Agriculture, University of Swabi, Khyber Pakhtunkhwa, Pakistan.
Sci Rep. 2020 Apr 14;10(1):6415. doi: 10.1038/s41598-020-63548-w.
Drought stress is the most pervasive threat to plant growth, which predominantly encumbers turf grass growth by causing alterations in plant functions. This study appraised the role of nitrogen isotopes in providing a theoretical basis for developing and improving Kentucky bluegrass cultivar performance under drought stress. Nitrogen isotopes labelled NHCl and KNO were prepared to replace KNO in Hoagland's solution at concentrations of NH and NO at 1.5, 15, and 30 mM; the solutions were imposed on stressed plants under glasshouse conditions. Nitrogenous nutrition reduced oxidative stress by elevating the enzymatic activities and proline contents of all three clonal ramet leaves, particularly under stress conditions. Apart from nitrogen content, nitrogen isotope abundance, relative water content and water potential within controls were enhanced in treated with NH than in with NO in both the roots and leaves of Kentucky bluegrass. Nevertheless, an application of NHCl and KNO at 30 mM had a positive influence to some extent on these attributes under drought stress. Overall, our results suggested that nitrogen isotopes contributed to drought tolerance in all three clonal ramets of Kentucky bluegrass by maintaining a better osmoprotectant and antioxidant defence system, which helped the plants eliminate reactive oxygen species.
干旱胁迫是植物生长最普遍的威胁,主要通过改变植物功能来阻碍草坪草的生长。本研究评估了氮同位素在为培育和改善肯塔基蓝草品种在干旱胁迫下的性能提供理论基础方面的作用。制备了氮同位素标记的 NHCl 和 KNO,以替代 Hoagland 溶液中浓度为 1.5、15 和 30mM 的 KNO;在温室条件下将溶液施加于胁迫下的植物。氮营养通过提高三种克隆分株叶片的酶活性和脯氨酸含量来减轻氧化应激,特别是在胁迫条件下。除了氮含量、氮同位素丰度、相对水含量和水分势外,在肯塔基蓝草的根和叶中,与用 NO 处理相比,用 NH 处理的对照中这些属性都得到了增强。然而,在干旱胁迫下,30mM 的 NHCl 和 KNO 的应用在某种程度上对这些属性产生了积极的影响。总的来说,我们的结果表明,氮同位素通过维持更好的渗透保护剂和抗氧化防御系统,有助于植物清除活性氧,从而有助于肯塔基蓝草的所有三种克隆分株的耐旱性。