Department of Plant Physiology, Centre for Agricultural Research, Agricultural Institute, Martonvásár, 2462, Hungary.
Botany Department, Faculty of Science, Benha University, Benha, 13518, Egypt.
Sci Rep. 2020 Dec 18;10(1):22327. doi: 10.1038/s41598-020-79372-1.
Aegilops biuncialis is a promising gene source to improve salt tolerance of wheat via interspecific hybridization. In the present work, the salt stress responses of wheat-Ae. biuncialis addition lines were investigated during germination and in young plants to identify which Aegilops chromosomes can improve the salt tolerance of wheat. After salt treatments, the Aegilops parent and the addition lines 2M, 3M and 3M.4BS showed higher germination potential, shoot and root growth, better CO assimilation capacity and less chlorophyll degradation than the wheat parent. The Aegilops parent accumulated less Na in the roots due to an up-regulation of SOS1, SOS2 and HVP1 genes, while it contained higher amount of proline, fructose, glucose, galactose, maltose and raffinose. In the leaves, lower Na level was accompanied by high amount of proline and increased expression of NHX2 gene. The enhanced accumulation of sugars and proline was also observed in the roots of 3M and 3M.4BS addition lines. Typical mechanism of 2M addition line was the sequestration of Na into the vacuole due to the increased expression of HVP1 in the roots and NHX2 in the leaves. These results suggest the Aegilops chromosomes 2M and 3M can improve salt tolerance of wheat in different way.
长穗偃麦草是一种很有前途的基因源,可以通过种间杂交提高小麦的耐盐性。本研究在萌发期和幼苗期分析了小麦-长穗偃麦草添加系对盐胁迫的响应,以确定哪些长穗偃麦草染色体可以提高小麦的耐盐性。盐处理后,长穗偃麦草亲本和添加系 2M、3M 和 3M.4BS 的发芽势、幼苗的茎和根生长、CO2 同化能力优于小麦亲本,叶绿素降解程度较低。由于 SOS1、SOS2 和 HVP1 基因的上调,长穗偃麦草亲本在根中积累的 Na 较少,而脯氨酸、果糖、葡萄糖、半乳糖、麦芽糖和棉子糖的含量较高。在叶片中,Na 含量较低伴随着脯氨酸含量的增加和 NHX2 基因的表达增加。添加系 3M 和 3M.4BS 的根中也观察到糖和脯氨酸的积累增加。2M 添加系的典型机制是由于根中 HVP1 和叶中 NHX2 的表达增加,将 Na 隔离到液泡中。这些结果表明,长穗偃麦草染色体 2M 和 3M 可以通过不同的方式提高小麦的耐盐性。