As for soybean,salinity stress inhibits seed germination and seedling growth,and reduces nodulation,biomass accumulation and seed yield.
属于中度耐盐植物,盐胁迫条件下,种子的发芽率、幼苗的生长、结瘤数量以及干物质积累都受到抑制,从而导致产量降低。
参考来源 - 大豆子房滴注转化方法的研究及耐盐基因(AlNHX1)的转化But it’s not very distinct in low concentration of salinity stress.
低浓度盐分胁迫下,各处理与对照差异不明显。
参考来源 - 设施环境盐分胁迫对番茄生长发育及膜系统影响的研究As for soybean,salinity stress inhibits seed germination and seedling growth,and reduces nodulation,biomass accumulation and seed yield.
属于中度耐盐植物,盐胁迫条件下,种子的发芽率、幼苗的生长、结瘤数量以及干物质积累都受到抑制,从而导致产量降低。
参考来源 - 大豆子房滴注转化方法的研究及耐盐基因(AlNHX1)的转化·2,447,543篇论文数据,部分数据来源于NoteExpress
Salinity stress can keep MDA and relative conductance rising, increase the extent of membranes injury.
盐分胁迫可使MDA含量持续升高,叶片相对电导率不断升高,膜伤害程度不断加大。
Salinity stress can also destroy membranes system, the main functions : POD, and CAT in leaves rise at the beginning and then decline with the time and the increase of concentration.
盐分胁迫可破坏番茄幼苗的膜保护系统,具体作用如下:叶片中的POD,CAT活性随处理时间的延长表现为先上升后下降,随处理浓度的增加先升高后降低。
The expression of 3 OSR genes, including OSR2, OSR3 and OSR4, was enhanced, while that of another gene OSR9 was inhibited by osmotic stress and high salinity treatments.
数据库分析结果显示OSR家族基因的表达总体较弱,其中OSR2、OSR3和OSR4的表达受高渗和高盐处理诱导,而OSR9的表达受高渗和高盐处理抑制。
应用推荐