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Alleviation of salt stress and expression of stress-responsive gene through the symbiosis of arbuscular mycorrhizal fungi with sour orange seedlings

机译:用酸橙幼苗共生蛋氨酸菌根真菌的共生胁迫胁迫基因的盐胁迫和表达

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The objective of this study was to investigate the effect of arbuscular mycorrhizal fungi (AMF from Glomus genus) inoculation on salt tolerance and the expression of CaSISP gene in sour orange (Citrus aurantium L.) seedlings. Forty-day-old sour orange seedlings were inoculated with G. mosseae + G. intraradices, G. mosseae + G. hoi, G. intraradices + G. hoi, G. mosseae + G. intraradices + G. hoi and kept for 175 days, then treated with 0 (control), 35 and 70 mM NaCl. After 45 days of salinity treatment, some physiological, biochemical and growth parameters as well as the expression pattern of Stress-Inducible Small Protein (SISP) gene were determined. Under salt stress, mycorrhizal inoculated plants had higher growth, higher chlorophyll content, better water status, higher gas exchange capacity (increased photosynthetic rate, stomatal conductance and transpiration rate), lower electrolyte leakage, malondialdehyde and hydrogen peroxide contents and higher osmolytes accumulation and antioxidant defense systems response compared to non-mycorrhizal treated plants (control). Moreover, abscisic acid levels were lower in colonized plants, indicating that they were less stressed than the controls. On the other hand, we demonstrated for the first time that the expression of CaSISP gene was influenced by both AMF symbiosis and salinity stress. Our study showed that the plants inoculated with the triple combination of fungi based on some of morphological, physiological and biochemical characters were more tolerant to salt stress than the others suggesting the application of AMF colonization as a practical way to improve citrus production under salt stress condition.
机译:本研究的目的是探讨丛枝菌根真菌(AMF来自Glomus Genus)对耐酸性耐药性和Casisp基因的表达的影响。用G.Mosseee + G.内部接种四十天酸橙幼苗,G.Mosseae + G.Hoi,G. IntrarAcces + G.Hoi,G.Mossee + G.内部+ G.Hoi并保存为175然后用0(对照),35和70mm NaCl处理天。在盐度处理45天后,确定一些生理,生化和生长参数以及应激诱导的小蛋白(SISP)基因的表达模式。在盐胁迫下,菌根接种的植物的生长较高,叶绿素含量更高,水位更高,气体交换能力较高(较高的光合速率,气孔导电和蒸腾率),较低的电解质泄漏,丙二醛和过氧化氢含量,渗透液和抗氧化含量更高与非菌根治疗植物相比,防御系统响应(对照)。此外,在殖民化植物中脱离酸水平较低,表明它们比对照较小。另一方面,我们首次展示了Casisp基因的表达受AMF共生和盐度胁迫的影响。我们的研究表明,基于某些形态学,生理和生化特性的真菌三重组合的植物比其他人更容易耐受盐应激,表明AMF定植在盐胁迫下改善柑橘生产的实用方法。

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