首页> 外文期刊>Australian Journal of Crop Science >Exogenous abscisic acid(ABA) and silicon (Si) promote salinity tolerance by reducing sodium (Na + ) transport and bypass flow in rice (Oryza sativa indica)
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Exogenous abscisic acid(ABA) and silicon (Si) promote salinity tolerance by reducing sodium (Na + ) transport and bypass flow in rice (Oryza sativa indica)

机译:外源脱落酸(ABA)和硅(Si)通过减少稻米(Oryza sativa indica)中的钠(Na +)转运和旁路流动来提高耐盐性

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Excessive sodium (Na+) and chloride (Cl-) concentrations in rice shoots reduce seedlings growth. In a hydroponic study, we investigated the role of abscisic acid (ABA) seed pre-treatment on growth of salt-stressed rice, in the presence and/or absence of silicate (Si). Caryopses of rice IR4630 (salt tolerant) and IR15324 (salt sensitive) were soaked in an ABA solution (10-5 M) for 24 h, and the plants were then allowed to grow in a medium without or with silicate (Si, 0 or 3 mM). Twenty-one-day-old plants were salinised with NaCl (50 mM).We found the application ABA+Si the most effective treatment for improving plant growth under saline conditions. Si treatment alone or with ABA significantly increased the plant total dry biomass under saline or non-saline conditions, whereas, the effect of ABA seed pre-treatment was significant only on total dry biomass of salt sensitive genotype IR15324. Under saline conditions, ABA, Si and ABA+Si application ameliorated plant growth via suppression of Na+ accumulation in shoots and lowering down Na+/K+ ratios in both the rice genotypes. In addition, treatment with Si alone or with ABA significantly reduced Na+ concentrations in the leaf blades and sheaths, increased net assimilation rate and stomatal conductance of salt affected rice seedlings. We concluded that silicon can be applied as a nutrient for rice under saline or non-saline conditions. Furthermore, seed soaking with ABA has a potential for enhancing salt tolerance, particularly in the sensitive rice genotypes.
机译:水稻芽中钠(Na +)和氯化物(Cl-)的浓度过高会降低幼苗的生长。在水培研究中,我们研究了在有或没有硅酸盐(Si)的情况下,脱落酸(ABA)种子预处理对盐胁迫水稻生长的作用。将水稻IR4630(耐盐)和IR15324(耐盐)的筒状菌在ABA溶液(10-5 M)中浸泡24小时,然后让植物在无硅酸盐或硅酸盐(Si,0或0)的培养基中生长。 3 mM)。用NaCl(50 mM)对二十一天大的植物进行了盐碱化处理。我们发现,应用ABA + Si可以最有效地改善盐分条件下的植物生长。在盐或非盐条件下,单独施用硅或用ABA处理可显着提高植物的总干生物量,而ABA种子预处理的作用仅对盐敏感性基因型IR15324的总干生物量显着。在盐碱条件下,ABA,Si和ABA + Si的施​​用通过抑制芽中Na +的积累并降低两种水稻基因型的Na + / K +比例来改善植物的生长。此外,单独使用Si或使用ABA处理可显着降低叶片和鞘中Na +的浓度,增加净吸收率和盐分影响水稻幼苗的气孔导度。我们得出的结论是,在盐水或非盐条件下,硅可以用作水稻的营养素。此外,用ABA浸种具有增强耐盐性的潜力,特别是在敏感的水稻基因型中。

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