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首页> 外文期刊>Biological trace element research >Modulation of exogenous glutathione in ultrastructure and photosynthetic performance against Cd stress in the two barley genotypes differing in Cd tolerance.
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Modulation of exogenous glutathione in ultrastructure and photosynthetic performance against Cd stress in the two barley genotypes differing in Cd tolerance.

机译:两种对镉耐受性不同的大麦基因型中外源谷胱甘肽的超微结构调节和对镉胁迫的光合作用性能。

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摘要

Greenhouse hydroponic experiments were conducted using Cd-sensitive (Dong 17) and tolerant (Weisuobuzhi) barley genotypes to evaluate genotypic differences in response of photosynthesis and ultrastructure to Cd toxicity in the presence of exogenous glutathione (GSH). Addition of 20 mg L(-1) GSH in 5 muM Cd culture medium (Cd + GSH) significantly alleviated Cd-induced growth inhibition and reduced Cd concentration in leaves and roots especially in the sensitive genotype Dong 17. Exogenous GSH greatly ameliorated Cd-induced damages on leaf/root ultrastructure, e.g., compared with Cd alone treatment, chloroplasts in plants treated with Cd + GSH become better or in relatively normal shape with well-structured thylakoid membranes and parallel pattern of lamellae and unfolded more starch grains but less osmiophilic plastoglobuli; nuclei of root cells were better formed and chromatin distributed more uniformly in both genotypes, and number of plastids and mitochondria cristae in Dong 17 resumed to control level. The examination of photosynthetic performance revealed GSH dramatically increased net photosynthetic rate (P(n)), stomatal conductance (G(s)), and transpiration rate (T(r)) in the both genotypes and strongly stimulated Cd-induced decrease in the maximal photochemical efficiency (F(v)/F(m)) especially in the sensitive genotype.
机译:使用镉敏感型(Dong 17)和耐受性大麦(Weisuobuzhi)大麦基因型进行温室水培试验,以评估在外源性谷胱甘肽(GSH)存在下光合作用和超微结构对镉毒性的基因型差异。在5μMCd培养基(Cd + GSH)中添加20 mg L(-1)GSH可显着减轻Cd诱导的生长抑制并降低叶和根中的Cd浓度,尤其是在敏感基因型Dong 17中。外源GSH大大改善了Cd-诱导的叶/根超微结构损伤,例如,与单独使用Cd处理相比,用Cd + GSH处理的植物中的叶绿体变得更好或处于相对正常的形状,具有良好的类囊体膜和平行的片状结构,并具有更多的淀粉粒但不具有亲油性质体球两种基因型的根细胞核均形成较好,染色质分布更均匀,Dong 17中质体和线粒体的数量恢复到控制水平。对光合性能的检查表明,两种基因型的谷胱甘肽GSH均显着提高了净光合速率(P(n)),气孔导度(G(s))和蒸腾速率(T(r)),并强烈刺激了Cd诱导的Cd降低。最大光化学效率(F(v)/ F(m)),尤其是在敏感基因型中。

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