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首页> 外文期刊>Physiologia plantarum >Comparative physiological analysis in the tolerance to salinity and drought individual and combination in two cotton genotypes with contrasting salt tolerance
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Comparative physiological analysis in the tolerance to salinity and drought individual and combination in two cotton genotypes with contrasting salt tolerance

机译:盐度耐受性和干旱个体耐受性的比较生理学分析,两种棉基因型组合具有对比耐盐性耐盐性

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Soil salinity and drought are the two most common and frequently co-occurring abiotic stresses limiting cotton growth and productivity. However, physiological mechanisms of tolerance to such condition remain elusive. Greenhouse pot experiments were performed to study genotypic differences in response to single drought (4% soil moisture; D) and salinity (200mM NaCl; S) stress and combined stresses (D+S) using two cotton genotypes Zhongmian 23 (salt-tolerant) and Zhongmian 41 (salt-sensitive). Our results showed that drought and salinity stresses, alone or in combination, caused significant reduction in plant growth, chlorophyll content and photosynthesis in the two cotton genotypes, with the largest impact visible under combined stress. Interestingly, Zhongmian 23 was more tolerant than Zhongmian 41 under the three stresses and displayed higher plant dry weight, photosynthesis and antioxidant enzymes activities such as superoxide dismutase (SOD), peroxidase (POD) catalase (CAT) and ascorbate peroxidase (APX) activities compared to control, while those parameters were significantly decreased in salt-stresses Zhongmian 41 compared to control. Moreover, Na+/K+-ATPase activity was more enhanced in Zhongmian 23 than in Zhongmian 41 under salinity stress. However, under single drought stress and D+S stress no significant differences were observed between the two genotypes. No significant differences were detected in Ca2+/Mg2+-ATPase activity in Zhongmian 41, while in Zhongmian 23 it was increased under salinity stress. Furthermore, Zhongmian 23 accumulated more soluble sugar, glycine-betaine and K+, but less Na+ under the three stresses compared with Zhongmian 41. Obvious changes in leaf and root tips cell ultrastructure was observed in the two cotton genotypes. However, Zhongmian 23 was less affected than Zhongmian 41 especially under salinity stress. These results give a novel insight into the mechanisms of single and combined effects of drought and salinity stresses on cotton genotypes.
机译:土壤盐度和干旱是限制棉花生长和生产率的两种最常见和经常共同发生的非生物胁迫。然而,对这种病症的耐受性的生理机制仍然难以捉摸。进行温室盆栽实验以研究响应单干旱(4%土壤水分; D)和盐度(200mm NaCl; S)应激和组合应力(d + s)使用两种棉基因型23(耐盐)进行研究和中部41(盐敏感)。我们的研究结果表明,单独或组合,植物生长,叶绿素含量和两种棉基因型中的光合作用的大幅度降低,在组合应力下可见最大的影响。有趣的是在三个胁迫下比中跨41更高的植物干重,光合作用和抗氧化剂酶如超氧化物歧化酶(SOD),过氧化物酶(POD)过氧化物酶(抗坏血酸过氧化物酶(APX)活性的耐受性比较为了控制,盐应力41与对照相比,这些参数显着降低。此外,中棉23比在盐度胁迫下的中棉41中更加增强Na + / K + -AtPase活性。然而,在单干旱胁迫下,D + S强调在两种基因型之间没有观察到显着差异。在中棉41中的Ca2 + / mg2 + -AtPase活性中检测到没有显着差异,而在中跨23中,它在盐度胁迫下增加。此外,与中棉41相比,中棉23累积了更可溶的糖,甘氨酸甜菜,甘氨酸甜菜碱和K +,但在三次应力下较少Na +。在两种棉基因型中观察到叶子和根尖细胞超微结构的明显变化。然而,中药23受到中棉41的影响较小,特别是在盐度胁迫下。这些结果介绍了对棉基因型上干旱和盐度胁迫的单一和盐度胁迫的机制的洞察力。

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