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首页> 外文期刊>Industrial Crops and Products >Physiological and biochemical mechanisms of salinity tolerance in several fennel genotypes: Existence of clearly-expressed genotypic variations
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Physiological and biochemical mechanisms of salinity tolerance in several fennel genotypes: Existence of clearly-expressed genotypic variations

机译:几种茴香基因型盐度耐受的生理生化机制:清晰表达基因型变化的存在

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摘要

Medicinal plants such as fennel (Foeniculum vulgare Mill.) are potent to be utilized as alternatives to conventional crop plants in the face of ever-increasing drought and salinity stresses in arid regions. However, scientific data on the physiological responses of F. vulgare to salt stress is scarce. Six F. vulgare genotypes were subjected to five concentrations of irrigation water NaCl (i.e. 0, 30, 60, 90, and 120 mM) in a pot experiment. Photosynthetic pigments of chlorophyll a (Chl-a) and b (Chl-b) and carotenoids (Cars) concentrations, leaf water potential (P-w), and plant height were decreased but Chl-a/b, proline concentration and ascorbate peroxidase (APX) activity were increased with increase in NaCI concentration. Averaged over NaCI concentrations, genotypes Urmia, Kashan and Isfahan out-numbered the other genotypes in terms of these traits. Relative water content (RWC), shoot K(+ )and Na+ concentrations, Na+/K+, superoxide dismutase (SOD) and catalase (CAT) activities, total soluble carbohydrates (TSC), H2O2 and malondialdehyde (MDA) concentrations, plant leaf area (LA), seed weight/plant and above-ground dry mass (DM) responded to salt in a genotype-specific manner, with genotypes Urmia, Kashan, and Isfahan tending to out-number the remaining genotypes in terms of the latter traits with the exception of MDA and Na+ concentrations. Results revealed that tolerance to modest salinity of genotypes Urmia, Kashan and Isfahan, manifested in smaller decreases in seed weight/plant and DM, was associated with their smaller Na+ but greater photosynthetic pigments, K+, proline and TSC concentrations, RWC, P-w , and antioxidant activities of the salt-stricken plants, compared to the remaining genotypes.
机译:茴香(Foeniculum Vulgare Mill)的药用植物是有效的,以便在干旱地区的不断增加的干旱和盐度应力面前用作常规作物植物的替代品。然而,关于F.Vulgare对盐胁迫的生理反应的科学数据是稀缺的。在罐实验中对六个耐脉冲基因型进行五种浓度的灌溉水NaCl(即0,30,60,90和120mm)。叶绿素A(CHL-A)和B(CHL-B)和类胡萝卜素(CAROTENOID),叶水电位(PW)和植物高度的光合色素减少,但CHL-A / B,脯氨酸浓度和抗坏血酸过氧化物酶(APX )随着NaCl浓度的增加而增加。在NACI浓度下,基因型荨麻疹,喀山和伊斯法罕在这些特征方面出现了其他基因型。相对含水量(RWC),芽K(+)和Na +浓度,Na + / K +,超氧化物歧化酶(SOD)和过氧化氢酶活性,总可溶性碳水化合物(TSC),H 2 O 2和丙二醛(MDA)浓度,植物叶面积(La),种子重/植物和地上干肿块(DM)以基因型特异性的方式应对盐,具有基因型荨麻疹,喀山和伊斯法罕,在后一种特征方面趋于超出剩余的基因型。 MDA和Na +浓度除外。结果表明,对种子重量/植物和DM的较小降低,耐受基因型荨麻疹荨麻疹的含水量,喀山和伊斯法罕,与其较小的Na +但更大的光合色素,K +,脯氨酸和TSC浓度,RWC,PW和与剩余的基因型相比,盐灾害植物的抗氧化活性。

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