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首页> 外文期刊>Acta Horticulturae >Biochemical responses in leaves of 'Sahani' and 'Bidane-Sefid' grape cultivars subjected to progressing drought.
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Biochemical responses in leaves of 'Sahani' and 'Bidane-Sefid' grape cultivars subjected to progressing drought.

机译:遭受持续干旱的“ Sahani”和“ Bidane-Sefid”葡萄品种叶片的生化响应。

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摘要

The influence of water deprivation on potted grape (Vitis vinifera L.) was investigated. Leaf mass area (LMA) and biochemical responses including chlorophyll, total protein, peroxidase activity, soluble carbohydrates, photosynthesis and stomatal conductance were measured in leaves of 'Sahani' and 'Bidane-Sefid' grape cultivars subjected to progressive drought (soil water potential: -0.2, -0.6, -1 and -1.5 MPa). The results showed a temporary reduction in chlorophyll under drought stress conditions. 'Sahani' had higher chlorophyll compared with 'Bidane-Sefid'. Leaf mass area (LMA) was reduced significantly in 'Bidane-Sefid' under drought. Amount of LMA in 'Sahani' was higher than for 'Bidane-Sefid'. Protein content significantly reduced in -1 and -1.5 MPa treatment in comparison to the control (-0.2 MPa) and -0.6 MPa. Peroxidase activity increased as soil water potential increased. Peroxidase activity increasing of 'Sahani' was higher than for 'Bidane-Sefid'. This study revealed that mild (-0.6 MPa) drought stress affects photosynthesis while moderate (-1 MPa) and severe (-1.5 MPa) drought stress affects chlorophyll, protein, peroxidase activity and soluble carbohydrate levels. These results showed 'Sahani' had higher tolerance to drought condition compared to 'Bidane-Sefid'.
机译:研究了缺水对盆栽葡萄(Vitis vinifera L.)的影响。在进行性干旱的'Sahani'和'Bidane-Sefid'葡萄品种的叶片中测量叶质量面积(LMA)和生化响应,包括叶绿素,总蛋白,过氧化物酶活性,可溶性碳水化合物,光合作用和气孔导度(土壤水势: -0.2,-0.6,-1和-1.5 MPa)。结果表明在干旱胁迫条件下叶绿素暂时减少。与“ Bidane-Sefid”相比,“ Sahani”的叶绿素含量更高。干旱条件下,“ Bidane-Sefid”叶片的叶面积(LMA)明显减少。 “ Sahani”中的LMA数量高于“ Bidane-Sefid”中的LMA。与对照组(-0.2 MPa)和-0.6 MPa相比,在-1和-1.5 MPa处理中蛋白质含量显着降低。过氧化物酶活性随土壤水势的增加而增加。 “ Sahani”的过氧化物酶活性增加高于“ Bidane-Sefid”的过氧化物酶活性。这项研究表明,轻度(-0.6 MPa)干旱胁迫影响光合作用,而中度(-1 MPa)和重度(-1.5 MPa)干旱影响叶绿素,蛋白质,过氧化物酶活性和可溶性碳水化合物水平。这些结果表明,与“ Bidane-Sefid”相比,“ Sahani”对干旱条件的耐受性更高。

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