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Tyrosine-priming modulates phenylpropanoid pathway in maize grown under different pH regimes

机译:酪氨酸引发调节在不同pH值条件下生长的玉米中的苯丙烷途径

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摘要

Alkaline and acidic pH of soil limit crop yield. Products of phenylpropanoid pathway play a key part in plant abiotic stress tolerance. It was aimed to assess efficacy of tyrosinepriming for activation of enzyme involved in phenolic accumulation induction of pH tolerance in maize seedlings. Seeds of two maize cultivars, namely Sadaf (pH tolerant) and S-2002 (pH sensitive), were grown under three pH levels (3, 7 and 11). Eight and twelve days old seedlings were harvested and parted into roots and shoots for the assessment of growth, enzymatic and non-enzymatic antioxidants. PAL activity was directly correlated with total soluble phenolics, flavonoids, growth and seedling vigour. Lower accumulation of phenolics and PAL activity in the pH sensitive (S-2002) cultivar indicated greater oxidative damage caused by pH extremes. Priming improved antioxidative potential by enhancing PAL activity and phenolics accumulation and hence increased growth in maize seedlings.
机译:土壤的碱性和酸性pH限制了作物的产量。苯丙烷途径的产物在植物非生物逆境耐受性中起关键作用。目的是评估酪氨酸引发对激活玉米幼苗中酚耐性诱导的pH耐受的酶的活化作用。在3个pH值(3、7和11)下生长两个玉米品种的种子,即Sadaf(耐pH)和S-2002(pH敏感)。收获八和十二天大的幼苗,分成根和芽,用于评估生长,酶抗氧化剂和非酶抗氧化剂。 PAL活性与总可溶性酚,类黄酮,生长和幼苗活力直接相关。在pH敏感的品种(S-2002)中,酚类化合物的积累和PAL活性较低,表明极端pH引起的氧化损伤更大。通过增强PAL活性和酚类物质的积累来引发抗氧化能力的提高,从而增加玉米幼苗的生长。

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