首页> 外文期刊>Scientia horticulturae >Effects of chitosan and calcium chloride treatments on malic acid-metabolizing enzymes and the related gene expression in post-harvest pear cv. 'Huang guan'.
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Effects of chitosan and calcium chloride treatments on malic acid-metabolizing enzymes and the related gene expression in post-harvest pear cv. 'Huang guan'.

机译:壳聚糖和氯化钙处理对梨采后梨苹果酸代谢酶及相关基因表达的影响“黄冠”。

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摘要

Malic acid in the 'Huang guan' pear (Pyrus pyrifolia Nakai) is the predominant organic acid associated with taste, flavor and juice quality. The effects of different treatments on malic acid-metabolizing enzymes and the related genes expression during storage have been studied. Malic acid content was higher in the peel than in the pulp. NAD-dependent malate dehydrogenase (NAD-MDH) and NADP-dependent malic enzyme (NADP-ME) correlated with gene expression during cold storage. NAD-MDH promoted malic acid synthesis, whereas NADP-ME promoted malic acid degradation. Chitosan treatment had a significantly positive effect on the activities of NAD-MDH and a negative effect on the activities of NADP-ME both in pulp and peel, and CaCl2 just significantly affected those in peel. The gene expressions of Mdh were not significantly impacted under both treatments, in addition to the gene expression of Me under CaCl2 treatment. An expression analysis of the proton pump gene revealed that vVAtp1 significantly negatively regulated the malic acid content, and there was a significant negative correlation between the vVpp gene and the accumulation of malic acid in the peel. Different treatments inhibited the gene expression of vVAtp2, as well as promoted gene expression of vVAtp1. Overall, both treatments attenuated enzyme activity and malic degradation of pear fruit during storage period.
机译:黄冠梨(Pyrus pyrifolia Nakai)中的苹果酸是主要的有机酸,与口味,风味和果汁质量相关。研究了不同处理对苹果酸代谢酶及其在贮藏过程中相关基因表达的影响。果皮中的苹果酸含量高于果肉中的苹果酸含量。 NAD依赖性苹果酸脱氢酶(NAD-MDH)和NADP依赖性苹果酸酶(NADP-ME)与冷藏期间的基因表达相关。 NAD-MDH促进苹果酸合成,而NADP-ME促进苹果酸降解。壳聚糖处理对果肉和果皮中的NAD-MDH活性具有显着的正作用,而对果肉和果皮中的NADP-ME活性均具有消极作用,而CaCl 2 仅对果皮和果皮中的NAD-MEH活性产生显着影响。除CaCl 2 处理下Me的基因表达外,两种处理对Mdh的基因表达均无显着影响。质子泵基因的表达分析表明,vVAtp1显着负调节苹果酸含量,并且vVpp基因与果皮中苹果酸的积累之间呈显着负相关。不同的处理抑制vVAtp2的基因表达,并促进vVAtp1的基因表达。总体而言,两种处理均会降低梨果实在贮藏期间的酶活性和苹果酸的降解。

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