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首页> 外文期刊>Trees. Structure and Function >Storage reserve mobilization, gluconeogenesis, and oxidative pattern in dormant pistachio (Pistacia vera L.) seeds during cold stratification
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Storage reserve mobilization, gluconeogenesis, and oxidative pattern in dormant pistachio (Pistacia vera L.) seeds during cold stratification

机译:冷分层期间宿舍开心(Pistacia Vera L.)种子的储备储备动员,葡糖苷和氧化模式

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摘要

Effects of cold stratification on enhancing germination capacity of pistachio (Pistacia vera L.) kernels was investigated through the study of storage reserve mobilization, gluconeogenesis, and enzymatic antioxidant defense system in both cotyledon and embryonic axis organs. Every week, imbibed pistachio seeds were cold stratified at 5 degrees C for increasing periods up to 42 days. Stratifying seeds for 42 days significantly increased their germination potential. Lipid hydrolysis in both organs during cold stratification was accompanied by increased isocitrate lyase activity and the accumulation of starch and soluble sugars. Total protein mobilization occurred in cotyledons rather than embryonic axes but was accompanied by high proteolytic activity and accumulation of amino acids in both organs. However, the pattern of soluble proteins changes in both tissues was nearly identical. The activity of a typical protease at a particular pH was not detected in stratifying pistachio kernels, but rather different proteases might be activated depend on cold treatment period. Cold stratification also led to increased H2O2-scavenging enzymes activity and consequently decreased hydrogen peroxide and lipid peroxidation in pistachio kernels. These data suggest that beneficial effects of cold treatment in germination induction of pistachio kernels arise from prevention of processes causing seed deterioration by turning on cellular repair mechanisms and activating gluconeogenic processes, which subsequently enhance seed capability for germination.
机译:通过研究储备储备动员,葡糖苷和胚胎轴颈器官的储备诱导,葡糖生成和酶促抗氧化防御系统研究了冷纹分层对增强萌发能力的影响。每周,在5摄氏度下,吸收的开发虫种子在5℃下进行冷分层,以增加长达42天。分层的种子42天显着提高了它们的发芽势。在冷分层期间两种器官中的脂质水解伴随着等柠檬酸裂解酶活性和淀粉和可溶性糖的积累。在子叶中出现总蛋白质动员,而不是胚胎轴,但伴随着两种器官中的高蛋白水解活性和氨基酸的积累。然而,可溶性蛋白质的模式两种组织的变化几乎相同。在分层的开杨中核中未检测到特定pH下的典型蛋白酶的活性,但是可以激活不同的蛋白酶取决于冷治疗期。冷分层还导致H 2 O 2 - 清除酶活性增加,从而降低了开心核中的过氧化氢和脂质过氧化。这些数据表明,通过探测细胞修复机制和激活葡糖原过程,引起导致种子劣化的过程萌发诱导的萌发诱导的有益效果。随后增强了萌发的种子能力,导致种子劣化。

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