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Polyamine Metabolism of Potato Seed-Tubers During Long-Term Storage and Early Sprout Development

机译:马铃薯种子管的长期储存和早期萌芽过程中的多胺代谢

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摘要

Growth potential of potato (Solanum tuberosum L.) plants is influenced by seed-tuber age. After 24 days of growth, single-eye seedcores from 7-month-old seed-tubers produced 64% more foliar dry matter than those from 19-month-old seed-tubers, reflecting a higher growth rate. This study was initiated to determine if differences in polyamine (PA) metabolism are associated with aging and age-reduced vigor of potato seed-tubers. As tubers aged in storage, putrescine (Put) increased 2.2-fold, while spermidine (Spd) and spermine (Spm) decreased 33% and 38%, respectively. Ethylene content of the tuber tissue also increased with advancing age, suggesting that during the aging process S-adenosylmethionine was directed toward ethylene biosynthesis at the expense of the PAs. Single-eye cores from 7- and 19-month-old tubers were sown and PA levels in core and shoot tissues were monitored during plant development. Put titer of younger cores increased 8.8-fold by 12 days. In contrast, the increase in Put over the initial titer in older cores was 2.9-fold. The reduced ability of older cores to synthesize Put during plant establishment is probably due to a 45% decline in ornithine decarboxylase activity between 12 and 16 days after planting. Lack of available Put substrate limited the biosynthesis of Spd and Spm, and thus their concentrations remained lower in older cores than in younger cores. Lower PA titer in older cores during plant establishment is thus coincident with reduced growth potential. Concentrations of Put and Spd were higher in shoots developing from older cores throughout the study, but there was no age-related difference in Spm content. In contrast, activities of arginine and S-adenosylmethionine decarboxylases were higher in shoots from younger cores during establishment. The results indicate that aging affects PA metabolism in both tuber and developing plant tissues, and this may relate to loss of growth potential with advancing seed-tuber age.
机译:马铃薯(Solanum tuberosum L.)植物的生长潜力受种子块茎年龄的影响。生长24天后,7个月大的种子块茎的单眼种子芯产生的叶干物质比19个月大的种子块茎产生的叶干物质多64%,反映出更高的生长速度。开始这项研究是为了确定多胺(PA)代谢的差异是否与马铃薯种子块茎的衰老和降低年龄的活力有关。随着块茎在贮藏中的老化,腐胺(Put)增加2.2倍,而亚精胺(Spd)和亚精胺(Spm)分别减少33%和38%。块茎组织中的乙烯含量也随着年龄的增长而增加,这表明在衰老过程中,S-腺苷甲硫氨酸直接用于乙烯的生物合成,而PA的代价却是降低。播种7个月和19个月大块茎的单眼核心,并在植物发育过程中监测核心和芽组织中的PA水平。 12天后,较年轻的核心的穿刺效价提高了8.8倍。相反,较老的核心的Put值超过初始滴度的增加是2.9倍。在植株建立过程中,较早的核心合成Put的能力下降可能是由于在种植后12至16天之间鸟氨酸脱羧酶活性下降了45%。缺乏可用的Put底物限制了Spd和Spm的生物合成,因此,在较老的岩心中其浓度仍低于在较年轻的岩心中。因此,在植物建立过程中,较早的核心中较低的PA效价与生长潜力的降低同时发生。在整个研究中,从较早的核心发育而来的芽中Put和Spd的浓度较高,但Spm含量没有与年龄相关的差异。相反,在建立过程中,来自年轻核心的芽中精氨酸和S-腺苷甲硫氨酸脱羧酶的活性较高。结果表明,衰老会影响块茎和发育中植物组织中的PA代谢,这可能与种子块茎年龄的增长导致生长潜力的丧失有关。

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