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首页> 外文期刊>Postharvest Biology and Technology >Tuber respiratory profiles during low temperature sweetening (LTS) and reconditioning of LTS-resistant and susceptible potato (Solanum tuberosum L.) cultivars.
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Tuber respiratory profiles during low temperature sweetening (LTS) and reconditioning of LTS-resistant and susceptible potato (Solanum tuberosum L.) cultivars.

机译:低温增甜(LTS)和抗LTS易感马铃薯(Solanum tuberosum L.)品种的翻新过程中的块茎呼吸状况。

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摘要

Potato cultivars Premier Russet, GemStar Russet, Defender and Russet Burbank differ substantially in resistance to low temperature sweetening (LTS) and associated metabolism. 'Gemstar Russet' and 'Premier Russet' have moderate and high resistances, respectively, while 'Defender' loses processing quality progressively during storage at 9 degrees C, and similar to 'Russet Burbank', has virtually no resistance to LTS at 4 degrees C. The different mechanisms of LTS resistance or susceptibility in these cultivars were indicated by changes in sucrose (Suc), fructose (Fru) and glucose (Glc) concentrations in relation to tuber respiratory profiles during wound healing (9 degrees C), LTS (4 degrees C) and reconditioning (16 degrees C). At 4 degrees C, 'Premier Russet' tubers maintained low levels of Suc and reducing sugars (RS, Glc + Fru), while 'GemStar Russet' tubers accumulated Suc with little inversion to RS. 'Defender' and 'Russet Burbank' tubers accumulated RS during LTS but only moderate levels of Suc. Changes in RS content reflected the combined activities of acid invertase and its endogenous inhibitor. In response to an immediate drop from 9 degrees C to 4 degrees C, tuber respiration decreased to a minimum and then increased to a new maximum over the next approximately 5 days, before decreasing to a constant basal rate at 4 degrees C. Relative changes in respiration from the minimum to maximum rate during cold acclimation (respiratory acclimation response, RAR) were 80% for 'GemStar Russet' and 'Defender', 51% for 'Russet Burbank' and 26% for 'Premier Russet'. The RARs correlated with total sugar (Suc+Glc+Fru) accumulation during LTS and likely reflected the metabolic energy required to catabolize starch to Suc, Glc and Fru. The relative ratio of Fru/Glc was also demonstrative of LTS-resistance, discriminating genotypes that accumulated Suc versus RS under LTS conditions. Changes in carbohydrates, invertase, respiration rates and RARs in response to temperature over the wound healing, LTS and reconditioning phases of storage characterized the LTS phenotypes unique to each cultivar, and revealed different mechanisms of resistance to LTS.
机译:马铃薯品种Premier Russet,GemStar Russet,Defender和Russet Burbank在抗低温甜味性(LTS)和相关新陈代谢方面有很大差异。 “ Gemstar Russet”和“ Premier Russet”分别具有中等和较高的电阻,而“ Defender”在9摄氏度的存储过程中逐渐失去加工质量,类似于“ Russet Burbank”,在4摄氏度的温度下几乎没有耐LTS的能力。这些伤口对LTS耐药性或敏感性的不同机制通过伤口愈合期间(9°C),LTS(4)的蔗糖(Suc),果糖(Fru)和葡萄糖(Glc)浓度相对于块茎呼吸状况的变化来表明摄氏度)和翻新(16摄氏度)。在4摄氏度时,“ Preser Russet”块茎保持低水平的Suc和还原糖(RS,Glc + Fru),而“ GemStar Russet”块茎积累的Suc几乎不转化为RS。 “防御者”和“鲁塞特·伯班克”块茎在LTS期间积累了RS,但只有中等水平的Suc。 RS含量的变化反映了酸性转化酶及其内源性抑制剂的联合活性。响应于从9摄氏度立即下降到4摄氏度,块茎呼吸降至最低,然后在接下来的约5天内增加到新的最大值,然后在4摄氏度降至恒定的基础速率。 “ GemStar Russet”和“ Defender”在冷驯化期间从最小速率到最大呼吸速率(呼吸适应性反应,RAR)分别为80%,“ Russet Burbank”为51%和“ Premier Russet”为26%。 RAR与LTS期间的总糖(Suc + Glc + Fru)积累相关,并且可能反映了将淀粉分解代谢为Suc,Glc和Fru所需的代谢能。 Fru / Glc的相对比率也证明了LTS耐药性,区分了在LTS条件下积累Suc与RS的基因型。在伤口愈合,LTS和贮藏恢复阶段,温度变化引起的碳水化合物,转化酶,呼吸速率和RAR的变化表征了每个品种独特的LTS表型,并揭示了不同的抗LTS机制。

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