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Assessment of Dormancy and Sprouting Behavior of CIP Elite and Advanced Clones Under Different Storage Conditions in Uzbekistan

机译:不同储存条件下乌兹别克斯坦CIP优良和先进克隆的休眠和发芽行为评估

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In potato breeding and selection, storability should be regarded as equally important as yield, disease resistance, and quality. A study documenting the dormancy period, sprouting behavior, and weight loss of 17 International Potato Center potato elite and advanced clones was carried out in Tashkent, Uzbekistan, under cellar and cold store conditions, during 2008 and 2009. Ninety tubers of each of 17 clones were allocated to experimental units of 30 tubers each placed in trays and randomized in three replications following a random complete block design. Therefore, there were three replications of 30 seed tubers each per entry. The dormancy period ranged from 77 to 115 days and from 100 to 186 days under cellar and cold storage, respectively. There was a relatively high positive correlation (0.69) for dormancy period between storage systems, indicating that clones demonstrating longer and shorter dormancy periods under one system will also behave similarly under the other system. A negative correlation (−0.53 and −0.88) was found between dormancy period and length of the longest sprout in cellar and cold store, respectively, meaning that clones with shorter dormancy often showed a greater length of their longest sprout. The weight loss percentage per tuber was similar in both storage systems, from 5.0% to 8.0% in the cellar and from 5.0% to 9.8% in the cold store, although for different storage periods (an average of 110 and 166 days under cellar and cold storage conditions, respectively). The study indicated that under cellar conditions, clones with a longer dormancy period and slower rate of sprout growth have less weight loss during storage and therefore better keeping quality.
机译:在马铃薯的育种和选择中,应将其与产量,抗病性和品质同等重要。在2008年和2009年期间,在地窖和冷藏的条件下,在乌兹别克斯坦的塔什干进行了一项研究,记录了17个国际马铃薯中心马铃薯优良和高级克隆的休眠期,发芽行为和失重。这17个克隆中的每一个都有90个块茎将其分配给30个块茎的实验单位,每个块茎置于托盘中,并按照随机完整块设计随机分为三份。因此,每个条目有3个重复的30个种子块茎。在地窖和冷藏库中,休眠期分别为77至115天和100至186天。存储系统之间的休眠期存在相对较高的正相关性(0.69),这表明一个系统下表现出较长和较短休眠期的克隆在另一系统下的表现也相似。休眠期与地窖和冷库中最长芽的长度之间分别呈负相关(-0.53和-0.88),这意味着休眠时间较短的克隆通常显示最长芽的长度更长。在两个存储系统中,每个块茎的失重百分比相似,在地窖中从5.0%到8.0%,在冷藏库中从5.0%到9.8%,尽管不同的存储期(在地窖中平均110天和166天)冷藏条件)。研究表明,在地窖条件下,休眠期较长且芽生长速度较慢的克隆在存储过程中失重较少,因此保藏质量更好。

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