首页> 美国卫生研究院文献>Frontiers in Plant Science >Fructan synthesis accumulation and polymer traits. II. Fructan pools in populations of perennial ryegrass (Lolium perenne L.) with variation for water-soluble carbohydrate and candidate genes were not correlated with biosynthetic activity and demonstrated constraints to polymer chain extension
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Fructan synthesis accumulation and polymer traits. II. Fructan pools in populations of perennial ryegrass (Lolium perenne L.) with variation for water-soluble carbohydrate and candidate genes were not correlated with biosynthetic activity and demonstrated constraints to polymer chain extension

机译:果胶的合成积累和聚合物特性。二。多年生黑麦草(黑麦草)种群中的果聚糖池中水溶性碳水化合物和候选基因的变异均与生物合成活性无关并显示出对聚合物链延伸的限制

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摘要

Differences have been shown between ryegrass and fescue within the Festulolium subline introgression family for fructan synthesis, metabolism, and polymer-size traits. It is well-established that there is considerable variation for water-soluble carbohydrate and fructan content within perennial ryegrass. However there is much still to be discovered about the fructan polymer pool in this species, especially in regard to its composition and regulation. It is postulated that similar considerable variation for polymer traits may exist, providing useful polymers for biorefining applications. Seasonal effects on fructan content together with fructan synthesis and polymer-size traits have been examined in diverse perennial ryegrass material comprising contrasting plants from a perennial ryegrass F2 mapping family and from populations produced by three rounds of phenotypic selection. Relationships with copy number variation in candidate genes have been investigated. There was little evidence of any variation in fructan metabolism across this diverse germplasm under these conditions that resulted in substantial differences in the complement of fructan polymers present in leaf tissue at high water-soluble carbohydrate concentrations. The importance of fructan synthesis during fructan accumulation was unclear as fructan content and polymer characteristics in intact plants during the growing season did not reflect the capacity for de novo synthesis. However, the retention of fructan in environmental conditions favoring high sink/low source demand may be an important component of the high sugar trait and the roles of breakdown and turnover are discussed.
机译:在Festulolium亚系渗入家族中,黑麦草和羊茅在果聚糖合成,代谢和聚合物大小性状方面存在差异。众所周知,多年生黑麦草中水溶性碳水化合物和果聚糖的含量存在很大差异。然而,关于果聚糖中的果聚糖聚合物库仍有很多发现,特别是在其组成和调节方面。据推测,聚合物特性可能存在相似的相当大的变化,从而为生物精制应用提供了有用的聚合物。已经在各种多年生黑麦草材料中研究了对果聚糖含量的季节性影响,以及果聚糖的合成和聚合物大小性状,这些材料包括来自多年生黑麦草F2作图家族和三轮表型选择产生的种群的对比植物。已经研究了与候选基因中拷贝数变异的关系。在这些条件下,几乎没有证据表明在这种多样的种质中果聚糖代谢有任何变化,导致高水溶性碳水化合物浓度下叶组织中存在的果聚糖聚合物的补体存在实质性差异。由于果聚糖含量和完整生长过程中完整植物中的聚合物特性未反映出从头合成的能力,果聚糖积累期间果聚糖合成的重要性尚不清楚。然而,果聚糖在有利于高水槽/低水源需求的环境条件下的保留可能是高糖性状的重要组成部分,并讨论了分解和周转的作用。

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