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在百脉根中,根部淀粉储备对于修剪后旺盛的再生是必要的。

Root starch reserves are necessary for vigorous re-growth following cutting back in Lotus japonicus.

作者信息

Vriet Cécile, Smith Alison M, Wang Trevor L

机构信息

Department of Metabolic Biology, John Innes Centre, Norwich, Norfolk, United Kingdom.

出版信息

PLoS One. 2014 Jan 31;9(1):e87333. doi: 10.1371/journal.pone.0087333. eCollection 2014.

Abstract

Perenniality and vegetative re-growth vigour represent key agronomic traits in forage legume (Fabaceae) species. The known determinants of perenniality include the conservation of the vegetative meristem during and after the flowering phase, and the separation of flowering from senescence. The ability of the plants to store nutrient resources in perennial organs and remobilize them may also play an important role in the perennial growth habit, and in determining the capacity of the plant to re-grow following grazing or from one season to the next. To examine the importance of stored starch, we examined the vegetative re-growth vigour following cutting back of a unique collection of Lotus japonicus mutants impaired in their ability to synthesize or degrade starch. Our results establish that starch stored in the roots is important for re-growth vigour in Lotus japonicus. We extended this analysis to a collection of Lotus (trefoil) species and two ecotypes of Lotus japonicus displaying a large variation in their carbohydrate resource allocation. There was a positive correlation between root starch content and re-growth vigour in these natural variants, and a good general correlation between high re-growth vigour and the perennial life-form. We discuss the relationship between perenniality and the availability of root carbohydrates for re-growth.

摘要

多年生特性和营养体再生活力是豆科牧草物种的关键农艺性状。已知的多年生特性决定因素包括开花期及开花后营养分生组织的保留,以及开花与衰老的分离。植物在多年生器官中储存营养资源并重新调动它们的能力,在多年生生长习性以及决定植物在放牧后或从一个季节到下一个季节的再生能力方面也可能发挥重要作用。为了研究储存淀粉的重要性,我们研究了一批在合成或降解淀粉能力上受损的日本百脉根突变体在修剪后的营养体再生活力。我们的结果表明,根中储存的淀粉对日本百脉根的再生活力很重要。我们将此分析扩展到一批百脉根(三叶草)物种以及两种日本百脉根生态型,它们在碳水化合物资源分配上表现出很大差异。在这些天然变体中,根淀粉含量与再生活力之间存在正相关,高再生活力与多年生生活型之间也存在良好的总体相关性。我们讨论了多年生特性与用于再生的根碳水化合物可用性之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df76/3909078/6f6da0eab66d/pone.0087333.g001.jpg

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