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多年生黑麦草(Lolium perenne L.)中一个主要抽穗期QTL与水稻Hd3抽穗期基因座之间的共线性。

Synteny between a major heading-date QTL in perennial ryegrass (Lolium perenne L.) and the Hd3 heading-date locus in rice.

作者信息

Armstead I P, Turner L B, Farrell M, Skøt L, Gomez P, Montoya T, Donnison I S, King I P, Humphreys M O

机构信息

Plant Genetics and Breeding Department., Institute of Grassland and Environmental Research, SY23 3 EB, Aberystwyth, Ceredigion, UK.

出版信息

Theor Appl Genet. 2004 Mar;108(5):822-8. doi: 10.1007/s00122-003-1495-6. Epub 2003 Nov 21.

Abstract

The genetic control of induction to flowering has been studied extensively in both model and crop species because of its fundamental biological and economic significance. An ultimate aim of many of these studies has been the application of the understanding of control of flowering that can be gained from the study of model species, to the improvement of crop species. The present study identifies a region of genetic synteny between rice and Lolium perenne, which contains the Hd3 heading-date QTL in rice and a major QTL, accounting for up to 70% of the variance associated with heading date in L. perenne. The identification of synteny between rice and L. perenne in this region demonstrates the direct applicability of the rice genome to the understanding of biological processes in other species. Specifically, this syntenic relationship will greatly facilitate the genetic dissection of aspects of heading-date induction by enabling the magnitude of the genetic component of the heading-date QTL in L. perenne to be combined with the sequencing and annotation information from the rice genome.

摘要

由于其重要的生物学和经济意义,开花诱导的遗传控制在模式植物和作物物种中都得到了广泛研究。这些研究的一个最终目标是将从模式物种研究中获得的开花控制知识应用于作物品种的改良。本研究确定了水稻和多年生黑麦草之间的一个遗传同线性区域,该区域包含水稻中的Hd3抽穗期QTL和一个主要QTL,该QTL在多年生黑麦草中占与抽穗期相关变异的70%。该区域水稻和多年生黑麦草之间同线性的鉴定表明,水稻基因组可直接应用于理解其他物种的生物学过程。具体而言,这种同线性关系将极大地促进抽穗期诱导方面的遗传剖析,通过将多年生黑麦草中抽穗期QTL的遗传成分大小与水稻基因组的测序和注释信息相结合。

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