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大豆紫蓝色花朵的遗传与连锁分析。

Genetic and linkage analysis of purple-blue flower in soybean.

作者信息

Takahashi Ryoji, Matsumura Hisakazu, Oyoo Maurice E, Khan Nisar A

机构信息

National Institute of Crop Science, 2-1-18 Kannondai, Tsukuba, Ibaraki, 305-8518 Japan.

出版信息

J Hered. 2008 Nov-Dec;99(6):593-7. doi: 10.1093/jhered/esn041. Epub 2008 May 22.

Abstract

Flower color of soybean is primarily controlled by genes W1, W3, W4, Wm, and Wp. In addition, the soybean gene symbol W2, w2 produces purple-blue flower in combination with W1. This study was conducted to determine the genetic control of purple-blue flower of cultivar (cv). Nezumisaya. F(1) plants derived from a cross between Nezumisaya and purple flower cv. Harosoy had purple flowers. Segregation of the F(2) plants fitted a ratio of 3 purple:1 purple-blue. F(3) lines derived from F(2) plants with purple-blue flowers were fixed for purple-blue flowers, whereas those from F(2) plants with purple flowers fitted a ratio of 1 fixed for purple flower:2 segregating for flower color. These results indicated that the flower color of Nezumisaya is controlled by a single gene whose recessive allele is responsible for purple-blue flower. Complementation analysis revealed that flower color of Nezumisaya is controlled by W2. Linkage mapping revealed that W2 is located in molecular linkage group B2. Sap obtained from banner petals of cvs. with purple flower had a pH value of 5.73-5.77, whereas that of cvs. with purple-blue flower had a value of 6.07-6.10. Our results suggested that W2 is responsible for vacuolar acidification of flower petals.

摘要

大豆花色主要由基因W1、W3、W4、Wm和Wp控制。此外,大豆基因符号W2、w2与W1组合时会产生紫蓝色花朵。本研究旨在确定品种“鼠早生”紫蓝色花的遗传控制。“鼠早生”与紫色花品种“哈罗索伊”杂交产生的F1植株开紫色花。F2植株的分离符合3株紫色:1株紫蓝色的比例。来自F2紫蓝色花植株的F3株系紫蓝色花性状稳定,而来自F2紫色花植株的F3株系符合1株紫色花性状稳定:2株花色分离的比例。这些结果表明,“鼠早生”的花色由单个基因控制,其隐性等位基因导致紫蓝色花。互补分析表明,“鼠早生”的花色由W2控制。连锁图谱分析表明,W2位于分子连锁群B2上。紫色花品种旗瓣获得的汁液pH值为5.73 - 5.77,而紫蓝色花品种的汁液pH值为6.07 - 6.10。我们的结果表明,W2负责花瓣的液泡酸化。

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