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栽培大麦和野生大麦5H染色体对小麦-大麦染色体附加系抽穗性状的差异效应。

Differential effects of cultivated and wild barley 5H chromosomes on heading characters in wheat-barley chromosome addition lines.

作者信息

Kawahara Tomoko, Taketa Shin, Murai Koji

机构信息

Department of Bioscience, Fukui Prefectural University, 4-1-1 Kenjojima, Matsuoka-cho, Yoshida-gun, Fukui 910-1195, Japan.

出版信息

Hereditas. 2002;136(3):195-200. doi: 10.1034/j.1601-5223.2002.1360303.x.

Abstract

Wheat (Triticum aestivum L.)-barley (Hordeum vulgare L.) chromosome addition lines are possible vehicles for transferring barley genes into wheat. The barley 5H chromosome has genetic effects on the heading characters in wheat-barley addition lines: accelerating narrow-sense earliness, decreasing vernalization requirement and/or increasing photoperiodic sensitivity. To elucidate the effects of different 5H chromosomes under an identical wheat genetic background, two wheat-barley addition lines, i.e. cultivated barley 'New Golden' 5H chromosome added to 'Shinchunaga' wheat (Shi-NG5H) and wild barley H. vulgare ssp. spontaneum 5H chromosome added to 'Shinchunaga' wheat (Shi-Spn5H), were examined for their heading characters. The addition line Shi-NG5H showed a significantly lower vernalization requirement in comparison with 'Shinchunaga' wheat, whereas Shi-Spn5H did not. Furthermore, both NG5H and Spn5H chromosomes shortened narrow-sense earliness and increased photoperiodic sensitivity in wheat, but the effects of Spn5H were weaker than those of NG5H. The fact that NG5H and Spn5H showed differential effects on heading characters in wheat demonstrated that the heading characters were altered by the function of the barley genes located on 5H chromosomes, not merely by the aneuploid effect alone.

摘要

小麦(Triticum aestivum L.)-大麦(Hordeum vulgare L.)染色体附加系是将大麦基因导入小麦的可能载体。大麦5H染色体对小麦-大麦附加系的抽穗性状具有遗传效应:加速狭义早熟性、降低春化需求和/或增加光周期敏感性。为了阐明在相同小麦遗传背景下不同5H染色体的效应,研究了两个小麦-大麦附加系,即将栽培大麦‘New Golden’的5H染色体添加到‘Shinchunaga’小麦中得到的(Shi-NG5H),以及将野生大麦H. vulgare ssp. spontaneum的5H染色体添加到‘Shinchunaga’小麦中得到的(Shi-Spn5H)的抽穗性状。与‘Shinchunaga’小麦相比,附加系Shi-NG5H的春化需求显著降低,而Shi-Spn5H则没有。此外,NG5H和Spn5H染色体均缩短了小麦的狭义早熟性并增加了光周期敏感性,但Spn5H的效应比NG5H弱。NG5H和Spn5H对小麦抽穗性状表现出不同效应这一事实表明,抽穗性状是由位于5H染色体上的大麦基因的功能改变的,而不仅仅是由非整倍体效应单独引起的。

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