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GA-Responsive Dwarfing Gene Rht12 Affects the Developmental and Agronomic Traits in Common Bread Wheat

机译:GA响应矮化基因Rht12影响普通面包小麦的发育和农艺性状

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摘要

Opportunities exist for replacing reduced height (Rht) genes Rht-B1b and Rht-D1b with alternative dwarfing genes, such as the gibberellin-responsive gene Rht12, for bread wheat improvement. However, a comprehensive understanding of the effects and mode of action of Rht12 is lacking. In the present study, the effects of Rht12 were characterized by analyzing its effects on seeding vigour, seedling roots, leaf and stem morphology, spike development and carbohydrate assimilation and distribution. This was carried out in the four genotypes of F2:3 lines derived from a cross between Ningchun45 and Karcagi (12) in two experiments of autumn sowing and spring sowing. Rht12 significantly decreased stem length (43%∼48% for peduncle) and leaf length (25%∼30% for flag leaf) while the thickness of the internode walls and width of the leaves were increased. Though the final plant stature was shortened (40%) by Rht12, the seedling vigour, especially coleoptile length and root traits at the seedling stage, were not affected adversely. Rht12 elongated the duration of the spike development phase, improved the proportion of spike dry weight at anthesis and significantly increased floret fertility (14%) in the autumn sowing experiment. However, Rht12 delayed anthesis date by around 5 days and even the dominant Vrn-B1 allele could not compensate this negative effect. Additionally, grain size was reduced with the ability to support spike development after anthesis decreased in Rht12 lines. Finally, grain yield was similar between the dwarf and tall lines in the autumn sowing experiment. Thus, Rht12 could substantially reduce plant height without altering seeding vigour and significantly increase spikelet fertility in the favourable autumn sowing environment. The successful utilization of Rht12 in breeding programs will require careful selection since it might delay ear emergence. Nonetheless, the potential exists for wheat improvement by using Rht12.
机译:存在用替代的矮化基因(如赤霉素反应性基因Rht12)替代高度降低(Rht)基因Rht-B1b和Rht-D1b的机会,以改良面包小麦。然而,缺乏对Rht12的作用和作用方式的全面理解。在本研究中,通过分析Rht12对种子活力,幼苗根系,叶和茎形态,穗发育以及碳水化合物同化和分布的影响来表征其作用。这是在秋播和春播两个实验中,从宁春45与Karcagi(12)杂交得到的F2:3系的四个基因型中进行的。 Rht12显着降低茎长(花序梗为43%〜48%)和叶长(旗叶为25%〜30%),而节间壁的厚度和叶宽增加。尽管Rht12可以使最终植物的身材缩短(40%),但对幼苗的活力,尤其是胚芽鞘长度和幼苗期的根部性状没有造成不利影响。 Rht12延长了花穗发育阶段的持续时间,提高了花期花穗干重的比例,并在秋季播种实验中显着提高了小花的育性(14%)。但是,Rht12将花期推迟了约5天,甚至占优势的Vrn-B1等位基因也无法弥补这种负面影响。此外,Rht12系中花药减少后,晶粒尺寸减小,并具有支持穗形成的能力。最终,在秋季播种实验中,矮矮型和高矮型之间的谷物产量相似。因此,Rht12可以在不改变播种力的情况下大幅降低株高,并在有利的秋季播种环境中显着提高小穗的肥力。 Rht12在育种程序中的成功利用将需要仔细选择,因为它可能会延迟耳朵出苗。但是,通过使用Rht12可以改善小麦的潜力。

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