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利用 Rht 基因簇进行杂交小麦育种。

Exploiting the Rht portfolio for hybrid wheat breeding.

机构信息

State Plant Breeding Institute, University of Hohenheim, 70593, Stuttgart, Germany.

Department of Breeding Research, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben, Corrensstraße 3, 06466, Stadt Seeland, Germany.

出版信息

Theor Appl Genet. 2018 Jul;131(7):1433-1442. doi: 10.1007/s00122-018-3088-4. Epub 2018 Mar 19.

Abstract

The portfolio of available Reduced height loci (Rht-B1, Rht-D1, and Rht24) can be exploited for hybrid wheat breeding to achieve the desired heights in the female and male parents, as well as in the hybrids, without adverse effects on other traits relevant for hybrid seed production. Plant height is an important trait in wheat line breeding, but is of even greater importance in hybrid wheat breeding. Here, the height of the female and male parental lines must be controlled and adjusted relative to each other to maximize hybrid seed production. In addition, the height of the resulting hybrids must be fine-tuned to meet the specific requirements of the farmers in the target regions. Moreover, this must be achieved without adversely impacting traits relevant for hybrid seed production. In this study, we explored Reduced height (Rht) loci effective in elite wheat and exploited their utilization for hybrid wheat breeding. We performed association mapping in a panel of 1705 wheat hybrids and their 225 parental lines, which besides the Rht-B1 and Rht-D1 loci revealed Rht24 as a major QTL for plant height. Furthermore, we found that the Rht-1 loci also reduce anther extrusion and thus cross-pollination ability, whereas Rht24 appeared to have no adverse effect on this trait. Our results suggest different haplotypes of the three Rht loci to be used in the female or male pool of a hybrid breeding program, but also show that in general, plant height is a quantitative trait controlled by numerous small-effect QTL. Consequently, marker-assisted selection for the major Rht loci must be complemented by phenotypic selection to achieve the desired height in the female and male parents as well as in the wheat hybrids.

摘要

可用的矮秆基因座(Rht-B1、Rht-D1 和 Rht24)组合可用于杂交小麦育种,以实现母本和父本以及杂种中所需的高度,而不会对与杂交种子生产相关的其他性状产生不利影响。株高是小麦品系选育的重要性状,但在杂交小麦选育中更为重要。在这里,母本和父本品系的高度必须相互控制和调整,以最大限度地提高杂交种子的产量。此外,所得杂种的高度必须进行微调,以满足目标地区农民的具体要求。此外,这必须在不影响与杂交种子生产相关的性状的情况下实现。在这项研究中,我们探索了在优质小麦中有效的矮秆(Rht)基因座,并利用它们进行杂交小麦的选育。我们在一个由 1705 个小麦杂种及其 225 个亲本组成的小组中进行了关联作图,结果除了 Rht-B1 和 Rht-D1 基因座外,还揭示了 Rht24 是株高的主要 QTL。此外,我们发现 Rht-1 基因座也降低了花粉囊的伸出,从而降低了异花授粉能力,而 Rht24 似乎对该性状没有不利影响。我们的研究结果表明,三个 Rht 基因座的不同单倍型可用于杂交育种计划的母本或父本群体,但也表明,一般来说,株高是由许多微效 QTL 控制的数量性状。因此,主要 Rht 基因座的标记辅助选择必须与表型选择相结合,以实现母本和父本以及小麦杂种所需的高度。

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