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高粒蛋白含量基因Gpc-B1加速衰老,并对小麦的蛋白质含量具有多效性影响。

The high grain protein content gene Gpc-B1 accelerates senescence and has pleiotropic effects on protein content in wheat.

作者信息

Uauy Cristobal, Brevis Juan Carlos, Dubcovsky Jorge

机构信息

Department of Plant Sciences, University of California, Davis, 95616, USA.

出版信息

J Exp Bot. 2006;57(11):2785-94. doi: 10.1093/jxb/erl047. Epub 2006 Jul 10.

Abstract

High grain protein content (GPC) is a frequent target of wheat breeding programmes because of its positive effect on bread and pasta quality. A wild wheat allele at the Gpc-B1 locus with a significant impact on this trait was identified previously. The precise mapping of several senescence-related traits in a set of tetraploid recombinant substitution lines (RSLs) segregating for Gpc-B1 is reported here. Flag leaf chlorophyll degradation, change in peduncle colour, and spike water content were completely linked to the Gpc-B1 locus and to the differences in GPC within a 0.3 cM interval corresponding to a physical distance of only 250 kb. The effect of Gpc-B1 was also examined in different environments and genetic backgrounds using a set of tetraploid and hexaploid pairs of isogenic lines. The results were consistent with those observed in the RSLs. The high GPC allele conferred a shorter duration of grain fill due to earlier flag leaf senescence and increased GPC in all four genetic backgrounds. The effect on grain size was more variable, depending on the genotype-environment combinations. These results are consistent with a model in which the wild-type allele of Gpc-B1 accelerates senescence in flag leaves producing pleiotropic effects on nitrogen remobilization, total GPC, and grain size.

摘要

由于高籽粒蛋白质含量(GPC)对面包和意大利面品质有积极影响,因此它是小麦育种计划中经常关注的目标。先前已鉴定出Gpc - B1位点上的一个野生小麦等位基因,该等位基因对这一性状有显著影响。本文报道了在一组为Gpc - B1分离的四倍体重组代换系(RSL)中,对几个衰老相关性状的精确定位。旗叶叶绿素降解、穗轴颜色变化和穗含水量与Gpc - B1位点完全连锁,并且与在仅250 kb物理距离的0.3 cM区间内的GPC差异相关。还使用一组四倍体和六倍体同基因系对,在不同环境和遗传背景下研究了Gpc - B1的效应。结果与在RSL中观察到的结果一致。高GPC等位基因由于旗叶衰老提前,导致灌浆持续时间缩短,并且在所有四种遗传背景下GPC均增加。对籽粒大小的影响更具变异性,这取决于基因型 - 环境组合。这些结果与一个模型一致,即Gpc - B1的野生型等位基因加速旗叶衰老,对氮素再分配、总GPC和籽粒大小产生多效性影响。

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