...
首页> 外文期刊>BMC Plant Biology >Phenotypic and transcriptomic characterization of a wheat tall mutant carrying an induced mutation in the C-terminal PFYRE motif of RHT-B1b
【24h】

Phenotypic and transcriptomic characterization of a wheat tall mutant carrying an induced mutation in the C-terminal PFYRE motif of RHT-B1b

机译:小麦矮个突变体的表型和转录组学表征,在RHT-B1b的C端PFYRE基序中带有诱导的突变

获取原文
           

摘要

As central regulators of the gibberellic acid (GA) signaling pathway in plants, DELLA proteins function as growth repressors and affect diverse biological processes. The wheat RHT-B1b and RHT-D1b semi-dwarfing alleles, which encode GA-insensitive DELLA proteins, have been widely adopted in modern wheat varieties to improve lodging tolerance and harvest index. However, the molecular mechanisms by which DELLA modulates these responses in wheat remain largely unknown. We identified a tall tetraploid wheat mutant line carrying an induced missense mutation (E529K) in the PFYRE motif of RHT-B1b that partially suppressed the semi-dwarf phenotype. The height-increasing effect of RHT-B1bE529K relative to RHT-B1b (19 cm or 21% increase) was significantly smaller than the effect of RHT-B1a (33 cm or 34% increase) relative to RHT-B1b in the same field experiment. The RHT-B1bE529K mutation was also associated with length increases in coleoptiles, seedling shoots, and stem internodes relative to the RHT-B1b allele. We detected no significant differences in germination rate, seedling root length, tiller number, flag leaf size, spike length, or yield components. Using RNA-seq, we compared gene expression profiles of plants encoding RHT-B1b and RHT-B1bE529K in coleoptile, first leaf, and elongating peduncles. We detected limited overlap among tissues of the genes differentially regulated by the two genotypes, and more genes upregulated (77%) than downregulated (23%) in RHT-B1bE529K relative to RHT-B1b. These results suggest that the wheat DELLA protein affects the transcriptome in a tissue-specific manner and that the mutation mainly eliminates or reduces repression functions of the RHT-B1 protein. Our study identified distinct sets of potential DELLA direct or indirect target genes involved in cell wall and carbohydrate metabolisms, cell cycle/division, and hormone pathways. We identified the hypomorphic RHT-B1bE529K allele that confers an intermediate plant height and coleoptile elongation. This allele can be useful in rain-fed wheat breeding programs where the strong reduction in height and biomass associated with RHT-B1b has detrimental effects. Transcriptomic characterization of different tissues from the plants encoding RHT-B1bE529K and RHT-B1b provided valuable information for identifying DELLA downstream GA response genes in wheat.
机译:作为植物赤霉素(GA)信号传导途径的中央调节剂,DELLA蛋白起着生长抑制因子的作用,并影响多种生物过程。编码GA不敏感的DELLA蛋白的小麦RHT-B1b和RHT-D1b半矮等位基因已被广泛用于现代小麦品种中,以提高抗倒伏性和收获指数。但是,DELLA调节小麦中这些响应的分子机制仍然未知。我们确定了一个高四倍体小麦突变体品系,在RHT-B1b的PFYRE基序中带有诱导的错义突变(E529K),该突变部分抑制了半矮型的表型。在同一野外实验中,RHT-B1bE529K相对于RHT-B1b的增高效果(增加19 cm或21%)明显小于RHT-B1a相对于RHT-B1b的增高效果(增加33 cm或34%) 。相对于RHT-B1b等位基因,RHT-B1bE529K突变还与胚芽鞘,幼苗芽和茎节间的长度增加有关。我们在发芽率,幼苗根长,分till数,旗叶大小,穗长或产量成分上均未发现显着差异。使用RNA序列,我们比较了胚芽鞘,初生叶和花序梗中编码RHT-B1b和RHT-B1bE529K的植物的基因表达谱。我们检测到两种基因型差异调节的基因组织之间的重叠有限,相对于RHT-B1b,RHT-B1bE529K中上调(77%)的基因比下调(23%)的基因多。这些结果表明小麦DELLA蛋白以组织特异性方式影响转录组,并且该突变主要消除或降低了RHT-B1蛋白的阻遏功能。我们的研究确定了涉及细胞壁和碳水化合物代谢,细胞周期/分裂和激素途径的潜在DELLA直接或间接靶基因的不同集合。我们确定了赋予植物中间高度和胚芽鞘伸长的亚型RHT-B1bE529K等位基因。该等位基因可用于雨育小麦育种计划,在该计划中,高度降低和与RHT-B1b相关的生物量具有有害作用。来自编码RHT-B1bE529K和RHT-B1b的植物的不同组织的转录组学表征为鉴定小麦中的DELLA下游GA反应基因提供了有价值的信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号