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首页> 外文期刊>Journal of Plant Biology >Over expression of the wheat BEL1-like gene TaqSH1 affects floral organ abscission in Arabidopsis thaliana.
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Over expression of the wheat BEL1-like gene TaqSH1 affects floral organ abscission in Arabidopsis thaliana.

机译:小麦BEL1样基因TaqSH1的过度表达影响拟南芥中花器官的脱落。

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摘要

Seed shattering is one of the major domestication traits of crops. In wheat, except for the Q gene whose mutation renders free threshing and changing of rachis fragility, not much is known about the molecular mechanism for this process. We report here the cloning and characterization of TaqSH1, the ortholog of the rice seed shattering gene qSH1. TaqSH1 encodes a BEL1-like protein that is conserved between monocots and eudicots. TaqSH1 was located on the homoeologous group 3, a potential new genetic locus for seed threshability in wheat. Over expression of TaqSH1 in Arabidopsis resulted in dwarfed plants. The inflorescences of transgenic plants were more compact with larger pedicel angles. Scanning Electron Microscopy (SEM) showed that the transgenic siliques had a narrower replum where the dehiscence zone was altered. In addition, abscission of petals was significantly delayed due to delayed abscission zone development. Real-time PCR assays showed that over expression of TaqSH1 down regulated known Arabidopsis abscission related genes IDA, HAESA, KNAT1/6 and SHP1/2 in the transgenic plants. Taken together, our data suggest that TaqSH1 may represent another example of conserved mechanisms across monocots and eudicots for fruit/grain abscission and should have potential application in genetic manipulation of wheat seed shattering.
机译:种子破碎是农作物的主要驯化性状之一。在小麦中,除了Q基因的突变使得其自由脱粒和Rachis脆性的改变外,对该过程的分子机理了解甚少。我们在这里报告了水稻种子粉碎基因qSH1的直系同源基因TaqSH1的克隆和鉴定。 TaqSH1编码单子叶植物和双子叶植物之间保守的BEL1样蛋白。 TaqSH1位于同源组3,这是小麦种子脱粒的潜在新遗传位点。 TaqSH1在拟南芥中的过度表达导致植物矮化。转基因植物的花序更紧凑,花梗角度更大。扫描电子显微镜(SEM)表明,转基因的角果树群的裂口较窄,裂开区发生了改变。此外,由于脱落区的延迟发育,花瓣的脱落也明显延迟。实时PCR分析显示,TaqSH1的过表达下调了转基因植物中已知的拟南芥脱落相关基因IDA,HAESA,KNAT1 / 6和SHP1 / 2。综上所述,我们的数据表明TaqSH1可能代表了单子叶植物和双子叶植物对果实/籽粒脱落的保守机制的另一个例子,应该在小麦种子破碎的遗传操作中具有潜在的应用。

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