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首页> 外文期刊>Plant Cell Reports >Transcriptional regulation of early embryo development in the model legume Medicago truncatula.
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Transcriptional regulation of early embryo development in the model legume Medicago truncatula.

机译:在豆科植物紫花苜蓿模型中早期胚胎发育的转录调控。

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摘要

Cultivated legumes account for more than a quarter of primary crop production worldwide. The protein- and oil-rich seed of cultivated legumes provides around one-third of the protein in the average human diet, with soybeans (Glycine max (L.) Merr) being the single largest source of vegetable oil. Despite their critical importance to human and animal nutrition, we lack an understanding of how early seed development in legumes is orchestrated at the transcriptional level. We developed a method to isolate ovules from the model legume, Medicago truncatula Gaertn, at specific stages of embryogenesis, on the basis of flower and pod morphology. Using these isolated ovules we profiled the expression of candidate homeobox, AP2 domain and B3 domain-containing transcription factors. These genes were identified by available information and sequence homology, and five distinctive patterns of transcription were found that correlated with specific stages of early seed growth and development. Co-expression of some genes could be related to common regulatory sequences in the promoter or 3'-UTR regions. These expression patterns were also related to the expression of B3-domain transcription factors important in seed filling (MtFUS3-like and MtABI3-like). Localisation of gene expression by promoter-GUS fusions or in situ hybridisation aided understanding of the role of the transcription factors. This study provides a framework to enhance the understanding of the integrated transcriptional regulation of legume embryo growth and development and seed filling.
机译:种植的豆类占全球初级作物产量的四分之一以上。种植的豆科植物富含蛋白质和油的种子提供了人类平均饮食中约三分之一的蛋白质,其中大豆(Glycine max(L.)Merr)是植物油的最大单一来源。尽管它们对人类和动物营养至关重要,但我们对如何在转录水平上协调豆类的早期种子发育缺乏了解。我们开发了一种方法,根据花和豆荚的形态,在特定的胚胎发生阶段从豆科植物苜蓿苜蓿(Medicago truncatula Gaertn)分离胚珠。使用这些分离的胚珠,我们分析了候选同源盒,AP2域和含B3域的转录因子的表达。这些基因通过现有信息和序列同源性进行鉴定,并发现了五种独特的转录模式,与早期种子生长和发育的特定阶段相关。一些基因的共表达可能与启动子或3'-UTR区域中的共同调控序列有关。这些表达模式还与种子填充中重要的B3结构域转录因子(MtFUS3样和MtABI3样)的表达有关。通过启动子-GUS融合或原位杂交对基因表达进行定位,有助于理解转录因子的作用。这项研究提供了一个框架,可以增进对豆类胚胎生长发育和种子填充的整合转录调控的理解。

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