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Suppression of extracellular invertase inhibitor gene expression improves seed weight in soybean (Glycine max)

机译:抑制细胞外转化酶抑制剂基因表达可提高大豆的种子重量(Glycine max)

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摘要

Cell wall invertase (CWI) and vacuolar invertase (VI) play multiple functions in plant growth. As well as depending on transcriptional and post-transcriptional regulation, there is growing evidence that CWI and VI are also subject to post-translational control by small inhibitory proteins. Despite the significance of this, genes encoding inhibitors, their molecular and biochemical properties, and their potential roles in regulating seed production have not been well documented in soybean (Glycine max). In this study, two invertase inhibitor isoforms, GmCIF1 and GmC/VIF2, were characterized to possess inhibitory activities in vitro via heterologous expression. Transcript analyses showed that they were predominantly expressed in developing seeds and in response to ABA. In accordance with this, surveys of primary targets showed subcellular localizations to the apoplast in tobacco epidermis after expressing YFP-fusion constructs. Investigations using RNAi transgenic plants demonstrated marked elevations of CWI activities and improvements in seed weight in conjunction with higher accumulations of hexoses, starch, and protein in mature seeds. Further co-expression analyses of GmCIF1 with several putative CWI genes corroborated the notion that GmCIF1 modulation of CWI that affects seed weight is mainly contingent on post-translational mechanisms. Overall, the results suggest that post-translational elevation of CWI by silencing of GmCIF1 expression orchestrates the process of seed maturation through fine-tuning sucrose metabolism and sink strength.
机译:细胞壁转化酶(CWI)和液泡转化酶(VI)在植物生长中发挥多种功能。除依赖转录和转录后调控外,越来越多的证据表明CWI和VI也受到小抑制蛋白的翻译后控制。尽管有这种重要性,但大豆中尚未充分记录编码抑制剂的基因,其分子和生化特性以及它们在调节种子生产中的潜在作用。在这项研究中,两个转化酶抑制剂同工型,GmCIF1和GmC / VIF2,通过异源表达在体外具有抑制活性。转录本分析表明,它们主要在发育中的种子中表达并响应ABA。据此,对主要靶标的调查显示,在表达YFP融合构建体后,烟草表皮中亚细胞定位于质外体。使用RNAi转基因植物的研究表明,成熟种子中CWI活性显着升高,种子重量有所改善,而己糖,淀粉和蛋白质的积累更高。 GmCIF1与几个推定的CWI基因的进一步共表达分析证实了这样的观念,即影响种子重量的CWI的GmCIF1调节主要取决于翻译后机制。总体而言,这些结果表明,通过沉默GmCIF1表达,CWI的翻译后升高可通过微调蔗糖代谢和吸收强度来协调种子成熟的过程。

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