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SHOOTMERISTEMLESS 过表达增强 Brassica 细胞体外胚胎发生能力伴随着核苷酸代谢的明显波动。

Distinct fluctuations in nucleotide metabolism accompany the enhanced in vitro embryogenic capacity of Brassica cells over-expressing SHOOTMERISTEMLESS.

机构信息

Department of Botany, Faculty of Science, Tanta University, Tanta, 31527, Egypt.

出版信息

Planta. 2011 Dec;234(6):1251-65. doi: 10.1007/s00425-011-1482-0. Epub 2011 Jul 20.

Abstract

Besides regulating meristem formation and maintenance in vivo, SHOOTMERISTEMLESS (STM) has been shown to affect embryogenesis. While the over-expression of Brassica napus (Bn)STM enhances the number of microspore-derived embryos produced in culture and their ability to regenerate viable plants, a down-regulation of this gene represses the embryogenic process (Elhiti et al., J Exp Bot, 61:4069-4085, 2010). Synthesis and degradation of pyrimidine and purine nucleotides were measured in developing microspore-derived embryos (MDEs) generated from B. napus lines ectopically expressing or down-regulating BnSTM. Pyrimidine metabolism was investigated by following the metabolic fate of exogenously supplied (14)C-uridine, uracil and orotic acid, whereas purine metabolism was estimated by using (14)C-adenine, adenosine and inosine. The improvement in embryo number and quality affected by the ectopic expression of BnSTM was linked to the increased pyrimidine and purine salvage activity during the early phases of embryogenesis and the enlargement of the adenylate pool (ATP + ADP) required for the active growth of the embryos. This was due to an increase in transcriptional and enzymatic activity of several salvage enzymes, including adenine phosphoribosyltransferase (APRT) and adenosine kinase (ADK). The highly operative salvage pathway induced by the ectopic expression of BnSTM was associated with a slow catabolism of nucleotides, suggesting the presence of an antagonist mechanism controlling the rate of salvage and degradation pathways. During the second half of embryogenesis utilization of uridine for UTP + UDPglucose (UDPG) synthesis increased in the embryos over-expressing BnSTM, and this coincided with a better post-germination performance. All these events were precluded by the down-regulation of BnSTM which repressed the formation of the embryos and their post-embryonic performance. Overall, this work provides evidence that precise metabolic changes are associated with proper embryo development in culture.

摘要

除了调控体内分生组织的形成和维持,SHOOTMERISTEMLESS(STM)还被证明会影响胚胎发生。拟南芥(Bn)STM 的过表达增强了微孢子衍生胚胎在培养中产生的数量及其再生可育植物的能力,而该基因的下调则抑制了胚胎发生过程(Elhiti 等人,J Exp Bot,61:4069-4085,2010)。在油菜中,通过异位表达或下调 BnSTM 的油菜系产生的微孢子衍生胚胎(MDE)中测量嘧啶和嘌呤核苷酸的合成和降解。通过跟踪外源(14)C-尿嘧啶、尿嘧啶和乳清酸的代谢命运来研究嘧啶代谢,而嘌呤代谢则通过使用(14)C-腺嘌呤、腺苷和肌苷来估计。BnSTM 异位表达对胚胎数量和质量的改善与胚胎发生早期嘧啶和嘌呤回收活性的增加以及胚胎活跃生长所需的腺苷酸池(ATP+ADP)的扩大有关。这是由于几种回收酶,包括腺嘌呤磷酸核糖基转移酶(APRT)和腺苷激酶(ADK)的转录和酶活性增加所致。BnSTM 异位表达诱导的高效回收途径与核苷酸的缓慢分解代谢有关,表明存在一种拮抗机制来控制回收和降解途径的速率。在胚胎发生的后半段,在过表达 BnSTM 的胚胎中,尿嘧啶用于 UTP+UDPglucose(UDPG)合成的利用率增加,这与更好的发芽后性能相吻合。BnSTM 的下调阻止了胚胎的形成及其胚胎后的表现,所有这些事件都被排除在外。总的来说,这项工作提供了证据,表明精确的代谢变化与适当的胚胎在培养中的发育有关。

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