首页> 外文OA文献 >Comparaison moléculaire des graines orthodoxes de Medicago truncatula et récalcitrantes de Castanospermum australe : une nouvelle approche pour comprendre l’acquisition de la tolérance à la dessiccation
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Comparaison moléculaire des graines orthodoxes de Medicago truncatula et récalcitrantes de Castanospermum australe : une nouvelle approche pour comprendre l’acquisition de la tolérance à la dessiccation

机译:苜蓿(medicago truncatula)正统种子与栲树(Castanospermum australe)顽抗的分子比较:一种理解干燥耐受性获取的新方法

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摘要

Desiccation tolerance (DT) is defined as the ability to survive in the dry state and resume metabolic activity upon imbibition. Unlike orthodox seeds, that acquire DT during their maturation, recalcitrant seeds do not survive desiccation. A comparative analysis of orthodox and recalcitrant seeds development constitutes an interesting model to highlight mechanisms that are involved in DT. Using proteomic and transcriptomic analyses, the development of the recalcitrant Castanospermum australe seeds was characterized and compared to development of orthodox Medicago truncatula seeds, species from the same sub-family of Fabaceae. Our results show that most LEA (Late Embryogenesis Abundant) proteins are absent or faintly accumulated in mature seeds of C. australe compared to M. truncatula. The LEA protein profile is similar to seeds of the Mtabi3 mutant that is deficient in the expression of the major regulator of orthodox seed maturation ABI3 (ABscissic acid Insensitive 3). Transcriptome analysis reveals a strong repression of CaABI3 and its putative targets at the end of C. australe seed development while the transcript levels of these target genes remain high until the end of maturation of M. truncatula seeds. Two genes coding for ABI3 were cloned in C. australe: CaABI3 and CaABI3-like. Ectopic expression in M. truncatula roots demonstrated that only CaABI3-like is able to activate the same targets as MtABI3. Moreover, CaABI3 does not complement the abi3-5 mutant of Arabidopsis thaliana. This analysis strengthens the implication of ABI3 in the desiccation sensitivity of recalcitrant seeds. In addition, mature C. australe seeds display certain characteristics of a seed that is preparing for germination and express many stress response genes.
机译:脱水耐受性(DT)定义为在干燥状态下存活并在吸收后恢复代谢活性的能力。与在成熟过程中获取DT的正统种子不同,顽强型种子无法在干燥过程中存活。对正统种子和顽calc种子发展的比较分析构成了一个有趣的模型,以突出显示与DT相关的机制。使用蛋白质组学和转录组学分析,表征了顽固的锥栗无芒us种子的发育,并将其与原地为豆科的亚科正统紫花苜蓿种子的发育进行了比较。我们的研究结果表明,与截短短吻梭菌相比,大多数LEA(晚期胚胎发生丰富)蛋白在C.australe的成熟种子中不存在或微弱积累。 LEA蛋白谱与Mtabi3突变体的种子相似,该突变体在正统种子成熟ABI3(脱落酸不敏感3)的主要调节子的表达中缺乏。转录组分析揭示了CaABI3及其推定的靶标在C.australe种子发育结束时受到了强烈的抑制,而这些靶标基因的转录水平一直很高,直到t藜种子成熟为止。两种编码ABI3的基因被克隆到C. australe中:CaABI3和CaABI3-like。截形支原体根中的异位表达表明,只有CaABI3样才能激活与MtABI3相同的靶标。此外,CaABI3不补充拟南芥的abi3-5突变体。该分析加强了ABI3对顽calc型种子脱水敏感性的影响。另外,成熟的C. australe种子显示出正在准备发芽的种子的某些特征,并表达了许多胁迫反应基因。

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    J. Delahaie; J. Buitink;

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  • 年度 2013
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