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Trichostatin A Affects Developmental Reprogramming of Bread Wheat Microspores towards an Embryogenic Route

机译:Trichostatin A影响面包小麦幼儿孢子朝向胚胎源性的发育重新编程

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摘要

Microspores can be developmentally reprogrammed by the application of different stress treatments to initiate an embryogenic pathway leading to the production of doubled haploid (DH) plants. Epigenetic modifications are involved in cell reprogramming and totipotency in response to stress. To increase microspore embryogenesis (ME) efficiency in bread wheat, the effect of the histone deacetylase inhibitor trichostatin A (TSA) has been examined in two cultivars of wheat with different microspore embryogenesis response. Diverse strategies were assayed using 0–0.4 µM TSA as a single induction treatment and after or simultaneously with cold or mannitol stresses. The highest efficiency was achieved when 0.4 µM TSA was applied to anthers for 5 days simultaneously with a 0.7 M mannitol treatment, producing a four times greater number of green DH plants than mannitol. Ultrastructural studies by transmission electron microscopy indicated that mannitol with TSA and mannitol treatments induced similar morphological changes in early stages of microspore reprogramming, although TSA increased the number of microspores with ’star-like’ morphology and symmetric divisions. The effect of TSA on the transcript level of four ME marker genes indicated that the early signaling pathways in ME, involving the TaTDP1 and TAA1b genes, may be mediated by changes in acetylation patterns of histones and/or other proteins.
机译:可以通过应用不同的应激处理来开始显影重新编程,以引发胚胎发生途径,导致加倍的单倍体(DH)植物的产生。表观遗传修饰参与了细胞重编程和彻底转移,以应对压力。为了增加面包小麦的微孔胚胎发生(ME)效率,在两种具有不同微孔胚胎发生反应的小麦中检测了组蛋白脱乙酰酶抑制剂richostatinα(TSA)的效果。使用0-0.4μmTSA作为单一感应治疗和冷或甘露醇胁迫同时进行各种策略。当用0.7M甘露醇处理同时将0.4μmTSA施用0.4μmtsa 5天时,达到最高效率,产生比甘露醇更多的绿色DH植物数量的四倍。透射电子显微镜的超微结构研究表明,甘露醇与TSA和甘露醇治疗诱导微孔重编程早期阶段相似的形态变化,尽管TSA增加了“星形”形态和对称分裂的微观孢子的数量。 TSA对四个ME标记基因的转录物水平的影响表明,涉及TATDP1和TAA1B基因的早期信号通路可以通过组蛋白和/或其他蛋白质的乙酰化模式的变化来介导。

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