首页> 外文OA文献 >Comparative Analysis of the Heat Stable Proteome of Radicles of Medicago truncatula Seeds during Germination Identifies Late Embryogenesis Abundant Proteins Associated with Desiccation Tolerance1[W]
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Comparative Analysis of the Heat Stable Proteome of Radicles of Medicago truncatula Seeds during Germination Identifies Late Embryogenesis Abundant Proteins Associated with Desiccation Tolerance1[W]

机译:紫花苜蓿种子根部发芽过程中热稳定蛋白质组的比较分析确定了晚期胚发生过程中与耐干旱性相关的大量蛋白质[W]

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摘要

A proteomic analysis was performed on the heat stable protein fraction of imbibed radicles of Medicago truncatula seeds to investigate whether proteins can be identified that are specifically linked to desiccation tolerance (DT). Radicles were compared before and after emergence (2.8 mm long) in association with the loss of DT, and after reinduction of DT by an osmotic treatment. To separate proteins induced by the osmotic treatment from those linked with DT, the comparison was extended to 5 mm long emerged radicles for which DT could no longer be reinduced, albeit that drought tolerance was increased. The abundance of 15 polypeptides was linked with DT, out of which 11 were identified as late embryogenesis abundant proteins from different groups: MtEm6 (group 1), one isoform of DHN3 (dehydrins), MtPM25 (group 5), and three members of group 3 (MP2, an isoform of PM18, and all the isoforms of SBP65). In silico analysis revealed that their expression is likely seed specific, except for DHN3. Other isoforms of DNH3 and PM18 as well as three isoforms of the dehydrin Budcar5 were associated with drought tolerance. Changes in the abundance of MtEm6 and MtPM25 in imbibed cotyledons during the loss of DT and in developing embryos during the acquisition of DT confirmed the link of these two proteins with DT. Fourier transform infrared spectroscopy revealed that the recombinant MtPM25 and MtEm6 exhibited a certain degree of order in the hydrated state, but that they became more structured by adopting α helices and β sheets during drying. A model is presented in which DT-linked late embryogenesis abundant proteins might exert different protective functions at high and low hydration levels.
机译:对截叶苜蓿种子吸收的胚根的热稳定蛋白部分进行了蛋白质组学分析,以研究是否可以鉴定出与脱水耐性(DT)特异性相关的蛋白。比较了胚根出芽前后(2.8 mm长)与DT损失以及通过渗透治疗还原DT后的胚根。为了将通过渗透处理诱导的蛋白质与与DT相关的蛋白质分开,比较范围扩大到5毫米长的胚根,尽管不再增加DT的耐受性,但无法再还原DT。 DT与15种多肽的丰度相关,其中11种被鉴定为来自不同组的晚期胚胎发生丰富蛋白:MtEm6(第1组),DHN3的同工型(脱水素),MtPM25(第5组)和该组的三个成员3(MP2,PM18的同工型,以及SBP65的所有同工型)。在计算机分析中,它们的表达可能是种子特异性的,除了DHN3。 DNH3和PM18的其他同工型以及脱水蛋白Budcar5的三种同工型与干旱耐受性相关。 DT丢失期间,吸收的子叶中的MtEm6和MtPM25的丰度发生变化,而DT的获取期间发育中的胚胎中MtEm6和MtPM25的丰度变化证实了这两种蛋白质与DT的联系。傅里叶变换红外光谱表明,重组MtPM25和MtEm6在水合状态下显示出一定程度的有序性,但在干燥过程中通过采用α螺旋和β片而变得更加结构化。提出了一个模型,其中DT连接的晚期胚胎发生丰富的蛋白质可能在高和低水合水平下发挥不同的保护功能。

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