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Mannans and endo-beta-mannanases (MAN) in Brachypodium distachyon: expression profiling and possible role of the BdMAN genes during coleorhiza-limited seed germination

机译:短枝曲霉中的甘露聚糖和内切β-甘露聚糖酶(MAN):鞘翅目限制种子萌发期间BdMAN基因的表达谱和可能作用

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摘要

Immunolocalization of mannans in the seeds of Brachypodium distachyon reveals the presence of these polysaccharides in the root embryo and in the coleorhiza in the early stages of germination (12h), decreasing thereafter to the point of being hardly detected at 27h. Concurrently, the activity of endo-β-mannanases (MANs; EC 3.2.1.78) that catalyse the hydrolysis of β-1,4 bonds in mannan polymers, increases as germination progresses. The MAN gene family is represented by six members in the Brachypodium genome, and their expression has been explored in different organs and especially in germinating seeds. Transcripts of BdMAN2, BdMAN4 and BdMAN6 accumulate in embryos, with a maximum at 24–30h, and are detected in the coleorhiza and in the root by in situ hybridization analyses, before root protrusion (germination sensu stricto). BdMAN4 is not only present in the embryo root and coleorhiza, but is abundant in the de-embryonated (endosperm) imbibed seeds, while BdMAN2 and BdMAN6 are faintly expressed in endosperm during post-germination (36–42h). BdMAN4 and BdMAN6 transcripts are detected in the aleurone layer. These data indicate that BdMAN2, BdMAN4 and BdMAN6 are important for germination sensu stricto and that BdMAN4 and BdMAN6 may also influence reserve mobilization. Whether the coleorhiza in monocots and the micropylar endosperm in eudicots have similar functions, is discussed.
机译:甘蓝型芽孢杆菌种子中甘露聚糖的免疫定位表明,在萌发的早期阶段(12h),这些多糖存在于根胚和油菜中,此后降低到27h几乎检测不到。同时,随着发芽的进行,内切β-甘露聚糖酶(MANs; EC 3.2.1.78)催化甘露聚糖聚合物中β-1,4键水解的活性增加。 MAN基因家族由短芽孢杆菌基因组中的六个成员代表,并且已经在不同器官,尤其是发芽种子中探索了它们的表达。 BdMAN2,BdMAN4和BdMAN6的转录本在胚中积累,最大积累时间为24-30h,并且在根部伸出之前通过原位杂交分析在鞘翅目和根中检测到。 BdMAN4不仅存在于胚根和鞘翅目中,而且在去胚(胚乳)吸收的种子中丰富,而BdMAN2和BdMAN6在发芽后的胚乳中微弱表达(36-42h)。在糊粉层中检测到BdMAN4和BdMAN6转录本。这些数据表明BdMAN2,BdMAN4和BdMAN6对严格发芽至关重要,并且BdMAN4和BdMAN6也可能影响储备动员。讨论了单子叶植物的鞘翅目和双子叶植物的毛孔胚乳是否具有相似的功能。

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