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Ectopic expression of Triticum aestivum SERK genes (TaSERKs) control plant growth and development in Arabidopsis

机译:普通小麦SERK基因(TaSERKs)的异位表达控制拟南芥中植物的生长和发育

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摘要

Somatic embryogenesis receptor kinases (SERKs) belong to a small gene family of receptor-like kinases involved in signal transduction. A total of 54 genes were shortlisted from the wheat genome survey sequence of which 5 were classified as SERKs and 49 were identified as SERK-like (SERLs). Tissue- specific expression of TaSERKs at major developmental stages of wheat corroborates their indispensable role during somatic and zygotic embryogenesis. TaSERK transcripts show inherent differences in their hormonal sensitivities, i.e. TaSERK2 and TaSERK3 elicits auxin- specific responses while TaSERK1, 4 and 5 were more specific towards BR-mediated regulation. The ectopic expression of TaSERK1, 2, 3, 4 and 5 in Arabidopsis led to enhanced plant height, larger silique size and increased seed yield. Zygotic embryogenesis specific genes showed a differential pattern in TaSERK Arabidopsis transgenics specifically in the silique tissues. Elongated hypocotyls and enhanced root growth were observed in the overexpression transgenic lines of all five TaSERKs. The inhibitory action of auxin and brassinosteroid in all the TaSERK transgenic lines indicates their role in regulating root development. The results obtained imply redundant functions of TaSERKs in maintaining plant growth and development.
机译:体细胞胚胎发生受体激酶(SERK)属于参与信号转导的受体样激酶的小基因家族。从小麦基因组调查序列中总共筛选了54个基因,其中5个被分类为SERK,49个被鉴定为SERK-like(SERL)。 TaSERKs在小麦主要发育阶段的组织特异性表达证实了它们在体细胞和合子胚发生过程中不可或缺的作用。 TaSERK转录本显示出其激素敏感性的内在差异,即TaSERK2和TaSERK3引发生长素特异性反应,而TaSERK1、4和5对BR介导的调节则更具特异性。 TaSERK1、2、3、4和5在拟南芥中的异位表达导致植物高度增加,更大的角果大小和增加的种子产量。合子胚发生特异性基因在角果组织的TaSERK拟南芥转基因中显示出不同的模式。在所有五种TaSERK的过表达转基因品系中均观察到了下胚轴伸长和根系生长增强。生长素和油菜素类固醇在所有 TaSERK 转基因株系中的抑制作用表明它们在调节根系发育中的作用。获得的结果暗示了 TaSERK 在维持植物生长发育中的冗余功能。

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