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Basal Transcription Factor 3 Plays an Important Role in Seed Germination and Seedling Growth of Rice

机译:基础转录因子3在水稻种子萌发和幼苗生长中起重要作用

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BTF3 has been recognized to be involved in plant growth and development. But its function remains mostly unknown during seed germination and seedling stage. Here, we have analyzed OsBTF3-related sequences inOryza sativaL. subspecies, japonica, which resembles with the conserved domain of a nascent polypeptide associated complex (NAC) with different homologs of OsBTF3 and human BTF3. Inhibition ofOsj10gBTF3has led to considerable morphological changes during seed germination and seedling growth. Germination percentage was not influenced by the application of GA3, ABA, and NaCl but all concentrations caused wild-type (WT) seeds to germinate more rapidly than the RNAi (Osj10gBTF3Ri) transgenic lines. Seedling inhibition was more severe in theOsj10gBTF3Riseedlings compared with their WT especially when treated with 100 or 200 μM GA3; 50% reduction in shoots was observed inOsj10gBTF3Riseedlings. The expression ofOsj3g1BTF3,Osj3g2BTF3andOsj10gBTF3was primarily constitutive and generally modulated by NaCl, ABA, and GA3stresses in bothOsj10gBTF3Rilines and WT at the early seedling stage, suggesting thatOsj3g1BTF3andOsj10gBTF3are much similar but different fromOsj3g2BTF3in biological function. These results show that OsBTF3 plays an important role in seed germination and seedling growth gives a new perception demonstrating that more multifaceted regulatory functions are linked with BTF3 in plants.
机译:BTF3被认为与植物生长和发育有关。但是其功能在种子萌发和幼苗阶段仍然未知。在这里,我们分析了水稻中与OsBTF3相关的序列。亚种,粳稻,类似于新生多肽相关复合物(NAC)的保守结构域,具有与OsBTF3和人BTF3不同的同源性。 Osj10gBTF3的抑制作用导致种子萌发和幼苗生长过程中形态发生重大变化。萌发百分率不受GA3,ABA和NaCl施用的影响,但所有浓度均导致野生型(WT)种子的发芽比RNAi(Osj10gBTF3Ri)转基因株系更快。与野生型相比,Osj10gBTF3幼苗的抑制作用更为严重,尤其是用100或200μMGA3处理时。在Osj10gBTF3幼苗中观察到芽减少了50%。 Osj3g1BTF3,Osj3g2BTF3和Osj10gBTF3的表达主要是组成型的,并且在幼苗早期在Osj10gBTF3Rilines和WT中均受NaCl,ABA和GA3胁迫的调节,这表明Osj3g1BTF3和Osj10gB3的生物学功能大不相同。这些结果表明,OsBTF3在种子发芽中起着重要作用,幼苗生长给人以新的认识,表明植物中更多的多方面调节功能与BTF3相关。

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