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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。

Basal transcription factor 3 plays an important role in seed germination and seedling growth of rice.

作者信息

Wang Wenyi, Xu Mengyun, Wang Ya, Jamil Muhammad

机构信息

Institute of Crop Science, College of Agriculture and Biotechnology, Zhejiang University, Yu-Hang-Tang Road 388, Hangzhou 310058, China.

Institute of Crop Science, College of Agriculture and Biotechnology, Zhejiang University, Yu-Hang-Tang Road 388, Hangzhou 310058, China ; Department of Biotechnology and Genetic Engineering, Kohat University of Science and Technology, Kohat 26000, Pakistan.

出版信息

Biomed Res Int. 2014;2014:465739. doi: 10.1155/2014/465739. Epub 2014 May 29.

Abstract

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 in Oryza sativa L. subspecies, japonica, which resembles with the conserved domain of a nascent polypeptide associated complex (NAC) with different homologs of OsBTF3 and human BTF3. Inhibition of Osj10gBTF3 has 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 (Osj10gBTF3 (Ri)) transgenic lines. Seedling inhibition was more severe in the Osj10gBTF3 (Ri) seedlings compared with their WT especially when treated with 100 or 200 μM GA3; 50% reduction in shoots was observed in Osj10gBTF3 (Ri) seedlings. The expression of Osj3g1BTF3, Osj3g2BTF3 and Osj10gBTF3 was primarily constitutive and generally modulated by NaCl, ABA, and GA3 stresses in both Osj10gBTF3 (Ri) lines and WT at the early seedling stage, suggesting that Osj3g1BTF3 and Osj10gBTF3 are much similar but different from Osj3g2BTF3 in 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.

摘要

BTF3已被认为参与植物的生长和发育。但其在种子萌发和幼苗期的功能大多仍不清楚。在此,我们分析了水稻粳稻亚种中与OsBTF3相关的序列,其与新生多肽相关复合体(NAC)的保守结构域相似,具有不同的OsBTF3同源物和人类BTF3。抑制Osj10gBTF3导致种子萌发和幼苗生长过程中出现显著的形态变化。发芽率不受GA3、ABA和NaCl处理的影响,但所有浓度都使野生型(WT)种子比RNA干扰(Osj10gBTF3(Ri))转基因系发芽更快。与野生型相比,Osj10gBTF3(Ri)幼苗的幼苗抑制更严重,尤其是用100或200μM GA3处理时;在Osj10gBTF3(Ri)幼苗中观察到地上部分减少了50%。在幼苗早期,Osj3g1BTF3、Osj3g2BTF3和Osj10gBTF3的表达主要是组成型的,并且在Osj10gBTF3(Ri)系和野生型中普遍受到NaCl、ABA和GA3胁迫的调节,这表明Osj3g1BTF3和Osj10gBTF3在生物学功能上非常相似,但与Osj3g2BTF3不同。这些结果表明,OsBTF3在种子萌发和幼苗生长中起重要作用,这为证明植物中BTF3具有更多多方面的调节功能提供了新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e503/4058115/0ed3ce7109e5/BMRI2014-465739.001.jpg

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