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Mode and Logic of Token Transaction Supervision
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作者 Shunyu Zhao 《Economics World》 2023年第1期31-35,共5页
This paper mainly studies the attitude and supervision mode of various countries towards digital tokens.The strength and methods of supervision in various countries are different.There are cross-border transaction tok... This paper mainly studies the attitude and supervision mode of various countries towards digital tokens.The strength and methods of supervision in various countries are different.There are cross-border transaction tokens and other chaotic situations.It is difficult to supervise and protect the interests of investors,which is not conducive to the healthy development of financial economy in various countries.In addition,with the development of globalization,digital tokens are going to the world and need to circulate among countries.Therefore,a recognized regulatory principle is needed to ensure the healthy development of digital finance worldwide.With the goal of single independent law,with the help of“regulatory sandbox”and“white list”,we explore regulatory principles. 展开更多
关键词 digital finance digital token regulatory model
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XAANTAL2 (AGL14) Is an Important Component of the Complex Gene Regulatory Network that Underlies Arabidopsis Shoot Apical Meristem Transitions 被引量:2
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作者 Rigoberto V. Perez-R.u.iz Berenice Garcia-Ponce +10 位作者 Nayelli Marsch-Martinez Yamel Ugartechea-Chirino Mitzi Villajuana-Bonequi Stefan de Folter Eugenio Azpeitia Jose Davila-Velderrain David Cruz-Sanchez Adriana Garay-Arroyo Maria de la Paz Sanchez Juan M. Estevez-Palmas Elena R. Alvarez-Buylla 《Molecular Plant》 SCIE CAS CSCD 2015年第5期796-813,共18页
In Arabidopsis thaliana, multiple genes involved in shoot apical meristem (SAM) transitions have been char- acterized, but the mechanisms required for the dynamic attainment of vegetative, inflorescence, and floral ... In Arabidopsis thaliana, multiple genes involved in shoot apical meristem (SAM) transitions have been char- acterized, but the mechanisms required for the dynamic attainment of vegetative, inflorescence, and floral meristem (VM, IM, FM) cell fates during SAM transitions are not well understood. Here we show that a MADS-box gene, XAANTAL2 (XAL2/AGL14), is necessary and sufficient to induce flowering, and its regula- tion is important in FM maintenance and determinacy, xal2 mutants are late flowering, particularly under short-day (SD) condition, while XAL2 overexpressing plants are early flowering, but their flowers have vege- tative traits. Interestingly, inflorescences of the latter plants have higher expression levels of LFY, AP1, and TFL1 than wild-type plants. In addition we found that XAL2 is able to bind the TFL1 regulatory regions. On the other hand, the basipetal carpels of the 35S::XAL2 lines lose determinacy and maintain high levels of WUS expression under SD condition. To provide a mechanistic explanation for the complex roles of XAL2 in SAM transitions and the apparently paradoxical phenotypes of XAL2 and other MADS-box (SOCl, AGL24) over- expressors, we conducted dynamic gene regulatory network (GRN) and epigenetic landscape modeling. We uncovered a GRN module that underlies VM, IM, and FM gene configurations and transition patterns in wild- type plants as well as loss and gain of function lines characterized here and previously. Our approach thus provides a novel mechanistic framework for understanding the complex basis of SAM development. 展开更多
关键词 XAL2/AGL14 MADS-BOX TFL1 SAM transitions floral reversion gene regulatory networks epigenetic landscape modeling
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Repressor elements provide insights into tissue development and phenotypes in pigs
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作者 Yue-Dong Zhang Chao Guo +9 位作者 Hang Liu Yun Gao Yongjun Tan Longjian Niu Ligang Wang Lixian Wang David MIrwin Chunhui Hou Zhong-Yin Zhou Ya-Ping Zhang 《Zoological Research》 SCIE 2024年第6期1313-1326,共14页
Repressor elements significantly influence economically relevant phenotypes in pigs;however,their precise roles and characteristics are inadequately understood.In the present study,we employed H3K27me3 profiling,assay... Repressor elements significantly influence economically relevant phenotypes in pigs;however,their precise roles and characteristics are inadequately understood.In the present study,we employed H3K27me3 profiling,assay for transposase-accessible chromatin with highthroughput sequencing(ATAC-seq),and RNA sequencing(RNA-seq)data across six tissues derived from three embryonic layers to identify and map 2034 super repressor elements(SREs) and 22223 typical repressor elements(TREs) in the pig genome.Notably,many repressor elements were conserved across mesodermal and ectodermal tissues.SREs exhibited tight regulation of their target genes,affecting a limited number of genes within a specific genomic region with pronounced effects,while TREs exerted broader but weaker regulation over a wider range of target genes.Furthermore,in neuronal tissues,genes regulated by repressor elements started to be repressed during the differentiation of stem cells into progenitor cells.Notably,analysis showed that many repressor elements exhibited cooperative and additive effects on the modulation of KLF4 expression.This research provides the first comprehensive map of pig repressor elements,serving as an essential reference for future studies on repressor elements. 展开更多
关键词 Repressor elements Super repressor elements Silencer regulatory model Tissue development KLF4 Pig
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