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| 1 | Arabidopsis WRKY Transcription Factors WRKY12 and WRKY13 Oppositely Regulate Flowering under Short-Day Conditions显示文摘在植物,光周期是为决定 flowering 的重要暗示。在 Arabidopsis thaliana 的花的转变是更早的在下面长天(LD ) 比在下面短天(SD ) 条件。在 SD 条件下面的 Arabidopsis 植物的 Flowering 被植物荷尔蒙赤霉素(GA ) 主要调整。这里,我们报导二个 WRKY 抄写因素在在 SD 条件下面控制 flowering 时间相对地工作。Phenotypic 分析证明 WRKY12 的那混乱在 flowering 引起了延期,当 WRKY13 功能的损失支持了 flowering 时。WRKY12 和 WRKY13 连续地显示了否定地相关的表示侧面和功能调整 flowering。分子、基因的分析证明 FRUITFULL (FUL ) 是 WRKY12 和 WRKY13 的直接下游的目标基因。有趣地,我们发现那 DELLA 蛋白质赤霉素感觉迟钝(GAI ) 并且 RGA-LIKE1 (RGL1 ) 与 WRKY12 和 WRKY13 交往了,并且他们的相互作用防碍 WRKY12 和 WRKY13 的 transcriptional 活动。进一步的研究建议 thatWRKY12 和 WRKY13 部分调停了控制 flowering 时间上的 GA 3 的效果。一起拿,我们的结果显示 WRKY12 和 WRKY13 相对地在 SD 条件下面调制 flowering 时间,它部分至少包含 GA 的行动。 | Wei Li Houping Wang Diqiu Yu | 2016 | Molecular Plant2016,9,11: | 33 |
| 2 | The bHLH Transcription Factors MYC2, MYC3, and MYC4 Are Required for Jasmonate-Mediated Inhibition of Flowering in Arabidopsis显示文摘 | Houping Wang Yang Li Jinjing Pan Dengji Lou Yanru Hu Diqiu Yu | 2017 | Molecular Plant2017,10,11: | 19 |
| 3 | Arabidopsis VQ10 interacts with WRKY8 to modulate basal defense against Botrytis cinerea显示文摘Recent studies in Arabidopsis have revealed that some VQ motif-containing proteins physically interact with WRKY transcription factors;however,their specific biological functions are still poorly understood.In this study,we confirmed the interaction between VQ10and WRKY8,and show that VQ10 and WRKY8 formed a complex in the plant cell nucleus.Yeast two-hybrid analysis showed that the middle region of WRKY8 and the VQ motif of VQ10 are critical for their interaction,and that this interaction promotes the DNA-binding activity of WRKY8.Further investigation revealed that the VQ10protein was exclusively localized in the nucleus,and VQ10was predominantly expressed in siliques.VQ10 expression was strongly responsive to the necrotrophic fungal pathogen,Botrytis cinerea and defense-related hormones.Phenotypic analysis showed that disruption of VQ10 increased mutant plants susceptibility to the fungal pathogen B.cinerea,whereas constitutive-expression of VQ10 enhanced resistance to B.cinerea.Consistent with these findings,expression of the defenserelated PLANT DEFENSIN1.2(PDF1.2)gene was decreased in vq10 mutant plants,after B.cinerea infection,but increased in VQ10-overexpressing transgenic plants.Taken together,our findings provide evidence that VQ10 physically interacts with WRKY8 and positively regulates plant basal resistance against the necrotrophic fungal pathogen B.cinerea. | Junqiu Chen Houping Wang Yang Li Jinjing Pan Yanru Hu Diqiu Yu | 2018 | Journal of Integrative Plant Biology2018,60,10: | 8 |
| 4 | WRKY transcription factors WRKY12 and WRKY13 interact with SPL10 to modulate age-mediated flowering显示文摘WRKY12 and WRKY13 are two WRKY transcription factors that play important roles in the control of flowering time under short-day(SD)conditions.The temporally regulated expression of WRKY12 and WRKY13 indicates that they may be involved in the age-mediated flowering pathway.However,their roles in this pathway are poorly understood.Here,we show that the transcription of WRKY12 and WRKY13 is directly regulated by SQUAMOSA PROMOTER BINDING-LIKE 10(SPLio),a transcription factor downstream of the age pathway.Binding and activation analyses revealed that SPL10 functions as a positive regulator of WRKY12 and a negative regulator of WRKY13.Further mechanistic investigation revealed that WRKY12 and WRKY13 physically interact with SPL10 and that both of them bind to the promoter of miRiy2b.Thus,the WRKY12-SPL10 and WRKY13-SPL10 interactions facilitate and inhibit SPL10 transcriptional function,respectively,to regulate miRiy2b expression.Together,our results show that WRKY12 and WRKY13 participate in the control of age-mediated flowering under SD conditions though physically interacting with SPLs and co-regulating the target gene miRi72b. | Zhenbing Ma Wei Li Houping Wang Diqiu Yu | 2020 | Journal of Integrative Plant Biology2020,62,11: | 8 |
| 5 | Thermal properties and micromorphology of polyurethane rsins basided on liquefied benzylated wood 显示文摘 | Yu Ping Wei Fa Cheng Houping Li | 2005 | Journal of science & industrial research2005,64,: | 1 |
| 6 | Characteristics of Photosynthetic Fluorescence of Dominant Submerged Plants in Nanjishan Wetland of Poyang Lake in Winter显示文摘Based on the investigation of the species and frequency of submerged plants in Nanjishan Wetland of Poyang Lake in the winter of 2013,chlorophyll contents and photosynthetic fluorescence characteristics of the dominant submerged plants were studied using chlorophyll fluorescence imaging method. The results indicate that the major submerged plants of Nanjishan Wetland in Poyang Lake in winter included Hydrilla verticillata,Vallisneria natans,Najas minor,Potamogeton pectinatus,Nymphoides peltatum,Myriophyllum verticillatum and so on,and the dominant species were mainly H. verticillata and V. natans in different submerged plant communities. The chlorophyll content of H. verticillata is higher than that of V.natans,and the photosynthesis intensity of H. verticillata is stronger than that of V. natans. The value of Ca / Cb of H. verticillata is not large,which shows that the light-harvesting capacity of H. verticillata's chlorophyll is considerable in different sampling sites. The highest value of QY-max of V.natans is up to 0. 732,while the lowest value is only 0. 465; the highest value of QY-max of H. verticillata is 0. 677,while the lowest value is 0. 556.All values of QY-max of the submerged plants were lower than 0. 8,which shows that the submerged plants in Nanjishan Wetland of Poyang Lake may be subjected to certain external stress,which indicates that the external stress might cause some damage for the PSII reaction centers. | Jian Minfei Yu Houping Wang Sichen Peng Wanling | 2015 | Meteorological and Environmental Research2015,6,2: | 1 |
| 7 | A rabidopsis transcription factor WRKY 8 functions antagonistically with its interacting partner VQ 9 to modulate salinity stress tolerance显示文摘 | Yanru Hu Ligang Chen Houping Wang Liping Zhang Fang Wang Diqiu Yu | 2013 | Plant J2013,,5: | 1 |