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Phytochrome B and AGB1 Coordinately Regulate Photomorphogenesis by Antagonistically Modulating PIF3 Stability in Arabidopsis 被引量:7
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作者 Pengbo Xu Hongli Lian +6 位作者 Feng Xu Ting Zhang Sheng Wang Wenxiu Wang Shasha Du Jirong Huang Hong-Quan Yang 《Molecular Plant》 SCIE CAS CSCD 2019年第2期229-247,共19页
Phytochrome B (phyB), the primary red light photoreceptor, promotes photomorphogenesis in Arabidopsis by interacting with the basic helix-loop-helix transcriptional factor PIF3 and inducing its phosphorylation and deg... Phytochrome B (phyB), the primary red light photoreceptor, promotes photomorphogenesis in Arabidopsis by interacting with the basic helix-loop-helix transcriptional factor PIF3 and inducing its phosphorylation and degradation. Heterotrimeric G proteins are known to regulate various developmental processes in plants and animals. In Arabidopsis, the G-protein β subunit AGB1 is known to repress photomorphogenesis. However, whether and how phyB and AGB1 coordinately regulate photomorphogenesis are largely unknown. Here we show that phyB physically interacts with AGB1 in a red light-dependent manner and that AGB1 interacts directly with PIF3. Moreover, we demonstrate that the AGB1-PIF3 interaction inhibits the association of PIF3 with phyB, leading to reduced phosphorylation and degradation of PIF3, whereas the phyB-AGB1 interaction represses the association of PIF3 with AGB1, resulting in enhaneed phosphorylation and degradation of PIF3. Our results suggest that phyB and AGB1 antagonistically regulate PIF3 stability by dynamically interacting with each other and PIF3. This dynamic mechanism may allow plants to balanee phyB and G-protein signaling to optimize photomorphogenesis. 展开更多
关键词 ARABIDOPSIS PHYTOCHROME B heterotrimeric G-PROTEIN β sub unit AGB1 pif3 PHOTOMORPHOGENESIS protein STABILITY
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丹参中SmPIF3基因的克隆和表达分析
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作者 王宁 刘丽芬 +3 位作者 邹海燕 张磊 王幼平 张顺仓 《分子植物育种》 CAS CSCD 北大核心 2020年第23期7735-7741,共7页
为深入理解光信号通路关键转录因子基因PIF3在丹参中的生物学作用,本研究通过克隆获得SmPIF3基因的编码序列,并对其序列特征和表达特性进行分析。结果表明,该序列包含1个2085 bp的开放阅读框(ORF),编码695个氨基酸,蛋白定位于细胞核且... 为深入理解光信号通路关键转录因子基因PIF3在丹参中的生物学作用,本研究通过克隆获得SmPIF3基因的编码序列,并对其序列特征和表达特性进行分析。结果表明,该序列包含1个2085 bp的开放阅读框(ORF),编码695个氨基酸,蛋白定位于细胞核且具有碱性螺旋-环-螺旋(Basic Helix-Loop-Helix)结构域,是典型的bHLH类转录因子。SmPIF3基因在根、茎、叶和花中均有表达,且叶和花中表达量较高。高强度的白光可促进该基因的表达,而高强度的蓝光和红光则抑制其表达。 展开更多
关键词 丹参(Salvia miltiorrhiza) pif3 生物信息学分析 亚细胞定位 表达分析
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PIF3 Is Involved in the Primary Root Growth Inhibition of Arabidopsis Induced by Nitric Oxide in the Light 被引量:3
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作者 Sulan Bai Tao Yao +4 位作者 Miaomiao Li Xiaomin Guo Yaochuan Zhang Shengwei Zhu Yikun He 《Molecular Plant》 SCIE CAS CSCD 2014年第4期616-625,共10页
PHYTOCHROME INTERACTING FACTOR3 (PIF3) is an important component in the phytochrome signaling pathway and mediates plant responses to various environmental conditions. We found that PIF3 is involved in the inhibitio... PHYTOCHROME INTERACTING FACTOR3 (PIF3) is an important component in the phytochrome signaling pathway and mediates plant responses to various environmental conditions. We found that PIF3 is involved in the inhibition of root growth of Arabidopsis thaliana seedlings induced by nitric oxide (NO) in light. Overexpression of PIF3 partially alleviated the inhibitory effect of NO on root growth, whereas the pif3-1 mutant displayed enhanced sensitivity to NO in terms of root growth. During phytochrome signaling, the photoreceptor PHYB mediates the degradation of PIF3. We found that the phyB-9 mutant had a similar phenotype to that of PIF3ox in terms of responsiveness to NO. Furthermore, NO treatment promoted the accumulation of PHYB, and thus reduced PIF3 content. Our results further show that the activity of PIF3 is regulated by the DELLA protein RGL3[RGA (repressor of gal-3) LIKE 3]. Therefore, we speculate that PIF3 lies downstream of PHYB and RGL3, and plays an important role in the inhibitory effect of NO on root growth of Arabidopsis seedlings in light. 展开更多
关键词 nitric oxide pif3 PHYB RGL3 root growth inhibition.
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大豆phyA下游基因预测和表达分析及敲除载体构建 被引量:1
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作者 张婷 马丽欣 +2 位作者 刘俊 林晓雅 刘宝辉 《大豆科学》 CAS CSCD 北大核心 2021年第3期309-318,共10页
为了进一步研究大豆光周期调控通路中E3和E4的下游基因,为获得其突变体植株奠定基础,以拟南芥远红光响应受体phyA下游的重要信号传递因子PIF3、LAF1、FHY1和FHL的序列作为参考序列,在Phytozome 12数据库中查找其相似序列,进行序列比对... 为了进一步研究大豆光周期调控通路中E3和E4的下游基因,为获得其突变体植株奠定基础,以拟南芥远红光响应受体phyA下游的重要信号传递因子PIF3、LAF1、FHY1和FHL的序列作为参考序列,在Phytozome 12数据库中查找其相似序列,进行序列比对和进化树分析,确定它们在大豆中的同源基因并采用qRT-PCR方法进行组织表达分析,使用CRISPR/Cas 9系统设计同源基因的敲除靶点并通过发根系统验证靶点的有效性。结果显示:AtPIF3在大豆中有6个同源基因,AtLAF1在大豆中有4个同源基因,AtFHL在大豆中有2个同源基因,而AtFHY1在大豆中没有同源基因。4个LAF1基因主要在顶端生长点表达,6个PIF3和2个FHL基因主要在荚中表达。共鉴定出12个有效靶点,能够分别将大豆中6个PIF3、4个LAF1和2个FHL基因成功敲除。研究结果为进一步获得稳定的大豆突变体材料和大豆phyA下游基因的功能研究提供了理论基础。 展开更多
关键词 大豆 pif3 LAF1 FHL 组织表达分析 CRISPR/Cas9 基因敲除载体
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Green light mediates atypical photomorphogenesis by dual modulation of Arabidopsis phytochromes B and A
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作者 Miqi Xu Yi‐Yuan Wang +9 位作者 Yujie Wu Xiuhong Zhou Ziyan Shan Kunying Tao Kaiqiang Qian Xuncheng Wang Jian Li Qingqing Wu Xing Wang Deng Jun‐Jie Ling 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2024年第9期1915-1933,共19页
Although green light(GL)is located in the middle of the visible light spectrum and regulates a series of plant developmental processes,the mechanism by which it regulates seedling development is largely unknown.In thi... Although green light(GL)is located in the middle of the visible light spectrum and regulates a series of plant developmental processes,the mechanism by which it regulates seedling development is largely unknown.In this study,we demonstrated that GL promotes atypical photomorphogenesis in Arabidopsis thaliana via the dual regulations of phytochrome B(phyB)and phyA.Although the Pr-to-Pfr conversion rates of phyB and phyA under GL were lower than those under red light(RL)in a fluence rate-dependent and time-dependent manner,long-term treatment with GL induced high Pfr/Pr ratios of phyB and phyA.Moreover,GL induced the formation of numerous small phyB photobodies in the nucleus,resulting in atypical photomorphogenesis,with smaller cotyledon opening angles and longer hypocotyls in seedlings compared to RL.The abundance of phyA significantly decreased after short-and long-term GL treatments.We determined that four major PHYTOCHROME-INTERACTING FACTORs(PIFs:PIF1,PIF3,PIF4,and PIF5)act downstream of phyB in GL-mediated cotyledon opening.In addition,GL plays opposite roles in regulating different PIFs.For example,under continuous GL,the protein levels of all PIFs decreased,whereas the transcript levels of PIF4 and PIF5 strongly increased compared with dark treatment.Taken together,our work provides a detailed molecular framework for understanding the role of the antagonistic regulations of phyB and phyA in GL-mediated atypical photomorphogenesis. 展开更多
关键词 cotyledon development green light photobody PHYTOCHROME pif3
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纳米氧化镧对植物暗形态建成的影响
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作者 郭梦蕾 陈琦 +5 位作者 代汶昊 马昱 徐梅任 卢博辽 朱云龙 王丽红 《中国稀土学报》 EI CAS CSCD 北大核心 2023年第5期986-996,I0004,共12页
稀土纳米颗粒(NPs)因能够改善植物生理代谢、促进种子萌发和生长发育及增加产量等有望被应用于农业,但其对植物影响的机制仍不清楚。需在土壤中萌发的植物要经历一段在黑暗中发育的暗形态建成过程,该阶段对于植物后续生长至关重要,但稀... 稀土纳米颗粒(NPs)因能够改善植物生理代谢、促进种子萌发和生长发育及增加产量等有望被应用于农业,但其对植物影响的机制仍不清楚。需在土壤中萌发的植物要经历一段在黑暗中发育的暗形态建成过程,该阶段对于植物后续生长至关重要,但稀土NPs对植物此过程的影响鲜见报道。本文以模式植物拟南芥和纳米氧化镧颗粒(La_(2)O_(3)NPs)分别为植物和稀土NPs的代表,探究不同剂量稀土NPs对植物暗形态建成的影响及机制。结果发现,5, 10, 20和40 mg·L^(-1) La_(2)O_(3)NPs增大拟南芥下胚轴长度、顶端弯钩弯曲角度和原叶绿素酸酯含量,即La_(2)O_(3)NPs促进拟南芥暗形态建成,且在20 mg·L^(-1)时促进作用最大。高效液相色谱和气相色谱结果显示,La_(2)O_(3)NPs处理增加拟南芥赤霉素(GA)、生长素(IAA)和细胞分裂素(ZT)含量及GA/脱落酸(ABA), IAA/ABA, ZT/ABA, GA/乙烯(ETH), IAA/ETH, ZT/ETH,降低ABA和ETH含量,同样20 mg·L^(-1) La_(2)O_(3)NPs处理对拟南芥内源激素影响程度最大。相关性分析表明,La_(2)O_(3)NPs通过增加GA, IAA和ZT含量及GA/ABA, IAA/ABA, ZT/ABA, GA/ETH, IAA/ETH, ZT/ETH,抑制ABA和ETH含量,进而促进拟南芥暗形态建成。为进一步探究La_(2)O_(3)NPs促进暗形态建成的原因,采用实时荧光定量PCR和蛋白质免疫印迹方法测定组成型光形态建成蛋白1 (COP1)和光敏色素互作因子3 (PIF3)的基因相对表达量和蛋白水平,发现La_(2)O_(3)NPs处理增加拟南芥COP1和PIF3基因相对表达量和蛋白水平,推测COP1和PIF3可能参与了La_(2)O_(3)NPs通过内源激素对暗形态建成的调控。本研究可为阐明NPs作用于植物的机制和发展纳米农业提供理论依据。 展开更多
关键词 La_(2)O_(3)NPs 暗形态建成 内源激素 COP1 pif3
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低剂量镧对植物暗形态建成的影响 被引量:2
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作者 刘腊梅 王象 +3 位作者 赫鼎 盛兰娣 黄晓华 王丽红 《中国稀土学报》 EI CAS CSCD 北大核心 2022年第1期144-152,I0005,共10页
稀土元素(Rare earth elements,REEs)因其低剂量能够促进植物种子萌发、营养生长、生殖生长和产量形成而被应用于农业。暗形态建成作为种子萌发后所经历的第一个发育阶段,是保证植物出土后正常生长的必要条件。然而,REEs对暗形态建成的... 稀土元素(Rare earth elements,REEs)因其低剂量能够促进植物种子萌发、营养生长、生殖生长和产量形成而被应用于农业。暗形态建成作为种子萌发后所经历的第一个发育阶段,是保证植物出土后正常生长的必要条件。然而,REEs对暗形态建成的影响鲜见报道。本文分别以农业常用镧(La(Ⅲ))和模式植物拟南芥为REEs和植物代表,通过测定La(Ⅲ)处理后野生型拟南芥(Col-0)暗形态指标,得出低剂量(15,30,45和55μmol·L-1)La(Ⅲ)影响Col-0暗形态建成,表现为下胚轴长度缩短、顶端弯钩弯曲角度增大和原叶绿素酸酯含量降低,且La(Ⅲ)浓度越高,下胚轴长度越短,顶端弯钩弯曲角度增幅先增后降,原叶绿素酸酯含量降幅增加至平稳。实时荧光定量PCR和蛋白印记结果显示,15,30,45和55μmol·L^(-1)La(Ⅲ)处理增加暗下生长Col-0光敏色素相互作用因子3(PIF3)转录水平和蛋白水平。La(Ⅲ)作用于PIF3突变体后,其下胚轴长度、原叶绿素酸酯含量均高于同浓度La(Ⅲ)处理的Col-0相应含量,顶端弯钩弯曲角度低于同浓度La(Ⅲ)处理的Col-0的弯曲角度。通过对比Col-0和PIF3突变体的暗形态指标,得出La(Ⅲ)通过增强拟南芥PIF3转录水平和PIF3蛋白水平而影响其暗形态建成。 展开更多
关键词 稀土元素 pif3 暗形态建成
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Diurnal Dependence of Growth Responses to Shade in Arabidopsis: Role of Hormone, Clock, and Light Signaling 被引量:1
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作者 Romina Sellaro Manuel Pacin Jorge J. Casal 《Molecular Plant》 SCIE CAS CSCD 2012年第3期619-628,共10页
We investigated the diurnal dependence of the hypocotyl-growth responses to shade under sunlight-night cycles in Arabidopsis thaliana. Afternoon shade events promoted hypocotyl growth, while morning shade was ineffect... We investigated the diurnal dependence of the hypocotyl-growth responses to shade under sunlight-night cycles in Arabidopsis thaliana. Afternoon shade events promoted hypocotyl growth, while morning shade was ineffective. The Ihy-D, elf3, lux, pif4 pifS, tocl, and quadruple della mutants retained the response to afternoon shade and the lack of response to morning shade while the Ihyccal mutant responded to both morning and afternoon shade. ThephyB mutant, plants overexpressing the multidrug resistance-like membrane protein ABCB19, and the iaa17/axr3 loss-of-function mutant failed to respond to shade. Transient exposure of sunlight-grown seedlings to synthetic auxin in the afternoon caused a stronger promotion of hypocotyl growth than morning treatments. The promotion of hypocotyl growth by afternoon shade or afternoon auxin required light perceived by phytochrome A or cryptochromes during the previous hours of the photoperiod. Although the ELF4-ELF3-LUX complex, PIF4, PIF5, and DELLA are key players in the generation of diurnal hypocotyl-growth patterns, they exert a minor role in the control of the diurnal pattern of growth responses to shade. We conclude that the strong diurnal dependency of hypocotyl-growth responses to shade relates to the balance between the antagonistic actions of LHY-CCA1 and a light-derived signal. 展开更多
关键词 shade avoidance hypocotyl growth DIURNAL AUXIN LHY CCA1 pif3 PIF4 PIF5 ELF3 LUX DELLA circadian clock
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