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基于FRFT的多普勒频率跟踪算法 被引量:1
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作者 李静芳 丛蔓 侯永飞 《无线电通信技术》 2020年第1期121-125,共5页
高动态环境下卫星通信终端面临高动态和低信噪比问题,传统载波跟踪方法难以在高动态应力和跟踪精度两方面取得较好折中,在信号设计中考虑插入分散导频用于跟踪载波,可在低信噪比下实现高机动用户多普勒频移捕获及多普勒频率变化率的跟... 高动态环境下卫星通信终端面临高动态和低信噪比问题,传统载波跟踪方法难以在高动态应力和跟踪精度两方面取得较好折中,在信号设计中考虑插入分散导频用于跟踪载波,可在低信噪比下实现高机动用户多普勒频移捕获及多普勒频率变化率的跟踪。给出了一种基于FRFT的频率变化率估计方法,利用估计值辅助载波跟踪环路。理论分析与计算机仿真表明,在典型高动态参数条件下,基于分散导频的多普勒频率跟踪算法和传统载波跟踪方法相比,灵敏度提高2 dB以上,Es/N0工作点可低至0 dB以下,跟踪范围可达符号速率的2倍,频率跟踪的均方根误差小于符号速率的1%,性能损失小于0.1 dB。 展开更多
关键词 分散导频 载波跟踪 FRFT 锁频锁相环
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Arogenate Dehydratase Isoforms Differentially Regulate Anthocyanin Biosynthesis in Arabidopsis thaliana 被引量:13
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作者 Qingbo Chen cong man +3 位作者 Danning Li Huijuan Tan Ye Xie Jirong Huang 《Molecular Plant》 SCIE CAS CSCD 2016年第12期1609-1619,共11页
Anthocyanins, a group of L-phenylalanine (Phe)-derived flavonoids, have been demonstrated to play impor- tant roles in plant stress resistance and interactions between plants and insects. Although the anthocyanin bi... Anthocyanins, a group of L-phenylalanine (Phe)-derived flavonoids, have been demonstrated to play impor- tant roles in plant stress resistance and interactions between plants and insects. Although the anthocyanin biosynthetic pathway and its regulatory mechanisms have been extensively studied, it remains unclear whether the level of Phe supply affects anthocyanin biosynthesis. Here, we investigated the roles of arogenate dehydratases (ADTs), the key enzymes that catalyze the conversion of arogenate into Phe, in sucrose-induced anthocyanin biosynthesis in Arabidopsis. Genetic analysis showed that all six ADT isoforms function redundantly in anthocyanin biosynthesis but have differential contributions. ADT2 contributes the most to anthocyanin accumulation, followed by ADT1 and ADT3, and ADT4-ADT6. We found that anthocyanin content is positively correlated with the levels of Phe and sucrose-induced ADT transcripts in seedlings. Consistently, addition of Phe to the medium could dramatically increase anthocyanin content in the wild-type plants and rescue the phenotype of the adtl adt3 double mutant regarding the anthocyanin accumulation. Moreover, transgenic plants overexpressing ADT4, which appears to be less sensitive to Phe than overexpression ofADT2, hyperaccumulate Phe and produce elevated level of antho- cyanins. Taken together, our results suggest that the level of Phe is an important regulatory factor for sus- taining anthocyanin biosynthesis. 展开更多
关键词 PHENYLALANINE metabolic flux ADT ANTHOCYANIN Arabidopsis
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A Crucial Role of GA-Regulated Flavonol Biosynthesis in Root Growth of Arabidopsis 被引量:11
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作者 Huijuan Tan cong man +3 位作者 Ye Xie Jijun Yan Jinfang Chu Jirong Huang 《Molecular Plant》 SCIE CAS CSCD 2019年第4期521-537,共17页
Flavonols have been demonstrated to play many important roles in plant growth, development, and communication with other organisms. Flavonol biosynthesis is spatiotemporally regulated by the subgroup 7 R2R3-MYB (SG7 M... Flavonols have been demonstrated to play many important roles in plant growth, development, and communication with other organisms. Flavonol biosynthesis is spatiotemporally regulated by the subgroup 7 R2R3-MYB (SG7 MYB) transcription factors including MYB11/MYB12/MYB111. However, whether SG7- MYB activity is subject to post-translational regulation remains unclear. Here, we show that gibberellic acid (GA) inhibits flavonol biosynthesis via DELLA proteins in Arabidopsis. Protein-protein interaction analyses revealed that DELLAs (RGA and GAI) interacted with SG7 MYBs (MYB12 and MYB111) both in vitro and in vivo, leading to enhanced affinity of MYB binding to the promoter regions of key genes for flavonol biosynthesis and thus increasing their transcriptional levels. We observed that the level of auxin in the root tip was negatively correlated with root flavonol content. Furthermore, genetic assays showed that loss-of-function mutations in MYB 12, which is predominantly expressed in roots, partially rescued the short-root phenotype of the GA-deficient mutant ga1-3 by increasing root meristem size and mature cell size. Consistent with these observations, exogenous application of the flavonol quercetin restored the root meristem size of myb12 ga1-3 to that of ga1-3. Taken together, our data elucidate a molecular mechanism by which GA promotes root growth by directly reducing flavonol biosynthesis. 展开更多
关键词 GIBBERELLIN FLAVONOL ROOT growth AUXIN stress
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