Search Results - "Yang, Zhongnan"

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  1. 1

    WOX11 and 12 Are Involved in the First-Step Cell Fate Transition during de Novo Root Organogenesis in Arabidopsis by Liu, Jingchun, Sheng, Lihong, Xu, Yingqiang, Li, Jiqin, Yang, Zhongnan, Huang, Hai, Xu, Lin

    Published in The Plant cell (01-03-2014)
    “…De novo organogénesis is a process through which wounded or detached plant tissues or organs regenerate adventitious roots and shoots. Plant hormones play key…”
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  2. 2

    Model for the role of auxin polar transport in patterning of the leaf adaxial–abaxial axis by Shi, Jianmin, Dong, Jiaqiang, Xue, Jingshi, Wang, Hua, Yang, Zhongnan, Jiao, Yuling, Xu, Lin, Huang, Hai

    “…Summary Leaf adaxial–abaxial polarity refers to the two leaf faces, which have different types of cells performing distinct biological functions. In 1951, Ian…”
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  3. 3

    Arabidopsis ECERIFERUM3 (CER3) Functions to Maintain Hydration for Pollen–Stigma Recognition During Fertilization by Xu, Faqing, Zheng, Lingli, Yang, Zhongnan, Zhang, Sen

    “…Plant stigmas distinguish the pollen grains and allow compatible ones to fertilize female gametes. To analyze the underlying mechanism, conditional…”
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  4. 4

    Intracellular Delivery of Quantum Dots Tagged Antisense Oligodeoxynucleotides by Functionalized Multiwalled Carbon Nanotubes by Jia, Nengqin, Lian, Qiong, Shen, Hebei, Wang, Chen, Li, Xingyu, Yang, Zhongnan

    Published in Nano letters (01-10-2007)
    “…With the goal of identifying an improved delivery scheme for intracellular tracking and anticancer therapy, we explored a novel double functionalization of a…”
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  5. 5

    Arabidopsis pollen‐specific glycerophosphodiester phosphodiesterase‐like genes are essential for pollen tube tip growth by Wang, Chong, Cheng, Hao, Xu, Wenjing, Xue, Jingshi, Hua, Xinguo, Tong, Guimin, Ma, Xujun, Yang, Chuanping, Lan, Xingguo, Shen, Shi‐Yi, Yang, Zhongnan, Huang, Jirong, Cheng, Yuxiang

    Published in Journal of integrative plant biology (01-08-2023)
    “…ABSTRACT In angiosperms, pollen tube growth is critical for double fertilization and seed formation. Many of the factors involved in pollen tube tip growth are…”
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  6. 6

    Imitation Switch chromatin remodeling factors and their interacting RINGLET proteins act together in controlling the plant vegetative phase in Arabidopsis by Li, Guang, Zhang, Jiawei, Li, Jiqin, Yang, Zhongnan, Huang, Hai, Xu, Lin

    “…During their life cycle, flowering plants must experience a transition from vegetative to reproductive growth. Here, we report that double mutations in the…”
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  7. 7

    The Canonical E2Fs Are Required for Germline Development in Arabidopsis by Yao, Xiaozhen, Yang, Huidan, Zhu, Yingxiu, Xue, Jingshi, Wang, Tianhua, Song, Teng, Yang, Zhongnan, Wang, Shui

    Published in Frontiers in plant science (15-05-2018)
    “…A number of cell fate determinations, including cell division, cell differentiation, and programmed cell death, intensely occur during plant germline…”
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  8. 8

    Proteomic Insight into the Response of Arabidopsis Chloroplasts to Darkness by Wang, Jing, Yu, Qingbo, Xiong, Haibo, Wang, Jun, Chen, Sixue, Yang, Zhongnan, Dai, Shaojun

    Published in PloS one (03-05-2016)
    “…Chloroplast function in photosynthesis is essential for plant growth and development. It is well-known that chloroplasts respond to various light conditions…”
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  9. 9

    TAA family contributes to auxin production during de novo regeneration of adventitious roots from Arabidopsis leaf explants by Sun, Beibei, Chen, Lyuqin, Liu, Jingchun, Zhang, Xuening, Yang, Zhongnan, Liu, Wu, Xu, Lin

    Published in Science bulletin (Beijing) (01-11-2016)
    “…Many differentiated plant organs have the ability to regenerate into a new plant after detachment via de novo organogenesis. During de novo root organogenesis…”
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  10. 10

    A Novel Chloroplast Protein RNA Processing 8 Is Required for the Expression of Chloroplast Genes and Chloroplast Development in Arabidopsis thaliana by Kong, Mengmeng, Wu, Yaozong, Wang, Ziyuan, Qu, Wantong, Lan, Yixin, Chen, Xin, Liu, Yanyun, Shahnaz, Perveen, Yang, Zhongnan, Yu, Qingbo, Mi, Hualing

    Published in Frontiers in plant science (09-12-2021)
    “…Chloroplast development involves the coordinated expression of both plastids- and nuclear-encoded genes in higher plants. However, the underlying mechanism…”
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  11. 11

    Putative RNA-Dependent RNA Polymerase RDR6 Acts Synergistically with ASYMMETRIC LEAVES1 and 2 to Repress BREVIPEDICELLUS and MicroRNA165/166 in Arabidopsis Leaf Development by Li, Hong, Xu, Lin, Wang, Hua, Yuan, Zheng, Cao, Xiaofeng, Yang, Zhongnan, Zhang, Dabing, Xu, Yuquan, Huang, Hai

    Published in The Plant cell (01-08-2005)
    “…The Arabidopsis thaliana ASYMMETRIC LEAVES1 (AS1) and AS2 genes are important for repressing class I KNOTTED1-like homeobox (KNOX) genes and specifying leaf…”
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  12. 12

    Large cliques in Arabidopsis gene coexpression network and motif discovery by Zheng, Xiaoqi, Liu, Taigang, Yang, Zhongnan, Wang, Jun

    Published in Journal of plant physiology (15-04-2011)
    “…Identification of cis-regulatory elements in Arabidopsis is a key step to understanding its transcriptional regulation scheme. In this study, the Arabidopsis…”
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  13. 13

    A Single Amino-Acid Substitution at Lysine 40 of an Arabidopsis thaliana α-tubulin Causes Extensive Cell Proliferation and Expansion Defects by Xiong, Xue, Xu, Deyang, Yang, Zhongnan, Huang, Hai, Cui, Xiaofeng

    Published in Journal of integrative plant biology (01-03-2013)
    “…Microtubules are highly dynamic cytoskeletal polymers of α/β-tubulin heterodimers that undergo multiple post-translational modifications essential for various…”
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  14. 14

    SLIDE, the Protein Interacting Domain of Imitation Switch Remodelers, Binds DDT-Domain Proteins of Different Subfamilies in Chromatin Remodeling Complexes by Dong, Jiaqiang, Gao, Zheng, Liu, Shujing, Li, Guang, Yang, Zhongnan, Huang, Hai, Xu, Lin

    Published in Journal of integrative plant biology (01-10-2013)
    “…The Imitation Switch (ISWI) type adenosine triphosphate (ATP)-dependent chromatin remodeling factors are conserved proteins in eukaryotes, and some of them are…”
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  15. 15

    Prediction of regulatory interactions in Arabidopsis using gene-expression data and support vector machines by Yu, Xiaoqing, Liu, Taigang, Zheng, Xiaoqi, Yang, Zhongnan, Wang, Jun

    Published in Plant physiology and biochemistry (01-03-2011)
    “…Identification of regulatory relationships between transcription factors (TFs) and their targets is a central problem in post-genomic biology. In this paper,…”
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  16. 16

    AtMYB103 is a crucial regulator of several pathways affecting Arabidopsis anther development by Zhu, Jun, Zhang, GuoQiang, Chang, YuHua, Li, XiaoChuan, Yang, Jun, Huang, XueYong, Yu, QingBo, Chen, Hui, Wu, TianLong, Yang, ZhongNan

    Published in Science China. Life sciences (01-09-2010)
    “…Previous reports indicated that AtMYB103 has an important role in tapetum development, callose dissolution, and exine formation in A. thaliana anthers. Here,…”
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  17. 17

    Leaf anatomy, photosynthesis, and chloroplast ultrastructure of Heptacodium miconioides seedlings reveal adaptation to light environment by Zhang, Yanfei, Chen, Chao, Jin, Zexin, Yang, Zhongnan, Li, Yueling

    Published in Environmental and experimental botany (01-03-2022)
    “…Light intensity is a critical factor for the plant survival and early growth. Heptacodium miconioides, a well-accepted ornamental plant, has been endangered…”
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    New insights into the evolution and function of the UMAMIT (USUALLY MULTIPLE ACIDS MOVE IN AND OUT TRANSPORTER) gene family by Cao, Chenhao, Qiu, Xinbao, Yang, Zhongnan, Jin, Yue

    Published in Journal of plant research (12-11-2024)
    “…UMAMIT proteins have been known as key players in amino acid transport. In Arabidopsis, functions of several UMAMITs have been characterized, but their precise…”
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  20. 20

    Asymmetric PCR Using the Primers Anchored on the Surface of Magnetic Nanoparticles by Shen, Hebai, Zhou, Haiqing, Wang, Youbao, Yang, Zhongnan, Wang, Chen

    Published in Bulletin of the Chemical Society of Japan (01-09-2005)
    “…Asymmetric PCR is generally used to produce ssDNA, which could function as probes for detecting various kinds of genes. An asymmetric PCR technique based on…”
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