Showing 101 - 120 results of 210 for search '"Arabidopsis"', query time: 0.04s Refine Results
  1. 101

    Molecular genetic bases of seed resistance to oxidative stress during storage by N. A. Shvachko, E. K. Khlestkina

    Published 2020-08-01
    “…This review provides a summary of Arabidopsis genes associated with seed viability. By now, a significant number of loci and genes affecting seed longevity have been identified. …”
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    Article
  2. 102

    Identification and characterization of CONSTANS-like (COL) gene family in upland cotton (Gossypium hirsutum L.). by Darun Cai, Hui Liu, Na Sang, Xianzhong Huang

    Published 2017-01-01
    “…Two homoeologous pairs, GhCOL1-A and GhCOL1-D in Group I, showed the highest sequence similarity to Arabidopsis thaliana CO and rice CO homologous gene Heading date1 (Hd1). …”
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  3. 103

    α-Copaene is a potent repellent against the Asian Citrus Psyllid Diaphorina citri by Rodrigo Facchini Magnani, Haroldo Xavier Linhares Volpe, Rejane Angélica Grigio Luvizotto, Tatiana Aparecida Mulinari, Thiago Trevisoli Agostini, Jairo Kenupp Bastos, Victor Pena Ribeiro, Michele Carmo-Sousa, Nelson Arno Wulff, Leandro Peña, Walter S. Leal

    Published 2025-01-01
    “…We have analyzed the volatile organic compounds released by this Arabidopsis line and identified α-humulene, α-copaene, and trace amounts of β-elemene, in addition to β-caryophyllene. …”
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  4. 104

    Genome-wide identification and expression analysis of phytochrome gene family in Aikang58 wheat (Triticum aestivum L.) by Zhu Yang, Zhu Yang, Wenjie Kan, Wenjie Kan, Ziqi Wang, Caiguo Tang, Yuan Cheng, Yuan Cheng, Dacheng Wang, Dacheng Wang, Yameng Gao, Lifang Wu, Lifang Wu

    Published 2025-01-01
    “…Despite extensive research on phytochromes in model plants like Arabidopsis and rice, they have received relatively little attention in wheat. …”
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  5. 105

    Genome-wide characterization of the MADS-box gene family in Paeonia ostii and expression analysis of genes related to floral organ development by Xueting Yang, Qi Guo, Shaodan Liu, Duoduo Wang, Dingding Zuo, Tongfei Niu, Dongfeng Wei, Lili Guo, Xiaogai Hou

    Published 2025-01-01
    “…Genome collinearity analysis with Arabidopsis and grape revealed the conservation of PoMADS genes during evolution. …”
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  6. 106
  7. 107

    Splicing and expression dynamics of SR genes in hot pepper (Capsicum annuum): regulatory diversity and conservation under stress by Lin Li, Yueqin Zhang, Rui Zhang, Rui Zhang, Xiangtao Cen, Yongxiang Huang, Yongxiang Huang, Hanqiao Hu, Hanqiao Hu, Xingyu Jiang, Xingyu Jiang, Yu Ling, Yu Ling

    Published 2025-01-01
    “…Interestingly, a cross-species comparative study with Arabidopsis (Arabidopsis thaliana) and tomato (Solanum lycopersicum) showed that many AS events impact the region which codes the RNA recognition motif (RRM) domain of the protein, indicating a conserved regulatory mechanism of SR proteins in plants. …”
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  8. 108
  9. 109

    Predictive genetic circuit design for phenotype reprogramming in plants by Ci Kong, Yin Yang, Tiancong Qi, Shuyi Zhang

    Published 2025-01-01
    “…Our versatile and robust framework, validated by constructing 21 two-input circuits with high prediction accuracy (R 2  = 0.81), enables multi-state phenotype control in both Arabidopsis thaliana and Nicotiana benthamiana in response to chemical inducers. …”
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  10. 110

    Gene Coexpression Network Comparison via Persistent Homology by Ali Nabi Duman, Harun Pirim

    Published 2018-01-01
    “…We calculate the persistent homology of weighted networks constructed from 38 Arabidopsis microarray data sets to test the relevance and the success of this approach in distinguishing the stress factors. …”
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  11. 111

    Revisiting the female germline cell development by Youmei Huang, Yunlong Zhang, Jiahong Yang, Xinpeng Xi, Yanfen Liu, Hanyang Cai, Yuan Qin

    Published 2025-01-01
    “…The formation of the female germline is the fundamental process in most flowering plants’ sexual reproduction. In Arabidopsis, only one somatic cell obtains the female germline fate, and this process is regulated by different pathways. …”
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  12. 112

    PINOID‐centered genetic interactions mediate auxin action in cotyledon formation by Wei Zeng, Xiutao Wang, Mengyuan Li

    Published 2024-05-01
    “…Many previous reports on Arabidopsis have found that various types of auxin‐related genes are involved in the development of the cotyledon, including the number, symmetry, and morphology of the cotyledon. …”
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  13. 113

    Genome-Wide Comprehensive Identification and In Silico Characterization of Lectin Receptor-Like Kinase Gene Family in Barley (Hordeum vulgare L.) by Fee Faysal Ahmed, Farah Sumaiya Dola, Md Shohel Ul Islam, Fatema Tuz Zohra, Nasrin Akter, Shaikh Mizanur Rahman, Md. Abdur Rauf Sarkar

    Published 2024-01-01
    “…Based on the phylogenetic tree and domain organization, a total of 113 LecRLK genes were identified in the barley genome (referred to as HvlecRLK) corresponding to the LecRLK genes of Arabidopsis thaliana. These putative HvlecRLK genes were classified into three groups: 62 G-type LecRLKs, 1 C-type LecRLK, and 50 L-type LecRLKs. …”
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  14. 114

    Identification and functional analysis of Wall-Associated Kinase genes in Nicotiana tabacum by Ling Li, Linggai Cao, Jintao Li, Zhiqiang Zhang, Zhiqiang Zhang, Jie Liu, Zhongying Ren, Jie Zhang, Rengang Wang, Yangfan Miao, Shizhou Yu, Wei Li, Wei Li

    Published 2025-02-01
    “…Phylogenetic analysis comparing tobacco WAKs (NtWAKs) with Arabidopsis WAKs (AtWAKs) revealed species-specific expansion of these genes. …”
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  15. 115

    Recent Achievement in Gene Cloning and Functional Genomics in Soybean by Zhengjun Xia, Hong Zhai, Shixiang Lü, Hongyan Wu, Yupeng Zhang

    Published 2013-01-01
    “…In comparison, rapid development and progress in flowering time and photoperiodic response have been achieved in Arabidopsis and rice. As the soybean genomic information has been released since 2008, gene cloning and functional genomic studies have been revived as indicated by successfully characterizing genes involved in maturity and nematode resistance. …”
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  16. 116

    misMM: An Integrated Pipeline for Misassembly Detection Using Genotyping-by-Sequencing and Its Validation with BAC End Library Sequences and Gene Synteny by Young-Joon Ko, Jung Sun Kim, Sangsoo Kim

    Published 2017-12-01
    “…The results were further verified with gene synteny relations between Brassica rapa and Arabidopsis thaliana. We conclude that this method will help detect misassembly regions and be applicable to incompletely assembled reference genomes from a variety of species.…”
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  17. 117

    metaGE: Investigating genotype x environment interactions through GWAS meta-analysis. by Annaïg De Walsche, Alexis Vergne, Renaud Rincent, Fabrice Roux, Stéphane Nicolas, Claude Welcker, Sofiane Mezmouk, Alain Charcosset, Tristan Mary-Huard

    Published 2025-01-01
    “…We also applied metaGE to two emblematic examples: the detection of flowering QTLs whose effects are modulated by competition in Arabidopsis and the detection of yield QTLs impacted by drought stresses in maize. …”
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  18. 118

    Class B Gene Expression and the Modified ABC Model in Nongrass Monocots by Akira Kanno, Mutsumi Nakada, Yusuke Akita, Masayo Hirai

    Published 2007-01-01
    “…The discovery of the MADS-box genes and the study of model plants such as Arabidopsis thaliana and Antirrhinum majus have greatly improved our understanding of the molecular mechanisms driving the diversity in floral development. …”
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  19. 119

    Comprehensive Analysis of β-1,3-Glucanase Genes in Wolfberry and Their Implications in Pollen Development by Xin Zhang, Pinjie Zheng, Xurui Wen, Zhanlin Bei

    Published 2024-12-01
    “…Evolutionary analysis revealed six distinct branches within wolfberry and nine distinct branches when compared with <i>Arabidopsis thaliana</i>. Expression analysis showed that 45 <i>Glu</i> genes were expressed in berries, with specific genes also being expressed in flowers and leaves. …”
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  20. 120

    Origins and Evolution of WUSCHEL-Related Homeobox Protein Family in Plant Kingdom by Gaibin Lian, Zhiwen Ding, Qin Wang, Dabing Zhang, Jie Xu

    Published 2014-01-01
    “…Furthermore, among the members of Arabidopsis thaliana and Oryza sativa, we observed ubiquitous expression of genes in the first clade and the diversified expression pattern of WOX genes in distinct organs in the second clade and the third clade. …”
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