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    1. The Phantom Menace: latest findings on effector biology in the rice blast fungus
    Jessie Fernandez
    生物技术通报(英文版)    2023, 4 (2): 1-.  
    录用日期: 2023-03-27

    摘要174)            收藏
    Magnaporthe oryzae is a hemibiotrophic fungus responsible for the economically devastating and recalcitrant rice blast disease. However, the blast fungus is not only restricted to rice plants as it can also infect wheat, millet, and other crops. Despite previous outstanding discoveries aimed to understand and control the disease, the fungus remains one of the most important pathogens that threatens global food security. To cause disease, M. oryzae initiates morphological changes to attach, penetrate, and colonize rice cells, all while suppressing plant immune defenses that would otherwise hinder its proliferation. As such, M. oryzae actively secretes a battery of small proteins called ‘‘effectors’’ to manipulate host machinery. In this review, we summarize the latest findings in effector identification, expression, regulation, and functionality. We review the most studied effectors and their roles in pathogenesis. Additionally, we discern the current methodologies to structurally catalog effectors, and we highlight the importance of climate change and its impact on the future of rice blast disease.
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    2. Coculture engineering for efficient production of vanillyl alcohol in Escherichia coli
    Meichen Yang, Hao Meng ... Qipeng Yuan
    生物技术通报(英文版)    2022, 3 (4): 5-.  
    录用日期: 2022-09-05

    摘要162)            收藏
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    3. Shining in the dark: the big world of small peptides in plants
    Yan-Zhao Feng ... Pei Chen, Yang Yu
    生物技术通报(英文版)    2023, 4 (3): 1-.  
    录用日期: 2023-04-08

    摘要146)            收藏
    Small peptides represent a subset of dark matter in plant proteomes. Through differential expression patterns and modes of action, small peptides act as important regulators of plant growth and development. Over the past 20 years, many small peptides have been identified due to technical advances in genome sequencing, bioinformatics, and chemical biology. In this article, we summarize the classification of plant small peptides and experimental strategies used to identify them as well as their potential use in agronomic breeding. We review the biological functions and molecular mechanisms of small peptides in plants, discuss current problems in small peptide research and highlight future research directions in this field. Our review provides crucial insight into small peptides in plants and will contribute to a better understanding of their potential roles in biotechnology and agriculture.
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    4. Deoxynivalenol accumulation and detoxification in cereals and its potential role in wheat–Fusarium graminearum interactions
    Kun Luo ... Guangwei Li, Thérèse Ouellet
    生物技术通报(英文版)    2023, 4 (2): 20-.  
    录用日期: 2023-02-18

    摘要137)            收藏
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    5. Fundamental and practical approaches for single-cell ATAC-seq analysis
    Peiyu Shi, Yage Nie ... Jin Xu
    生物技术通报(英文版)   
    录用日期: 2022-09-27

    6. Generating homozygous mutant populations of barley microspores by ethyl methanesulfonate treatment
    Linli Huang ... Chenghong Liu, Ping Yang
    生物技术通报(英文版)    2023, 4 (3): 1-.  
    录用日期: 2023-06-28

    摘要105)            收藏
    Induced mutations are important for genetic research and breeding. Mutations induced by physical or chemical mutagenesis are usually heterozygous during the early generations. However, mutations must be fixed prior to phenotyping or field trials, which requires additional rounds of self-pollination. Microspore culture is an effective method to produce double-haploid (DH) plants that are fixed homozygotes. In this study, we conducted ethyl methanesulfonate (EMS)-induced mutagenesis of microspore cultures of barley (Hordeum vulgare) cultivar ‘Hua30’ and landrace ‘HTX’. The EMS concentrations were negatively correlated with the efficiency of callus induction and the frequency of mutant plant regeneration. The two genotypes showed different regeneration efficiencies. The phenotypic variation of the regenerated M1 plants and the presence of genome-wide nucleotide mutations, revealed by whole-genome sequencing, highlight the utility of EMS-induced mutagenesis of isolated microspore cultures for developing DH mutants. Genome-wide analysis of the mutation frequency in the regenerated plants revealed that a considerable proportion of mutations resulted from microspore culture (somaclonal variation) rather than EMS-induced mutagenesis. In addition to producing a population of 1972 homozygous mutant lines that are available for future field trials, this study lays the foundation for optimizing the regeneration efficiency of DH plants and the richness of mutations
    (mainly by fine-tuning the mutagen dosage).
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    7. LncPheDB: a genome-wide lncRNAs regulated phenotypes database in plants
    Danjing Lou ... Qingwen Yang, Xiaoming Zheng
    生物技术通报(英文版)   
    录用日期: 2022-10-05

    8. Knockout of a gene encoding a Gγ protein boosts alkaline tolerance in cereal crops
    Peitong Wang, Jian Feng Ma
    生物技术通报(英文版)    2023, 4 (2): 22-.  
    录用日期: 2023-07-02

    摘要91)            收藏
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    9. Regulation of gene-edited plants in Europe: from the valley of tears into the shining sun?
    Holger Puchta
    生物技术通报(英文版)    2024, 5 (2): 22-.  
    录用日期: 2023-12-28

    摘要90)            收藏
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    10. Unlikely heroes on the long and winding road to potato inbreeding
    Luca Comai
    生物技术通报(英文版)    2023, 4 (3): 22-.  
    录用日期: 2023-07-18

    摘要87)            收藏
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    11. Genetic architecture and molecular regulation of sorghum domestication
    Fengyong Ge ... Yaorong Wu, Qi Xie
    生物技术通报(英文版)    2023, 4 (1): 29-.  
    录用日期: 2022-12-20

    摘要87)            收藏
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    12. Chromatin accessibility landscapes revealed the subgenome-divergent regulation networks during wheat grain development
    Hongcui Pei ... Xueni Ren, Zefu Lu
    生物技术通报(英文版)    2023, 4 (1): 20-.  
    录用日期: 2023-02-10

    摘要84)            收藏
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    13. The application of CRISPR/Cas technologies to Brassica crops: current progress and future perspectives
    Jun Li, Xiaoxiao Yu ... Jianjun Zhao
    生物技术通报(英文版)   
    录用日期: 2022-07-02

    14. Transcriptome-wide N6-methyladenosine (m6A) methylation in soybean under Meloidogyne incognita infection
    Xue Han, Qianqian Shi ... Zhaoming Qi
    生物技术通报(英文版)   
    录用日期: 2022-08-18

    15. Recent advances in understanding of the epigenetic regulation of plant regeneration
    Xuemei Liu ... Kehui Zhu, Jun Xiao
    生物技术通报(英文版)    2023, 4 (1): 20-.  
    录用日期: 2023-01-16

    摘要80)            收藏
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    16. A complete MAP kinase cascade controls hyphopodium formation and virulence of Verticillium dahliae
    Ziqin Ye ... Jun Qin, Jie Zhang
    生物技术通报(英文版)    2023, 4 (2): 1-.  
    录用日期: 2023-05-02

    摘要78)            收藏
    Phytopathogens develop specialized infection-related structures to penetrate plant cells during infection. Different from phytopathogens that form appressoria or haustoria, the soil-borne root-infecting fungal pathogen Verticillium dahliae forms hyphopodia during infection, which further differentiate into penetration pegs to promote infection. The molecular mechanisms underlying the regulation of hyphopodium formation in V. dahliae remain poorly characterized. Mitogen-activated protein kinases (MAPKs) are highly conserved cytoplasmic kinases that regulate diverse biological processes in
    eukaryotes. Here we found that deletion of VdKss1, out of the five MAPKs encoded by V. dahliae, significantly impaired V. dahliae hyphopodium formation, in vitro penetration, and pathogenicity in cotton plants. Constitutive activation of MAPK kinase (MAPKK) VdSte7 and MAPK kinase kinase (MAPKKK) VdSte11 specifically activate VdKss1. Deletion of VdSte7 or VdSte11 resulted in a phenotype similar to that of the mutant with VdKss1 deletion. Thus, this study demonstrates that VdSte11-VdSte7-VdKss1 is a core MAPK cascade that regulates hyphopodium formation and pathogenicity in V. dahliae.
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    17. Weed genomics: yielding insights into the genetics of weedy traits for crop improvement
    Yujie Huang ... Lianyang Bai, Longjiang Fan
    生物技术通报(英文版)    2023, 4 (1): 30-.  
    录用日期: 2023-01-09

    摘要75)            收藏
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    18. Integrating multiomics data accelerates elucidation of plant primary and secondary metabolic pathways
    Feng Zhu ... Saleh Alseekh, Alisdair R. Fernie
    生物技术通报(英文版)    2023, 4 (1): 25-.  
    录用日期: 2023-01-11

    摘要72)            收藏
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    19. Solanaceae pangenomes are coming of graphical age to bring heritability back
    Björn Usadel
    生物技术通报(英文版)    2022, 3 (4): 23-.  
    录用日期: 2022-11-17

    摘要72)            收藏
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    20. TIR enzymatic functions: signaling molecules and receptor mechanisms
    Li Wan
    生物技术通报(英文版)    2023, 4 (2): 1-.  
    录用日期: 2023-05-07

    摘要72)            收藏
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