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1.
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
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146
)
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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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2.
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
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105
)
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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 M
1
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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3.
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
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90
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4.
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
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87
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5.
In maize, co-expression of GAT and GR79-EPSPS provides high glyphosate resistance, along with low glyphosate residues
Shengyan Li ...... Min Lin, Zhihong Lang
生物技术通报(英文版) 2023, 4 (4): 22-.
录用日期: 2023-09-01
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65
)
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6.
Lipidomic insights into the response of
Arabidopsis
sepals to mild heat stress
Zican Chen ... Yariv Brotman, Jianxin Shi
生物技术通报(英文版) 2023, 4 (3): 1-.
录用日期: 2023-06-06
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58
)
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7.
Staying hungry: a roadmap to harnessing central regulators of symbiotic nitrogen fixation under fluctuating nitrogen
Lijin Qiao ...... Takuya Suzaki & Pengbo Liang
生物技术通报(英文版) 2024, 5 (1): 22-.
录用日期: 2023-11-18
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55
)
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8.
A high-throughput protocol for testing heat-stress tolerance in pollen
Chenchen Zhao ...... Lida Han & Yi Sui
生物技术通报(英文版) 2025, 6 (1): 22-.
录用日期: 2024-10-14
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51
)
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9.
Harnessing nanobodies to expand the recognition spectrum of plant NLRs for diverse pathogens
Ruyi Wang, Guo-Liang Wang, Yuese Ning
生物技术通报(英文版) 2023, 4 (3): 22-.
录用日期: 2023-08-16
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39
)
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10.
The RUBY reporter for visual selection in soybean genome editing
Li Chen ...... Shuiqing Wu & Wensheng Hou
生物技术通报(英文版) 2024, 5 (2): 22-.
录用日期: 2024-03-18
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35
)
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11.
Expanding the targeting scope of CRISPR/Cas9-mediated genome editing by Cas9 variants in Brassica
Wenjing Li ...... Jianjun Zhao, Yan Li & Jun Li
生物技术通报(英文版) 2024, 5 (2): 22-.
录用日期: 2024-04-05
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32
)
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12.
The maize ZmCPK39-ZmKnox2 module regulates plant height
Mang Zhu ...... Limei Chen & Mingliang Xu
生物技术通报(英文版) 2024, 5 (3): 22-.
录用日期: 2024-03-15
摘要
(
29
)
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13.
Innovative computational tools provide new insights into the polyploid wheat genome
Yongming Chen ...... Qixin Sun & Weilong Guo
生物技术通报(英文版) 2024, 5 (1): 22-.
录用日期: 2024-02-07
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27
)
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14.
Functional retrogression of LOFSEPs in specifying floral organs in barley
Chaoqun Shen ...... Gang Li & Matthew R. Tucker
生物技术通报(英文版) 2025, 6 (1): 22-.
录用日期: 2024-10-15
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26
)
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15.
Inference and prioritization of tissue-specific regulons in
Arabidopsis
and
Oryza
Honggang Dai ...... Ling-Ling Chen & Junxiang Gao
生物技术通报(英文版) 2024, 5 (3): 22-.
录用日期: 2024-07-16
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25
)
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16.
Impact of acute heat stress on mitochondrial function, ultrastructure and cardiolipin distribution in Arabidopsis
Yukang Wang, Ronghui Pan & Jianping Hu
生物技术通报(英文版) 2024, 5 (3): 22-.
录用日期: 2024-03-15
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24
)
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17.
Plants against cancer: towards green Taxol production through pathway discovery and metabolic engineering
Philipp Zerbe
生物技术通报(英文版) 2024, 5 (3): 22-.
录用日期: 2024-05-27
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23
)
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18.
Prime editing enables precise genome modification of a
Populus hybrid
Jinpeng Zou ...... Chun Wang & Renying Zhuo
生物技术通报(英文版) 2024, 5 (4): 22-.
录用日期: 2024-09-06
摘要
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22
)
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19.
Efficient genome editing in rice with miniature Cas12f variants
Zhengyan Ye ...... Junjie Tan & Jianmin Wan
生物技术通报(英文版) 2024, 5 (2): 22-.
录用日期: 2024-05-28
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21
)
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20.
Mining salt stress-related genes in
Spartina alterniflora
via analyzing co-evolution signal across 365 plant species using phylogenetic profiling
Shang Gao ...... Shihua Chen & Huihui Li
生物技术通报(英文版) 2023, 4 (4): 22-.
录用日期: 2023-12-07
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21
)
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