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资源类型: 外文期刊
作者:Chen, Liang(精确检索)
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220条记录
161Quantitative Succinyl-Proteome Profiling of Camellia sinensis cv. 'Anji Baicha' During Periodic Albinism

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来源:SCIENTIFIC REPORTS

年份:2017

162Soybean (Glycine max) WRINKLED1 transcription factor, GmWRI1a, positively regulates seed oil accumulation

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来源:MOLECULAR GENETICS AND GENOMICS

关键词: Soybean (Glycine max); Seed oil; WRI1; AP2/EREBP transcription factor; Fatty acid biosynthesis; Transcriptional machinery

年份:2018

163Comprehensive Dissection of Metabolic Changes in Albino and Green Tea Cultivars

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来源:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY

关键词: albino tea cultivar; UPLC-Q-TOF/MS; GC x GC-TOF/MS; metabolomics

年份:2018

164A high nutrient dense diet alters hypothalamic gene expressions to influence energy intake in pigs born with low birth weight

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来源:SCIENTIFIC REPORTS

年份:2018

165Maize (Zea mays L.) transformation by Agrobacterium tumefaciens infection of pollinated ovules

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来源:JOURNAL OF BIOTECHNOLOGY

关键词: Agrobacterium tumefaciens Maize transformation Pollinated ovule culture-regeneration GUS-expression Zygote

166Genome-Wide Identification and Expression Profiling of the TCP Family Genes in Spike and Grain Development of Wheat (Triticum aestivum L.)

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来源:FRONTIERS IN PLANT SCIENCE

关键词: wheat; TCP; spike; grain; gene family

年份:2018

167Hongyacha, a Naturally Caffeine-Free Tea Plant from Fujian, China

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来源:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY

关键词: caffeine-free; chemical component; morphological characteristic; Hongyacha; tea caffeine synthase

年份:2018

168Over-expression of a DUF1644 protein gene, SIDP361, enhances tolerance to salt stress in transgenic rice

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来源:JOURNAL OF PLANT BIOLOGY

关键词: DUF1644 Salt tolerance SIDP361 Signal transduction

169Comparative phenotype and microRNAome in developing anthers of wild-type and male-sterile Lycium barbarum L.

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来源:PLANT SCIENCE

关键词: Lycium barbarum L.; Anther; Male sterility; Callose; microRNAome

年份:2018

170The binding, synergistic and structural characteristics of BsEXLX1 for loosening the main components of lignocellulose: Lignin, xylan, and cellulose

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来源:ENZYME AND MICROBIAL TECHNOLOGY

关键词: Lignocellulose loosening BsEXLX1 Site-directed mutagenesis Synergistic activity Homologous modeling