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1778条记录
Identification of Prolificacy-Related Differentially Expressed Proteins from Sheep (Ovis aries) Hypothalamus by Comparative Proteomics

SCI

机构:

来源:PROTEOMICS年份:2019

关键词: GnRH; hypothalamus; reproduction; sheep; TMT-based quantitative proteomics

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The genetic mechanism of high prolificacy in small tail han sheep by comparative proteomics of ovaries in the follicular and luteal stages

SCI

机构:

来源:JOURNAL OF PROTEOMICS年份:2019

关键词: Sheep; Proteomics; Tandem mass tag; Prolificacy; Genetic mechanism

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Assessing heavy metal pollution in paddy soil from coal mining area, Anhui, China

SCI

机构:

来源:ENVIRONMENTAL MONITORING AND ASSESSMENT年份:2019

关键词: Agricultural soil; Heavy metal; Environmental assessment

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Alterations of the circular RNA profile in the jejunum of neonatal calves in response to colostrum and milk feeding

SCI

机构:

来源:JOURNAL OF DAIRY SCIENCE年份:2019

关键词: circular RNA; colostrum; jejunum; newborn calf

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Agronomic Management and Rice Varieties Controlling Cd Bioaccumulation in Rice

SCI

机构:

来源:INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH年份:2019

关键词: rice; varieties; Cd; biological organic fertilizers; lime; porous ceramic nanomaterials

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Natural alleles of GLA for grain length and awn development were differently domesticated in rice subspecies japonica and indica

SCI

机构:

来源:PLANT BIOTECHNOLOGY JOURNAL年份:2019

关键词: allelic frequency; awn development; domestication; grain length; natural variation

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Grain filling of early-season rice cultivars grown under mechanical transplanting

SCI

机构:

来源:PLOS ONE年份:2019
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AOA and AOB communities respond differently to changes of soil pH under long-term fertilization

SCI

机构:

来源:SOIL ECOLOGY LETTERS年份:2019

关键词: AOA; AOB; Microbial diversity; Soil pH; Long-term fertilization; High-throughput sequencing

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Comparative genome analysis of the SPL gene family reveals novel evolutionary features in maize

SCI

机构:

来源:GENETICS AND MOLECULAR BIOLOGY年份:2019

关键词: SPL; phylogenetic relationship; gene duplication; miR156 expression

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A maize NAC transcription factor, ZmNAC34, negatively regulates starch synthesis in rice

SCI

机构:

来源:PLANT CELL REPORTS年份:2019

关键词: Maize; ZmNAC34; Endosperm; Starch synthesis

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