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2015条记录
A Novel Soybean ERF Transcription Factor, GmERF113, Increases Resistance to Phytophthora sojae Infection in Soybean

SCI

机构:

来源:FRONTIERS IN PLANT SCIENCE年份:2017

关键词: Glycine max Phytophthora sojae GmERF113 AP2/ERF activator

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Physiological and biochemical responses in sunflower leaves infected by Sclerotinia sclerotiorum

SCI

机构:

来源:PHYSIOLOGICAL AND MOLECULAR PLANT PATHOLOGY年份:2017

关键词: Antioxidant enzymes Phytohormone Physiological response Resistance mechanisms Sclerotinia sclerotiorum Sunflower

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Effect of Auxins and Associated Metabolic Changes on Cuttings of Hybrid Aspen

SCI

机构:

来源:FORESTS年份:2017

关键词: auxin cutting hybrid aspen rooting

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Mycotoxin Contamination of Maize in China

SCI

机构:

来源:COMPREHENSIVE REVIEWS IN FOOD SCIENCE AND FOOD SAFETY年份:2017

关键词: contamination fungi maize mycotoxins

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Effects of long-term fertilization on soil humic acid composition and structure in Black Soil

SCI

机构:

来源:PLOS ONE年份:2017
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Elevated CO2 Increases Nitrogen Fixationat the Reproductive Phase Contributing to Various Yield Responses of Soybean Cultivars

SCI

机构:

来源:FRONTIERS IN PLANT SCIENCE年份:2017

关键词: open-top chamber N-15 labeling nodule density symbiotic N-2 fixation N remobilization Glycine max L

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Telecoupled land-use changes in distant countries

SCI

机构:

来源:JOURNAL OF INTEGRATIVE AGRICULTURE年份:2017

关键词: agricultural land-use changes soybeans spatial attributes telecoupling moving window analysis

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A Novel Soybean Dirigent Gene GmDIR22 Contributes to Promotion of Lignan Biosynthesis and Enhances Resistance to Phytophthora sojae

SCI

机构:

来源:FRONTIERS IN PLANT SCIENCE年份:2017

关键词: Glycine max dirigent protein lignan Phytophthora sojae gene expression

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Identification of QTL underlying soybean agglutinin content in soybean seeds and analysis for epistatic effects among multiple genetic backgrounds and environments

SCI

机构:

来源:CANADIAN JOURNAL OF PLANT SCIENCE年份:2017

关键词: soybean soybean agglutinin content quantitative trait locus (QTL) epistatic effect multiple genetic backgrounds and environments

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Quantitative Trait Locus Analysis for Deep-Sowing Germination Ability in the Maize IBM Syn10 DH Population

SCI

机构:

来源:FRONTIERS IN PLANT SCIENCE年份:2017

关键词: quantitative trait locus deep-sowing germination ability maize IBM Syn10 DH population

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