科研产出
- 时间
- 相关度
1Potential of Gibberellic Acid (GA3) and Uniconazole for Enhancing the Cd Absorption Efficiency of Maize (Zea mays L.)
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来源:POLISH JOURNAL OF ENVIRONMENTAL STUDIES
关键词: facility soil; cadmium; phytoremediation; gibberellin; uniconazole
年份:2021
2Melatonin Participates in Selenium-Enhanced Cold Tolerance of Cucumber Seedlings
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来源:FRONTIERS IN PLANT SCIENCE
关键词: selenium; melatonin; cucumber; cold stress; COMT
年份:2021
3Effects of exogenous sulfur on maize (Zea maysL.) growth and Cd accumulation in Cd-contaminated plastic shed soil
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来源:ENVIRONMENTAL MONITORING AND ASSESSMENT
关键词: Cadmium pollution; Phytoremediation; Enzyme activities; Root; Cd extraction
年份:2020
4Overexpression of S-nitrosoglutathione reductase alleviated iron-deficiency stress by regulating iron distribution and redox homeostasis
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来源:JOURNAL OF PLANT PHYSIOLOGY
关键词: Tomato; Iron deficiency; S-Nitrosoglutathione reductase; Reactive oxygen species; S-Nitrosylation
年份:2019
5Heavy metal and soil nutrient accumulation and ecological risk assessment of vegetable fields in representative facilities in Shandong Province, China
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来源:ENVIRONMENTAL MONITORING AND ASSESSMENT
关键词: Protected vegetable soil; Heavy metal; Geoaccumulation index; Potential ecological risk index
年份:2019
6Effects of continuous cucumber cropping on crop quality and soil fungal community
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来源:ENVIRONMENTAL MONITORING AND ASSESSMENT
关键词: Cucumber quality; Continuous cropping; Soil health; Fungal community
年份:2021
7Overexpression of S-nitrosoglutathione reductase alleviated iron-deficiency stress by regulating iron distribution and redox homeostasis
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机构:
来源:JOURNAL OF PLANT PHYSIOLOGY
关键词: Tomato; Iron deficiency; S-Nitrosoglutathione reductase; Reactive oxygen species; S-Nitrosylation
年份:2019
8Study on the Applications and Regulatory Mechanisms of Grafting on Vegetables
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来源:PLANTS-BASEL
关键词: vegetable; grafting; mechanism; regulation; applications
年份:2023
9Selenium in horticultural crops
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来源:SCIENTIA HORTICULTURAE
关键词: selenium; horticultural crops; function; metabolism
年份:2021
10Arbuscular Mycorrhizal Fungi: Boosting Crop Resilience to Environmental Stresses
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来源:MICROORGANISMS
关键词: arbuscular mycorrhizal fungi (AM fungi); abiotic stress; biotic stress; plant resistance; ecosystem health
年份:2024