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资源类型: 外文期刊
作者:Wu, Honghong(精确检索)
作者:Li, Zhaohu(精确检索)
作者:Wu, Honghong(精确检索)
作者:Li, Zhaohu(精确检索)
作者:Wu, Honghong(精确检索)
作者:Wu, Honghong(精确检索)
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1Recent advances in nano-enabled agriculture for improving plant performance

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来源:CROP JOURNAL

关键词: Nano-enabled agriculture; Nanosensors; Mechanisms; Photosynthesis; Signaling molecules; Stress tolerance

年份:2022

2CeO2 nanoparticles modulate Cu-Zn superoxide dismutase and lipoxygenase-IV isozyme activities to alleviate membrane oxidative damage to improve rapeseed salt tolerance

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来源:ENVIRONMENTAL SCIENCE-NANO

年份:2022

3Cell Wall Pectin Content Refers to Favored Delivery of Negatively Charged Carbon Dots in Leaf Cells

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来源:ACS NANO

关键词: cell wall components; cell wall regeneration; charged carbon dots; isolated individual cells; pectin

年份:2023

4Negatively Charged Carbon Dots Employed Symplastic and Apoplastic Pathways to Enable Better Plant Delivery than Positively Charged Carbon Dots

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来源:ACS NANO

关键词: charged carbon dots; cotton and cucumber; photosyntheticperformance; root to leaf translocation; symplasticand apoplastic pathways

年份:2024

5Rational design of ROS scavenging and fluorescent gold nanoparticles to deliver siRNA to improve plant resistance to Pseudomonas syringae

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来源:JOURNAL OF NANOBIOTECHNOLOGY

关键词: Fluorescent gold nanoparticles; RNA delivering; Gene silencing; ROS scavenging ability; Disease resistance

年份:2024

6Nanoceria seed priming enhanced salt tolerance in rapeseed through modulating ROS homeostasis and alpha-amylase activities

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来源:JOURNAL OF NANOBIOTECHNOLOGY

关键词: Nanoceria; Salt stress; Seed priming; ROS homeostasis; alpha-amylase activity; Na+ /K+ ratio

年份:2021

7Recent omics progress in nanobiotechnology for plant abiotic stress tolerance improvement

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来源:CROP JOURNAL

关键词: Nanomaterials; Omics; Molecular mechanisms; Epigenetics; DNA methylation; Histone modification

年份:2024

8Negatively but Not Positively Charged Nanoceria Promoted Lateral Root Growth via Modulating the Distribution of Reactive Oxygen Species Rather than Auxin

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来源:GLOBAL CHALLENGES

关键词: auxin; lateral root formation; nanoceria; ROS; transgenic lines

年份:2025

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