提高非生物胁迫下的种子发芽率:探索纳米施肥的潜力

IF 3.4 3区 农林科学 Q2 ENVIRONMENTAL SCIENCES
Seyede Roghie Ghadirnezhad Shiade, Reza Rahimi, Arameh Zand-Silakhoor, Amin Fathi, Arash Fazeli, Emanuele Radicetti, Roberto Mancinelli
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引用次数: 0

摘要

如今,气候变化对全球农业生态系统产生了重大的负面影响。因此,非生物胁迫的发生是作物生产(包括种子发芽和植株生长的最初阶段)亟待解决的一个重大挑战。农民,尤其是发展中国家和欠发达国家的农民,往往使用过量化肥来提高作物产量。因此,要满足现代社会对食品安全和保障日益增长的需求,同时最大限度地减少对过度使用农业投入的依赖,采用可持续农业做法至关重要。人们对使用纳米肥料(NFs)来提高种子发芽率和幼苗成活率越来越感兴趣,而种子发芽率和幼苗成活率是作物生产过程中的关键阶段。考虑到该领域研究非生物胁迫条件下纳米肥料对提高种子萌发效果的研究数量有限,本综述旨在填补这一研究空白。本综述讨论了各种非生物胁迫因素对种子萌发参数的不利影响。此外,还对 NFs 和传统肥料进行了比较。最后,还探讨了无机肥的不同成分、应用、当前挑战以及未来应用的各个方面。这项研究让人们深入了解了在植物发育早期施用无机肥的好处和挑战。通过将这些发现纳入政策战略,利益相关者可以有效地利用纳米肥料来促进可持续农业实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing Seed Germination Under Abiotic Stress: Exploring the Potential of Nano-Fertilization

Enhancing Seed Germination Under Abiotic Stress: Exploring the Potential of Nano-Fertilization

Nowadays, climate change has a significant and negative impact on global agro-ecosystems. Consequently, the occurrence of abiotic stress is a major challenge to crop production, including the first phases of seed germination and plant establishment, that needs to be addressed. Farmers, especially in developing and underdeveloped countries, tend to use excessive amounts of fertilizer to increase the cultivated crop yields. Therefore, the adoption of sustainable agricultural practices is essential to satisfy the increased need for food safety and security in modern society while minimizing dependence on excessive use of agricultural inputs. There is growing interest in the use of Nano-fertilizers (NFs) to enhance seed germination and seedling establishment, crucial stages in the crop production process. Considering the limited number of studies in this field that have investigated the effects of NFs on enhancing seed germination under abiotic stress conditions, this review aims to address this research gap. The detrimental effects of various abiotic stress factors on seed germination parameters were discussed. In addition, NFs and traditional fertilizers were compared. Ultimately, different compositions, applications, current challenges, and future aspects of the application of NFs were explored. This study provided an insightful understanding of the benefits and challenges associated with the application of NFs in the early phase of plant development. By integrating these findings into policy strategies, stakeholders can effectively use nanofertilizers to promote sustainable agricultural practices.

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来源期刊
Journal of Soil Science and Plant Nutrition
Journal of Soil Science and Plant Nutrition Agricultural and Biological Sciences-Soil Science
CiteScore
5.90
自引率
10.30%
发文量
331
审稿时长
9 months
期刊介绍: The Journal of Soil Science and Plant Nutrition is an international, peer reviewed journal devoted to publishing original research findings in the areas of soil science, plant nutrition, agriculture and environmental science. Soil sciences submissions may cover physics, chemistry, biology, microbiology, mineralogy, ecology, pedology, soil classification and amelioration. Plant nutrition and agriculture submissions may include plant production, physiology and metabolism of plants, plant ecology, diversity and sustainability of agricultural systems, organic and inorganic fertilization in relation to their impact on yields, quality of plants and ecological systems, and agroecosystems studies. Submissions covering soil degradation, environmental pollution, nature conservation, and environmental protection are also welcome. The journal considers for publication original research articles, technical notes, short communication, and reviews (both voluntary and by invitation), and letters to the editor.
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