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非生物胁迫下植物生理学中的非侵入性微测试技术:从机制到应用

Non-Invasive Micro-Test Technology in Plant Physiology Under Abiotic Stress: From Mechanism to Application.

作者信息

Zhang Tianpeng, Yin Peipei, Yang Xinghong, Liu Yunqi, Xu Ruirui

机构信息

College of Biology and Oceanography, Weifang University, Weifang 261061, China.

State Key Laboratory of Wheat Improvement, College of Life Sciences, Shandong Agricultural University, Tai'an 271000, China.

出版信息

Plants (Basel). 2025 Jun 23;14(13):1932. doi: 10.3390/plants14131932.

Abstract

Non-invasive Micro-test Technology (NMT) represents a pioneering approach in the study of physiological functions within living organisms. This technology possesses the remarkable capability to monitor the flow rates and three-dimensional movement directions of ions or molecules as they traverse the boundaries of living organisms without sample destruction. The advantages of NMT are multifaceted, encompassing real-time, non-invasive assessment, a wide array of detection indicators, and compatibility with diverse sample types. Consequently, it stands as one of the foremost tools in contemporary plant physiological research. This comprehensive review delves into the applications and research advancements of NMT within the field of plant abiotic stress physiology, including drought, salinity, extreme temperature, nutrient deficiency, ammonium toxicity, acid stress, and heavy metal toxicity. Furthermore, it offers a forward-looking perspective on the potential applications of NMT in plant physiology research, underscoring its unique capacity to monitor the flux dynamics of ions/molecules (e.g., Ca, H, K, and IAA) in real time, reveal early stress response signatures through micrometer-scale spatial resolution measurements, and elucidate stress adaptation mechanisms by quantifying bidirectional nutrient transport across root-soil interfaces. NMT enhances our understanding of the spatiotemporal patterns governing plant-environment interactions, providing deeper insights into the molecular mechanism of abiotic stress resilience.

摘要

非损伤微测技术(NMT)是研究生物体内生理功能的一种开创性方法。该技术具有非凡的能力,能够在不破坏样品的情况下监测离子或分子穿过生物体边界时的流速和三维移动方向。NMT的优势是多方面的,包括实时、非侵入性评估、广泛的检测指标以及与多种样品类型的兼容性。因此,它是当代植物生理学研究中最重要的工具之一。这篇综述深入探讨了NMT在植物非生物胁迫生理学领域的应用和研究进展,包括干旱、盐度、极端温度、养分缺乏、铵毒性、酸胁迫和重金属毒性。此外,它还对NMT在植物生理学研究中的潜在应用提供了前瞻性的展望,强调了其独特的能力,即实时监测离子/分子(如Ca、H、K和IAA)的通量动态,通过微米级空间分辨率测量揭示早期胁迫响应特征,并通过量化根-土界面的双向养分运输来阐明胁迫适应机制。NMT增强了我们对植物-环境相互作用时空模式的理解,为非生物胁迫抗性的分子机制提供了更深入的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec2a/12252008/8f74d4f90cf8/plants-14-01932-g001.jpg

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