缺水条件下丛枝菌根真菌在作物生产中的应用效益

K. Posta, N. H. Duc
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引用次数: 31

摘要

缺水是威胁全球作物生长和生产的最严重的非生物胁迫之一。水分胁迫引起一系列形态、生化、生理和分子变化,对植物生产力产生负面影响。然而,在自然界中,植物通常与能够调节植物对缺水反应的微生物联系在一起。在有益微生物中,丛枝菌根真菌(AMF)是分布最广泛的共生真菌之一,在大多数农业植物中都有定植。除了增加植物营养外,据报道AMF还能改善水分限制下的植物生产性能。本章在室内和田间试验的基础上,重点介绍了在水分亏缺条件下接种AMF对作物生产的益处。本文还讨论了水资源短缺条件下AMF应用的不同结果和挑战,以期在作物生产中得到实际应用。采用奥林巴斯BX51光学显微镜,采用诺玛斯基干涉对比光学,物镜40x,对囊泡、根内菌丝和孢子进行观察。比例尺代表20 μ m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Benefits of Arbuscular Mycorrhizal Fungi Application to Crop Production under Water Scarcity
Water deficit is one of the most severe abiotic stresses threatening crop growth and production on the globe. Water stress causes a series of morphological, biochemical, physiological, and molecular alterations that negatively influence plant productivity. However, in nature, plants are often associated with microbes that can modulate plant responses to water scarcity. Among beneficial microbes, arbuscular mycorrhizal fungi (AMF) are one of the most widespread symbiotic fungi colonizing the majority of agricultural plants. Besides an enhancement in plant nutrition, AMF have been reported to improve plant performance under water restrictions. In this chapter, we emphasize the benefits of AMF inoculation to crop production under water deficit based on related laboratory and field experiments. Variable outcomes and challenges of AMF application are also discussed for practical use in crop production under water scarcity. vesicles, intraradical hyphae, and spore) was assessed by means of an Olympus BX51 light microscope with Nomarski interference contrast optics, using an objective of 40×. Scale Bar representing 20 μ m.
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