Physiological Response of Three Grapevine Cultivars Grown In North-Western Poland to Mycorrhizal Fungi

G. Mikiciuk, L. Sas-Paszt, M. Mikiciuk, E. Derkowska, P. Trzciński, P. Ptak, Urszula Chylewska, M. Statkiewicz, A. Lisek
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引用次数: 7

Abstract

West Pomerania (Poland) is located near the northern boundary of the range of viticulture (the coldest zone A). Unfavourable weather conditions can pose a serious threat to the cultivated vines. One of the treatments used to increase the tolerance of plants to abiotic and biotic stresses is inoculation with symbiotic soil microorganisms. This paper focuses on the influence of mycorrhization on the changes in soil microbiology, the degree of colonization of roots by mycorrhizal fungi, and on selected physiological parameters of three grapevine cultivars (‘Pinot Noir’ on SO4 rootstock, ‘Regent’ on 5BB rootstock, and ‘Rondo’ on 125AA rootstock). The applied inoculation had a stimulating effect on the colonization of roots by arbuscular mycorrhizal (AM) fungi, as evidenced by higher mycorrhizal frequency and intensity in the mycorrhized plants. The mycorrhizal treatment increased the intensity of CO2 assimilation and transpiration. Mycorrhization reduced the efficiency of photosynthetic water use and increased stomatal conductance for water in the grapevines tested. The mycorrhizal treatment did not affect the concentration of assimilation pigments in vine leaves. The mycorrhization of grapevines had no effect on the values of initial fluorescence, maximum fluorescence, the maximum potential efficiency of photochemical reaction in PS II, the size of the pool of reduced electron acceptors in PS II, nor on the value of the PS II vitality index.
波兰西北部三种葡萄品种对菌根真菌的生理反应
西波美拉尼亚(波兰)位于葡萄栽培范围的北部边界附近(最冷的A区)。不利的天气条件会对种植的葡萄造成严重威胁。用于提高植物对非生物和生物胁迫的耐受性的处理之一是接种共生土壤微生物。本文主要研究了菌根化对土壤微生物学变化、菌根真菌对根系定殖程度的影响,以及3个葡萄品种(‘黑皮诺’在SO4砧木上、‘瑞根特’在5BB砧木上、‘朗多’在125AA砧木上)生理参数的选择。接种对丛枝菌根(AM)真菌的定殖有促进作用,表现为菌根化植株的菌根频率和强度较高。菌根处理增加了CO2同化和蒸腾的强度。菌根化降低了葡萄光合作用对水分的利用效率,增加了葡萄的气孔导度。菌根处理对葡萄叶片中同化色素的浓度没有影响。葡萄菌根对PS II初始荧光值、最大荧光值、光化学反应最大电位效率、还原电子受体池大小没有影响,对PS II活力指数也没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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