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Vine growth, yield, berry quality attributes and leaf nutrient content of grapevines as influenced by seaweed extract (Ascophyllum nodosum) and nanosize fertilizer pulverizations
Scientia Horticulturae Cilt 175 ss. 1-8
Scopus Toplam 223 atıf DOI
Environmental stress factors such as drought, salinity, and temperature extremes can reduce the yield of major crops and limit agricultural production worldwide. Therefore, research into developing sustainable methods to alleviate such stresses should be a priority. However, experimental studies to detect evidence and the effects of macro- and micro-element deficiencies in grapes are still insufficient to match necessity of clear knowledge to solve problems related with vineyard nutrition practice under stress conditions. This study was thus conducted on the investigation of the physiological, growth, mineral acquisition, yield and quality responses of grapevine, grown on alkaline soil, to seaweed extract (Ascophyllum nodosum) and nanosize fertilizer over two years. Leaf investigations revealed that the existence of nano-size Ca-based fertilizer led to remarkable enhancements in foliar development and chlorophyll concentration of the vines cultivated on alkaline soil. Seaweed also enhanced the leaf Zn chlorophyll content of the grapes. Most of macro- and micro-elements determined across the vines were in, or near, normal levels, except for Zn which varied around questionable levels. The treatments, particularly nano-fertilizer, considerably increased the Zn acquisition. Certain berry characteristics and the yield also increased with especially nano-fertilizer alone or with sea weed (A. nodosum) plus nano-fertilizer treatment. Overall investigations revealed that nano-fertilizer had particular contribution to improvement of vine growth, yield, berry quality attributes and leaf nutrient content of grapevines (cv. 'Narince') grown under alkaline soil condition. Therefore this product would be recommended to use for alleviating the adverse effects of such abiotic stress condition for sustainable grape production. © 2014.
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Differential Responses of Grapevine Rootstocks (Vitis spp.) to Saline Irrigation Water Applications
Erwerbs Obstbau Cilt 63 ss. 9-14
Scopus Havuzumuzda 3 atıf almış
Decreasing availability of non-saline water in arid and semiarid regions is one of prime concerns to all irrigated grape producers as the grapevine genotypes are not salt tolerant plants and producers often face the choice of either limiting fresh water application or using alternative saline waters. Present investigations were performed to analyze the effects of NaCl supplementation to irrigation water on the physiology and vegetative development of three grapevine rootstocks (41 B, 99 R and 140 Ru) commonly used across the world. Rooted cuttings of each rootstock were transplanted in pots and after the good establishment, salinity applications (0, 35 and 70 mM) were performed three times. EC and pH values of the growth substrate (perlite, peat and soil moisture) increased after the applications from 2.85 to 4.06 dS m−1 and from 7.54 to 7.81, respectively. NaCl applications in 35 mM did not significantly impair most of the analyzed plant parameters, while the use of 70 mM concentration resulted in decrease of leaf temperature across the rootstocks used. Besides chlorophyll concentration and shoot growth of 41 B were significantly restricted by NaCl at 70 mM. NaCl in both doses also markedly reduced the shoot elongation course of 99 R. Overall findings revealed that 41 B was the most severely affected genotype among them, while 140 Ru performed better physiology and development under the effect of salination applications.
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Kurumlar (1)
Selçuk Üniversitesi Selçuklu, Turkey