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Nutritional Biophysical and Physiological Characteristics of Wild Rocket Genotypes As Affected by Soilless Cultivation System Salinity Level of Nutrient Solution and Growing Period

机译:无土栽培系统营养液盐度和生育期对野生火箭基因型营养生物物理和生理特性的影响

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摘要

With the aim of defining the best management of nutrient solution (NS) in a soilless system for obtaining high quality baby-leaf rocket, the present study focuses on two wild rocket genotypes (“Nature” and “Naturelle”), grown in a greenhouse under two Southern Italy growing conditions—autumn-winter (AW) and winter-spring (WS)—using two soilless cultivation systems (SCS)—at two electrical conductivity values (EC) of NS. The SCSs used were the Floating System (FS) and Ebb and Flow System (EFS) and the EC values were 2.5 and 3.5 dS m−1 (EC2.5; EC3.5) for the AW cycle and 3.5 and 4.5 dS m−1 (EC3.5; EC4.5) for the WS cycle. The yield, bio-physical, physiological and nutritional characteristics were evaluated. Higher fresh (FY) (2.25 vs. 1.50 kg m−2) and dry (DY) (230.6 vs. 106.1 g m−2) weight yield, leaf firmness (dry matter, 104.3 vs. 83.2 g kg−1 FW; specific leaf area, 34.8 vs. 24.2 g cm−2) and antioxidant compounds (vitamin C, 239.0 vs. 152.7 mg kg−1 FW; total phenols, 997 vs. 450 mg GAE mg kg−1 FW; total glucosinulates-GLSs, 1,078.8 vs. 405.7 mg kg−1 DW; total antioxidant capacity-TAC, 11,534 vs. 8,637 μmol eq trolox kg−1 FW) and lower nitrates (1,470 vs. 3,460 mg kg−1 FW) were obtained under WS conditions. The seasonal differences were evident on the GLS profile: some aliphatic GLSs (gluconapoleiferin, glucobrassicanapin) and indolic 4-OH-glucobrassicin were only expressed in WS conditions, while indolic glucobrassicin was only detected in the AW period. Compared with EFS, FS improved leaf firmness, visual quality, antioxidant content (TAC, +11.6%) and reduced nitrate leaf accumulation (−37%). “Naturelle” performed better than “Nature” in terms of yield, visual quality and nutritional profile, with differences more evident under less favorable climatic conditions and when the cultivars were grown in FS. Compared to EC2.5, the EC3.5 treatment did not affect DY while enhancing firmness, visual quality, and antioxidant compounds (TAC, +8%), and reducing the nitrate content (−47%). The EC4.5 treatment reduced FY and DY and the antioxidant content. Despite seasonal climatic condition variability, FS and the moderate salinity level of NS (3.5 dS m−1) can be suggested as optimum.
机译:为了定义在无土系统中获得高品质婴儿叶火箭的最佳养分管理方法,本研究着重于在温室中生长的两种野生火箭基因型(“自然”和“自然”)在意大利南部的两个生长条件下(秋冬(AW)和冬春(WS)),使用两个无土栽培系统(SCS),两个NS的电导率值(EC)。在AW周期中,使用的SCS为浮动系统(FS)和落潮与流量系统(EFS),EC值为2.5和3.5 dS m -1 (EC2.5; EC3.5)和WS周期的3.5和4.5 dS m -1 (EC3.5; EC4.5)。评价了产量,生物物理,生理和营养特性。鲜重(FY)(2.25 vs.1.50 kg m -2 )和干(DY)(230.6 vs. 106.1 gm -2 )的重量产量,叶片硬度(干燥)物质,104.3 vs. 83.2 g kg -1 FW;比叶面积,34.8 vs. 24.2 g cm −2 )和抗氧化剂化合物(维生素C,239.0 vs. 152.7) mg kg -1 FW;总酚,997 vs. 450 mg GAE mg kg -1 FW;总葡萄糖苷-GLSs,1,078.8 vs. 405.7 mg kg - 1 DW;总抗氧化剂能力-TAC,11,534 vs.8,637μmoleq trolox kg -1 FW)和较低的硝酸盐(1,470 vs.3,460 mg kg -1 > FW)是在WS条件下获得的。 GLS谱上的季节差异很明显:仅在WS条件下表达了一些脂肪族GLS(葡糖萘,葡糖苷)和吲哚4-OH-葡糖苷,而吲哚葡糖苷仅在AW时期检测到。与EFS相比,FS改善了叶片的硬度,视觉质量,抗氧化剂含量(TAC,+ 11.6%)并减少了硝酸盐叶片的积聚(-37%)。在产量,视觉质量和营养状况方面,“ Naturelle”的表现均优于“ Naturelle”,在气候条件较差的条件下以及在FS中种植该品种时,差异更为明显。与EC2.5相比,EC3.5处理在增强硬度,视觉质量和抗氧化剂(TAC,+ 8%)并减少硝酸盐含量(-47%)的同时,不影响DY。 EC4.5处理降低了FY和DY以及抗氧化剂含量。尽管季节性气候条件存在变化,但建议将FS和中度盐度水平的NS(3.5 dS m -1 )设置为最佳。

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