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Tomato Yield, Quality, Mineral Composition and Antioxidants as Affected by Beneficial Microorganisms Under Soil Salinity Induced by Balanced Nutrient Solutions

机译:平衡营养液诱导土壤盐分下有益微生物对番茄产量,品质,矿物质组成和抗氧化剂的影响

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With the aim of assessing the effects of beneficial microorganisms on greenhouse tomato “plum” grown under salinity conditions, research was carried out in southern Italy from summer to winter, by comparing two arbuscular mycorrhizal fungi (AMF) based formulates (Rizotech Plus, Myco Apply DR) and a non-inoculated control, in factorial combination with four soil electrical conductivities (1.5, 3.0, 4.5, 6.0 mS·cm ?1 EC). The highest root colonization was 83% at 3.0 mS·cm ?1 under AMF-based treatments and 34% at 1.5 mS·cm ?1 in non-treated control; the latter attained lower values than AMF treatments at any soil EC. Harvest occurred 3.5 days earlier in control plants, six days earlier under 6.0 mS·cm ?1 EC compared to 1.5 mS·cm ?1 . The inoculated plants always showed higher yield than the control ones and the highest production at 4.5 mS·cm ?1 EC; control plants attained the highest yield under 3.0–4.5 mS·cm ?1 EC. The highest values of most fruit quality indicators, mineral elements and antioxidant compounds and activity were recorded under AMF-based formulates inoculation and 6.0 mS·cm ?1 soil EC. Beneficial microorganisms proved to be an effective environmentally friendly tool for improving tomato yield and quality performances in both normal and soil salinity conditions.
机译:为了评估有益微生物对盐度条件下生长的温室番茄“李子”的影响,从夏季到冬季在意大利南部进行了研究,方法是比较两种基于丛枝菌根真菌(AMF)的配方(Rizotech Plus,Myco Apply DR)和未接种的对照,并与四种土壤电导率(1.5、3.0、4.5、6.0 mS·cm?1 EC)结合。在基于AMF的处理下,最高根定植在3.0 mS·cm -1时为83%,而在未处理对照中在1.5 mS·cm -1时为34%。后者在任何土壤EC上均比AMF处理的值低。对照植物提前3.5天收获,在6.0 mS·cm -1 EC下收获提前了六天,而1.5 mS·cm -1 EC提前了六天。接种后的植物总是表现出比对照更高的产量,在4.5 mS·cm?1 EC时产量最高。对照植物在3.0-4.5 mS·cm?1 EC下达到最高产量。在基于AMF的配方接种和6.0 mS·cm?1的土壤EC下,记录了大多数水果质量指标,矿物质元素和抗氧化剂化合物以及活性的最高值。有益微生物被证明是在正常和土壤盐分条件下均可提高番茄产量和品质的有效环保工具。

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