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豆科植物作为前作作物对有机温室番茄氮素营养和产量的影响

Impact of Legumes as a Pre-Crop on Nitrogen Nutrition and Yield in Organic Greenhouse Tomato.

作者信息

Gatsios Anastasios, Ntatsi Georgia, Celi Luisella, Said-Pullicino Daniel, Tampakaki Anastasia, Savvas Dimitrios

机构信息

Laboratory of Vegetable Crops, Department of Crop Science, Agricultural University of Athens, 11855 Athens, Greece.

Department of Agricultural, Forest and Food Sciences, University of Torino, 10095 Grugliasco, TO, Italy.

出版信息

Plants (Basel). 2021 Mar 2;10(3):468. doi: 10.3390/plants10030468.

Abstract

An organic greenhouse crop of tomato was established in February following cultivation of cowpea (CP) or common bean (CB) for green pod production, or faba bean (FB) for green manuring. The vegetative residues of CP and CB were incorporated to the soil together with farmyard manure (FYM), prior to establishing the tomato crop. The FB plants were incorporated to the soil at anthesis together with either FYM or composted olive-mill waste (CO). Green manuring with FB resulted in higher soil mineral N levels during the subsequent tomato crop and higher tomato fruit yield when combined with FYM, compared to compost. The level of soil mineral N was the main restrictive factor for yield in organic greenhouse tomato. FB for green manuring as preceding crop to tomato increased significantly the level of soil mineral N and tomato yield compared to CB or CP aiming to produce green pods. The lowest tomato yield was obtained when the preceding crop was CB cultivated for green pod production. The soil mineral N was significantly higher when FYM was applied as base dressing compared with CO, despite the higher total N concentration in CO, pointing to slower mineralization rates of CO during tomato cultivation.

摘要

在种植用于生产嫩荚的豇豆(CP)或菜豆(CB),或用于绿肥的蚕豆(FB)之后,于2月建立了一个有机温室番茄作物种植区。在种植番茄作物之前,将豇豆和菜豆的植物残体与农家肥(FYM)一起施入土壤中。蚕豆植株在花期与农家肥或堆肥橄榄渣(CO)一起翻耕入土。与堆肥相比,用蚕豆进行绿肥处理在随后的番茄作物生长期间使土壤矿质氮水平更高,并且与农家肥结合时番茄果实产量更高。土壤矿质氮水平是有机温室番茄产量的主要限制因素。与旨在生产嫩荚的豇豆或菜豆相比,用蚕豆作为番茄的前作进行绿肥处理显著提高了土壤矿质氮水平和番茄产量。当前作是用于生产嫩荚的菜豆时,番茄产量最低。尽管堆肥橄榄渣中的总氮浓度较高,但与堆肥橄榄渣相比,施用农家肥作为基肥时土壤矿质氮显著更高,这表明在番茄种植期间堆肥橄榄渣的矿化速率较慢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc22/8001895/ff4f883b758b/plants-10-00468-g001.jpg

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