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首页> 外文期刊>Crop and Pasture Science >Soil management for irrigated vegetable production. I. The growth of processing tomatoes following soil preparation by cultivation, zero-tillage and an in situ-grown mulch
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Soil management for irrigated vegetable production. I. The growth of processing tomatoes following soil preparation by cultivation, zero-tillage and an in situ-grown mulch

机译:灌溉蔬菜生产的土壤管理。 I.通过耕作,零耕和原地覆盖覆盖物整地后加工番茄的生长

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A sequence of lettuce and tomato crops was grown in a field experiment on a sandy loam soil in order to study the relationship between soil tillage and plant growth under the near optimal water and nutrient conditions which are characteristic of vegetable production. This paper describes the performance of processing tomato crops, grown over two seasons under a range of soil management systems. The soil management systems included a cultivated and a zero-tillage treatment, as well as a zero-tillage treatment which followed a crop of subterranean clover (Trifoliurn subterraneum L.). The subterranean clover was sown in autumn and senesced in early summer to form an in-situ mulch. The bulk density of the soil in the zero-tillage treatment was high, and this was associated with a large reduction in vegetative growth, compared with the cultivated treatment. The bulk density of the soil was also high in the treatment where the subterranean clover was grown, but the vegetative growth of tomatoes was equal to that in the cultivated treatment. Despite the large differences in vegetative growth among treatments, there was no significant difference in the fruit yield. These results show that processing tomatoes can be successfully grown under zero-tillage when irrigation and fertilizer are well managed, and that vegetative growth and fruit yield are poorly correlated. The in-situ mulch of subterranean clover improved the physical conditions of the soil compared to the zero-tillage treatment, successfully controlled weeds and reduced soil erosion, but at the cost of having land out of production during the winter.
机译:在田间试验中,在砂壤土上种植了一系列莴苣和番茄作物,以研究在接近最佳水分和养分条件下土壤耕作与植物生长之间的关系,这是蔬菜生产的特征。本文介绍了在一系列土壤管理系统下两个季节种植的番茄作物的加工性能。土壤管理系统包括耕作和零耕种处理,以及在地下三叶草(Trifoliurn subterraneum L.)种植后的零耕种处理。地下三叶草在秋天播种,并在初夏衰老,形成原位覆盖物。与耕作相比,零耕法处理土壤的堆积密度高,这与营养生长的大幅减少有关。在地下三叶草生长的处理中,土壤的容重也很高,但番茄的营养生长与耕作的处理相等。尽管不同处理之间营养生长的差异很大,但果实产量没有显着差异。这些结果表明,如果灌溉和施肥管理得当,则可在零耕条件下成功地加工番茄,而营养生长和水果产量之间的相关性很差。与零耕法相比,地下三叶草的覆盖改善了土壤的物理条件,成功控制了杂草并减少了土壤侵蚀,但代价是冬季土地被淘汰。

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