Effect of no-till followed by crop diversification on the soil microbiome in a boreal short cereal rotation

IF 5.1 1区 农林科学 Q1 SOIL SCIENCE Biology and Fertility of Soils Pub Date : 2024-02-06 DOI:10.1007/s00374-024-01797-x
Hannu Fritze, Tero Tuomivirta, Luigi Orrù, Loredana Canfora, Jessica Cuartero, Margarita Ros, Jose Antonio Pascual, Raúl Zornosa, Marcos Egea-Cortines, Kristiina Lång, Janne Kaseva, Krista Peltoniemi
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Abstract

Diversification of agricultural practices, including changes in crop rotation, intercropping or cover cropping, influence the soil microbiome. Here the impact of tillage and crop diversification on the soil microbiome is reported, being one of the few boreal studies. The field experiment consisted of four treatments with four replications all having a short cereal rotation practice namely an oat (Avena sativa) – spring barley (Hordeum vulgare) – wheat (Triticum aestivum) rotation for the past 10 years until spring 2018. During that period two of the treatments were conventionally tilled with moldboard ploughing whereas the other two were no-tillage treatments. From the growing season 2018 until fall 2020 the main crop in all treatments was spring barley. The first conventional tillage treatment was diversified with English ryegrass (Lolium perenne) as an undersown cover crop for the next three growing seasons. The first no-tillage treatment continued with spring barley only. The second conventional tillage and no-tillage treatment had winter rapeseed in rotation in 2019. Bulk soils were sampled in May 2018 before diversification and then in October 2018, 2019, and 2020. The results showed a clear effect of tillage on the beta-diversity of the soil microbiome and an increase in fungal richness. Barley monoculture interrupted with winter rapeseed resulted in a minor change of the fungal and bacterial community composition. Other fungal and bacterial alpha diversity measures did not react to tillage or diversification nor did the gene copy abundances involved in the N cycle. In conclusion tillage had a profound effect on the soil microbiome hindering impact of the diversification.

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免耕和作物多样化对北方短谷物轮作中土壤微生物群的影响
农业生产方式的多样化,包括轮作、间作或覆盖种植的改变,都会影响土壤微生物组。本文报告了耕作和作物多样化对土壤微生物组的影响,这是为数不多的北方研究之一。田间试验由四个重复的四个处理组成,所有处理在过去 10 年里都采用了短谷物轮作方法,即燕麦(Avena sativa)-春大麦(Hordeum vulgare)-小麦(Triticum aestivum)轮作,直至 2018 年春季。在此期间,其中两个处理采用传统的模犁耕作,而另外两个处理则为免耕处理。从 2018 年生长季到 2020 年秋季,所有处理的主要作物都是春大麦。在第一个常规耕作处理中,英国黑麦草(Lolium perenne)作为未播覆盖作物在接下来的三个生长季中进行了多样化种植。第一个免耕处理继续只种植春大麦。第二个常规耕作和免耕处理在 2019 年轮作冬油菜。在多样化之前的 2018 年 5 月以及 2018 年 10 月、2019 年和 2020 年,对大块土壤进行了取样。结果显示,耕作对土壤微生物群的β-多样性有明显影响,真菌丰富度有所增加。大麦单作与冬油菜间作导致真菌和细菌群落组成发生轻微变化。其他真菌和细菌的α多样性测量值对耕作或多样化没有反应,参与氮循环的基因拷贝丰度也没有反应。总之,耕作对土壤微生物群有着深远的影响,阻碍了多样化的效果。
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来源期刊
Biology and Fertility of Soils
Biology and Fertility of Soils 农林科学-土壤科学
CiteScore
11.80
自引率
10.80%
发文量
62
审稿时长
2.2 months
期刊介绍: Biology and Fertility of Soils publishes in English original papers, reviews and short communications on all fundamental and applied aspects of biology – microflora and microfauna - and fertility of soils. It offers a forum for research aimed at broadening the understanding of biological functions, processes and interactions in soils, particularly concerning the increasing demands of agriculture, deforestation and industrialization. The journal includes articles on techniques and methods that evaluate processes, biogeochemical interactions and ecological stresses, and sometimes presents special issues on relevant topics.
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