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Soil microbial biomass and enzyme data after six years of cover crop and compost treatments in organic vegetable production

机译:有机蔬菜生产中的覆盖作物和堆肥处理六年后的土壤微生物量和酶数据

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摘要

Cover crops and compost are organic matter inputs that can impact soil health in tillage-intensive, high-input, organic vegetable production systems in the central coast region of California. Data are presented on soil microbial biomass (carbon and nitrogen) and soil enzymes (β-glucosidase, β-glucosaminidase, alkaline phosphatase, aspartase and L-asparaginase and dehydrogenase) from a relatively long-term organic systems experiment in Salinas, California that was focused on lettuce and broccoli production and included eight different certified organic systems. These systems differed in compost inputs, cover cropping frequency, cover crop type, and cover cropping seeding rate. The compost was made from urban yard waste, and the cover crops included rye, a legume-rye mixture, and a mustard mixture planted at two seeding rates (standard rate 1× versus high rate 3×). There were three legume-rye 3× systems that differed in compost inputs (0 versus 15?Mg?ha-1year-1and cover cropping frequency (every winter versus every fourth winter). The data in this article support and augment information presented in the research articles “Cover cropping frequency is the main driver of soil microbial changes during six years of organic vegetable production” (Brennan and Acosta-Martinez, 2017) and “Cover crops and compost influence soil enzymes during 6 years of tillage-intensive, organic vegetable production” (Brennan and Acosta-Martinez, 2018).
机译:覆盖作物和堆肥是有机物质的输入,会影响加利福尼亚州中部沿海地区耕种密集,高投入的有机蔬菜生产系统中的土壤健康。数据来自加利福尼亚州萨利纳斯市一项相对长期的有机系统实验,涉及土壤微生物生物量(碳和氮)和土壤酶(β-葡萄糖苷酶,β-葡萄糖酰胺酶,碱性磷酸酶,天冬氨酸酶和L-天冬酰胺酶和脱氢酶)。专注于生菜和西兰花的生产,并包括八个不同的认证有机体系。这些系统在堆肥投入,覆盖种植频率,覆盖作物类型和覆盖播种率方面有所不同。堆肥由城市院子里的垃圾制成,覆盖作物包括黑麦,豆类-黑麦混合物和芥末混合物,以两种播种率种植(标准比率为1倍,高比率为3倍)。有三种豆科植物-黑麦3×系统的堆肥投入不同(0比15?Mg?ha-1year-1和覆盖种植频率(每年冬季与每四个冬季)。研究文章“在有机蔬菜生产的六年中,农作物的种植频率是土壤微生物变化的主要驱动力”(Brennan和Acosta-Martinez,2017)和“在耕作密集的有机蔬菜的六年中,农作物和堆肥影响土壤酶生产”(Brennan和Acosta-Martinez,2018年)。

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