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Diversifying monoculture crops by incorporating prairie buffer strips

机译:通过结合草原缓冲带使单一种植作物多样化

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摘要

Monoculture crop production and prevailing farming practices have greatly reduced perennial plants on the landscape and nearly eliminated native Iowa prairie vegetation. The STRIPs (Science-based Trials of Row crops Integrated with Prairies) project is a watershed-scale experiment at the Neal Smith National Wildlife Refuge, in Jasper County, Iowa, US, in which strips of prairie vegetation were planted within watersheds of corn (Zea mays) and soybean (Glycine max) production to aid in soil and water conservation. The project includes 12 0.5- to 3.2-ha watersheds. Nine watersheds included buffer strips in one of three design treatments that varied the number and position of strips and/or the proportion of the watershed converted to buffer and three watersheds were 100% crop. The present study investigated: (1) If the design of prairie buffer strips influenced their vegetation; (2) If the vegetation of prairie buffer strips shifted over time; (3) If prairie buffer strips caused a weed problem in adjacent crop fields. From 2008-2011, the identity and percent cover of plant species within the buffer strips were surveyed, and from 2009-2011, the identity and percent cover of weed species within the cropped areas of the watersheds were surveyed. Differences among treatments and among years in plant species diversity, percent cover, and composition were analyzed using ANOVA and NMS. The design of buffer strips did not influence plant species diversity or composition; however, buffer strip vegetation did shift over time. In 2008, the strips had 38 species (in 6 m2) with 37% of the total plant cover composed of perennial species and 22% composed of native perennial species. By 2011, the strips had 55 species (in 6 m2) with 90% of the total plant cover composed of perennial species and 58% composed of native perennial species. In addition, NMS analyses indicated that the buffer strip plant community shifted from annual to perennial species. Within the crop, weed species richness and percent cover did not differ among watershed treatments, regardless of whether watersheds contained buffer strips or not. Prairie buffer strips greatly increased plant diversity in the watersheds; 380% more species were found in 6 m2 of prairie buffer than in 6 m2 of cropland. Within four years of establishment, the buffer strip vegetation was predominantly perennial and native species, the target vegetation for both ecohydrological functions (i.e., erosion control) and for conservation. Furthermore, weed species richness or prevalence did not differ between watersheds that incorporated prairie buffer strips versus 100% crop watersheds. Therefore, converting 10-20% of arable cropland to prairie buffer strips successfully reintroduced perennial species and conserved native Iowa prairie without causing a weed problem in adjacent crops.
机译:单作作物的生产和流行的耕作方式大大减少了景观上的多年生植物,并几乎消除了爱荷华州的草原原始植被。 STRIPs(与大草原相结合的基于科学的农作物试验)项目是在美国爱荷华州贾斯珀县的尼尔史密斯国家野生动物保护区进行的分水岭规模试验,其中,在玉米分水岭内种植了大草原植被带(玉米和大豆(Glycine max)的生产有助于水土保持。该项目包括12个0.5-3.2公顷的流域。九个流域在三种设计处理之一中包括缓冲带,这些设计改变了带的数量和位置和/或流域转换为缓冲带的比例,三个流域为100%作物。本研究调查:(1)草原缓冲带的设计是否影响了植被; (2)草原缓冲带植被是否随时间推移而发生变化; (3)如果草原缓冲带在相邻的农作物田中引起杂草问题。从2008年至2011年,对缓冲带内植物物种的身份和覆盖率进行了调查,从2009年至2011年,对流域裁剪区域内的杂草物种的身份和覆盖率进行了调查。使用方差分析和NMS分析了处理之间以及植物种类多样性,年覆盖率和组成年限之间的差异。缓冲带的设计不影响植物物种的多样性或组成。但是,缓冲带植被确实会随时间推移而移动。 2008年,这些地带有38种(6平方米),占总植物覆盖率的37%由多年生植物组成,22%由本地多年生植物组成。到2011年,这些地带已拥有55种(6平方米),其中植物总覆盖率的90%由多年生植物组成,而58%由本地多年生植物组成。此外,NMS分析表明,缓冲带植物群落从一年生物种转变为多年生物种。在作物内部,无论分水岭是否包含缓冲带,杂草物种的丰富度和覆盖率在分水岭处理之间没有差异。草原缓冲带大大增加了流域的植物多样性;在6平方米的草原缓冲区中发现的物种比在6平方米的农田中多出380%。在建立的四年内,缓冲带植被主要是多年生和本地物种,既是生态水文功能(即控制侵蚀)又是保护的目标植被。此外,在结合了草原缓冲带的流域和100%的作物流域之间,杂草物种的丰富度或流行率没有差异。因此,将10%至20%的耕地转换为草原缓冲带后,便成功地重新引入了多年生物种并保护了爱荷华州的原始草原,而不会在相邻作物中引起杂草问题。

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    Hirsh, Sarah Marie;

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  • 年度 2012
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