首页|窝圈距离影响高寒草甸植物群落结构和土壤养分空间分布

窝圈距离影响高寒草甸植物群落结构和土壤养分空间分布

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窝圈距离是对长期管理强度(牲畜移动)变化的综合描述,反映了长期管理强度(牲畜移动)的变化和草地植物群落之间的功能连接性,能反映牲畜的移动模式和放牧强度。本研究以甘南高寒草甸冬季牧场为研究对象,以窝圈为中心、3 km为半径区域定义为重度放牧(HG),6 km为半径区域定义为中度放牧(MG),9 km为半径区域定义为轻度放牧(LG),研究窝圈距离(以下叙述为放牧强度,远的窝圈距离即低的放牧强度,反之亦然)对草地植物群落结构、土壤理化性质、土壤微生物及土壤酶活性的影响。结果表明:1)地上生物量群落物种丰富度以及可食牧草生物量随着放牧强度增加而降低(P<0。05);2)全钾和可溶性有机氮含量随着放牧强度增加而显著下降(P<0。05);3)土壤微生物量氮含量随着放牧强度显著增加(P<0。05);4)放牧强度对土壤酶活性影响较明显,N-乙酰-β-D-氨基葡萄糖苷酶(NAG)、过氧化物酶(POD)和多酚氧化酶(PPO)活性随着放牧强度增加而降低(P<0。05)。这些结果基本类似于直接放牧强度的试验结果,随着窝圈距离的增大,放牧强度降低,增加了植物群落多样性和可食牧草生物量,也增加了土壤养分的空间分布异质性。因此,窝圈距离可作为反映牲畜在当地景观中移动频次和强度的指标,用以表征放牧强度。
Nest circle distance affects plant community structure and spatial distribution of soil nutrients in alpine meadows
The effects of grazing intensity on grassland vegetation community structure and soil physicochemical properties has been extensively studied. However,very few studies have focused on how grazing intensity affects grassland plant community structure,soil physicochemical properties,soil microorganisms,and soil enzyme activity. This study investigated the effects of circular distance on grassland plant community structure,soil physicochemical properties,soil microorganisms,and soil enzyme activity in the winter pasture of the Gannan Alpine Meadow with a circle as the center and a 3 km radius area defined as heavy grazing (HG),a 6 km radius area defined as moderate grazing (MG),and a 9 km radius defined as light grazing (LG). The results showed that the plant community structures changed significantly and the community height,coverage,and species richness decreased with an increase in grazing intensity (P<0.05). Moreover,the response of soil physical and chemical property indicators to the pit distance varied. The total potassium and soluble organic nitrogen content significantly decreased with an increase in nest distance (P<0.05),while the carbon and nitrogen content in microbial biomass was significantly increased with an increase in litter distance (P<0.05). 4) The nest distance significantly impacts soil enzyme activity. The N-acetyl-beta-D-glucosaminidaseo,peroxidase,and polyphenol oxidase levels decreased with increasing ring distance (P<0.05). These findings indicate that the nest circle distance can affect grassland plant community structure and ecosystem functioning and partially reflects grazing intensity. These results also provide theoretical support for grazing management and sustainable grassland utilization.

nest circle distancegrazing intensityplant community structuresoil physical and chemical propertiessoil microorganismssoil enzyme activity

边金霞、牛小霞、陈娟、徐祎、才让吉、马继红、吴昌顺、王银花

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甘肃省农业科学院经济作物与啤酒原料研究所,甘肃兰州 730070

兰州大学生态学院,甘肃兰州 730000

甘肃省合作市草原工作站,甘肃合作 747000

窝圈距离 放牧强度 植物群落结构 土壤理化性质 土壤微生物 土壤酶活性

甘肃省草原监测评价科技支撑项目

GSZYTC-ZCJC-21009

2024

草业科学
中国草原学会 兰州大学草地农业科技学院

草业科学

CSTPCD北大核心
影响因子:0.854
ISSN:1001-0629
年,卷(期):2024.41(9)