大狼毒入侵對滇西北亞高山草甸土壤-植物碳氮磷生態(tài)化學(xué)計(jì)量的影響
中圖分類號:S153 文獻(xiàn)標(biāo)識碼:A 文章編號:1007-0435(2025)05-1523-11
Abstract:Exploring the invasion of Euphorbia jolkinii Boiss.in the alpine meadows of northwest Yunnan can provide a basis for the management and restoration of alpine meadows. This article took the invasion of E jolkinii into the meadow ofthe subalpine mountains in northwest Yunnan as the research object.Through field investigation and indoor analysis,the relationship between diferent degrees of invasion (moderate,severe, extremely severe)and the carbon(C),nitrogen(N),phosphorus(P) content and ecological stoichiometry of the soil plant system was studied. The results showed that the invasion of E jolkinii increased soil organic C, total N,and total P content by 8.8% to 21.6% , 18.8% to 26.8% ,and 13.4% to 49.9% ,respectively,and led to an increase in plant organic C content while reducing total and total P content;The soil C:N and N:P decreased,while the plant C:N and C:P increased;Among them,the minimum value of soil C:N is 27.00, and the maximum value of N:P is O.48, indicating that soil nutrients are mainly limited by N ,and P element is relatively abundant.Correlation analysis found that the Grassvegetation cover index(GDI) was significantly negatively correlated with soil C:N and microbial biomass N,while significantly positively correlated with plant N content,indicating that GDI is constrained by N element. In summary,the invasion of E :jolkinii can alter the nutrient content of soil and plants in the subalpine grasslands of northwest Yunnan,leading to soil nitrogen being the main limiting factor for their productivity.
KeyWords:Subalpine Meadow;Euphorbia jolkinii Boiss; Invasion Level;SoilNutrients;Ecological Stoichi ometry
滇西北地區(qū)位于青藏高原東南部、橫斷山區(qū)的核心地帶,該地區(qū)的植物多樣性極為豐富[1]。(剩余14965字)
- 增溫和施氮對無芒隱子草非根際、...
- 水分和氮磷添加對不同退化程度草...
- 不同倒伏性燕麥莖稈強(qiáng)度及其木質(zhì)...
- 石斛屬燈籠組物種葉綠體基因組特...
- 不同首蓿-糧食作物(飼草)輪作...
- 長期排水降低若爾蓋高寒泥炭地土...
- 不同燕麥品種莖稈抗倒性的綜合評...
- S-誘抗素對低溫干旱復(fù)合脅迫下...
- 低鉀脅迫對飼用燕麥生長和生理生...
- 皮燕麥種質(zhì)資源穗部特征與種子大...
- 短期增溫及氮沉降對青藏高原高寒...
- 藏北地區(qū)適宜種植的6種飼草品質(zhì)...
- 模擬干旱和鹽脅迫對粉黛亂子草種...
- 41份荻、南荻種質(zhì)資源的表型多...
- 不同氮磷施量對河西走廊紫花首蓿...
- 柴達(dá)木輕度鹽堿地不同燕麥品種生...
- 白三葉抗旱種質(zhì)資源篩選及抗旱評...
- 大狼毒入侵對滇西北亞高山草甸土...
- 封育對蒿類荒漠草地土壤團(tuán)聚體穩(wěn)...
- 基于MaxEnt模型的天山雪蓮...
- 減碳視角下北方農(nóng)牧交錯帶農(nóng)業(yè)結(jié)...
- 未提取到文章標(biāo)題">未提取到文章標(biāo)題...
- 牧戶定居對牧區(qū)生活、生產(chǎn)與生態(tài)...
- 甘肅南部地區(qū)10份野生沿階草種...
- 水氮耦合處理對林下鴨茅草產(chǎn)量與...
- 焉耆霍拉山植物群落物種多樣性與...
- 基于MaxEnt與GIS的黃精...
- 踩踏干擾對農(nóng)牧交錯帶風(fēng)景道沿線...
- 基于CNKI數(shù)據(jù)庫利用Cite...
- 草烏頭種子層積過程中內(nèi)源激素變...
- 基于梯度提升回歸樹的三江源地區(qū)...
- 貯藏溫度和芽孢桿菌添加對高丹草...
- 不同比例假藥對王草青貯發(fā)酵品質(zhì)...
- 沼渣基質(zhì)厚度對高羊茅草皮成坪及...
- 不同肥料配施對輕度鹽堿地土壤理...
- 有機(jī)肥替代部分化肥對青貯玉米產(chǎn)...