尕海濕地植物多樣性與生態(tài)系統(tǒng)多功能性關(guān)系沿水鹽梯度的變化
中圖分類號(hào):X171.1;Q948 文獻(xiàn)標(biāo)識(shí)碼:A 文章編號(hào):1007-0435(2025)07-2262-15
doi:10.11733/j.issn.1007-0435.2025.07.021
引用格式:,等.尕海濕地植物多樣性與生態(tài)系統(tǒng)多功能性關(guān)系沿水鹽梯度的變化[J].草地學(xué)報(bào), 2025,33(7) :2262—2276 LONGZHU Duojie, ZHANG Xu-ping,LIU Qiang,et al. Relationships Between Plant Diversity and Ecosystem MultifunctionalityAlongaWater-Salt Gradientinthe Gahai Wetland[J].Acta AgrestiaSinica,2O25,33(7):22622276
Abstract:The purpose of this study was to explore the relationship between plant diversity and ecosystem multi functionality. Taking Qinghai Delingha Gahai National Wetland Park as the object,K-means clustering method was used to divide three water and salt gradients of high,medium and low,and the changes of environmental factors,plant species diversity,functional diversity and ecosystem multifunctionality were analyzed.The results showed that there were significant diferences in plant diversity index and functional richness index under three Water and salt gradients.The value of low water and low salt environment was the largest,and the value ofhigh waterand high salt environment was the smalest.Thecorelation between plant diversity and functional diversity decreased with the decrease of water and salt gradient. Among the abiotic factors,soil conductivity played a decisive role in the multifunctionalityof the ecosystem,and soil moisture content indirectlyafects it. Among the biological factors,the efect of functional diversityon ecosystem multifunctionality is greater than thatof species diversity.In summary,the water-salt gradient significantly affects plant diversity and ecosystem function,which is of great significance to the protection of Gahai wetland.
Key Words:GahaiLake; Water-salt gradient;Plantdiversity;Plantcommunitysuccesion;Ecosystemmultifunctionality
濕地作為水陸生態(tài)系統(tǒng)相互作用過(guò)程中形成的一種過(guò)渡性自然綜合體,是地球上單位面積提供最豐富生態(tài)服務(wù)價(jià)值、最具生物多樣性保護(hù)意義的生態(tài)系統(tǒng)之—[1-3]。(剩余20711字)
-
-
- 草地學(xué)報(bào)
- 2025年07期
- 四川省農(nóng)區(qū)青貯飼料質(zhì)量調(diào)查分析...
- WRKY基因家族在植物中的研究...
- 不同多度等級(jí)物種對(duì)高寒草甸物種...
- 氮添加對(duì)中國(guó)草地生物量和土壤有...
- 西藏野生垂穗披堿草CnC0R4...
- 象草PHR家族基因的鑒定及表達(dá)...
- 干旱脅迫對(duì)多根蔥種子超微結(jié)構(gòu)及...
- 鹽堿地紫花首蓿光合熒光參數(shù)與品...
- 雨淋對(duì)苜蓿干燥過(guò)程中營(yíng)養(yǎng)品質(zhì)及...
- 人工草地苔蘚結(jié)皮生長(zhǎng)增強(qiáng)了土壤...
- 紫花首蓿氮效率差異對(duì)其根際土壤...
- 生草覆蓋對(duì)有機(jī)弼猴桃園土壤有機(jī)...
- 人工輔助恢復(fù)對(duì)三江源區(qū)草地土壤...
- 不同施肥模式對(duì)甘南亞高山草甸植...
- 不同形態(tài)氮添加對(duì)晉北農(nóng)牧交錯(cuò)帶...
- 基于無(wú)人機(jī)獲取草地植物地上生物...
- 荒漠草原土壤碳分布特征及有機(jī)碳...
- 柴達(dá)木梭梭林自然保護(hù)區(qū)典型植物...
- 基于生理生化指標(biāo)8份飼用小黑麥...
- 23份紫花首蓿材料萌發(fā)期的耐鹽...
- 尕海濕地植物多樣性與生態(tài)系統(tǒng)多...
- 施氮水平對(duì)植絲式混合草坪生長(zhǎng)及...
- 雜交結(jié)縷草耐蔭品種的篩選及綜合...
- 寧夏銀北地區(qū)不同飼用燕麥品種適...
- 氣候變化背景下黑紫披堿草和紫芒...
- 新疆草地地上生物量時(shí)空變化及對(duì)...
- 新疆草地生態(tài)系統(tǒng)土壤保持服務(wù)評(píng)...
- 前兩輪草原生態(tài)補(bǔ)獎(jiǎng)?wù)邔?shí)施績(jī)效...
- 施用復(fù)合微生物菌劑對(duì)燕麥生長(zhǎng)和...
- 干燥方式與時(shí)間對(duì)天然牧草營(yíng)養(yǎng)品...
- 纖維降解菌對(duì)水稻秸稈青貯發(fā)酵品...
- 不同菌酶處理對(duì)水稻秸稈青貯品質(zhì)...
- 植物根際促生菌(PGPR)對(duì)高...
- 添加連翹對(duì)紫花首蓿青貯品質(zhì)的影...
- 劉割間隔對(duì)王草農(nóng)藝性狀和纖維素...