2</sub> 排放量增加,全球變暖問題嚴(yán)重威脅生態(tài)系統(tǒng)的安全。叢枝菌根真菌可以與80% 陸生植物形成共生系統(tǒng),具有提高植物抗逆性、促進(jìn)植物生長等作用,具有良好的應(yīng)用前景,然而叢枝菌根真菌在實(shí)際應(yīng)用過程中存在對(duì)土壤碳儲(chǔ)量的影響效果不穩(wěn)定、應(yīng)用技術(shù)不成熟等問題,嚴(yán)重限制其應(yīng)用。從叢枝菌根真菌影響土壤碳的固定和分解2方面,對(duì)其影響植物光合作用、養(yǎng)分在植物體內(nèi)吸收轉(zhuǎn)化、根系附近微生物群落活性、根系附近土壤碳的分解進(jìn)行系統(tǒng)梳理,并對(duì)實(shí)際應(yīng)用中存在的問題進(jìn)行說明,以期為叢枝菌根真菌在土壤碳平衡方面的研究提供理論支撐。-龍?jiān)雌诳W(wǎng)" />

特黄三级爱爱视频|国产1区2区强奸|舌L子伦熟妇aV|日韩美腿激情一区|6月丁香综合久久|一级毛片免费试看|在线黄色电影免费|国产主播自拍一区|99精品热爱视频|亚洲黄色先锋一区

叢枝菌根真菌對(duì)土壤碳平衡的影響研究進(jìn)展

  • 打印
  • 收藏
收藏成功


打開文本圖片集

中圖分類號(hào):S144 文獻(xiàn)標(biāo)志碼:A 文章編號(hào):1008-0864(2025)06-0170-14

Research Progresson Effect of Arbuscular MycorrhizalFungi on SoilCarbon Balance

ZHANG Ying',GU Haihong 1,2,3* ,AI Yanjun1,LI Fuping1,2,WU Zijing1

(1.CollegeofiningEngineering,NorthhinaUnivesityofieneandTechnoogy,HebeiTngshan63210,China;bi

IndustrialTechnologyInstituteofMineEcologicalRemediation,HebeiTangshanO6321,China;3.HebeiProvinceKeyLaboratory

ofMiningDevelopmentandSecurityTechnology,CollaborativeInnovationCenterofGreenDevelopmentandEcologicalRestoatio ofMineralResources,TangshanKeyLaboratoryofResourcesandEnvironmentalRemoteSensing,NorthChinaUniversityof Science and Technology,Hebei Tangshan O63210,China)

Abstract:Due to the increasing CO 2 emissions from human activities,there is a pressing issue of global warming that poses a serious threat to the securityof ecosystems.Arbuscular mycorhizal fungi(AMF)have been able to form symbiotic systems with 80% of land plants,which have improved plant stress resistance and promoted plant growth, and have good application prospects.However,theefects ofAMFonsoilcarbonstorage have been unstable and the application technology have been immature,which have seriously limited their application.The impact of AMFon both the fixation and decomposition of soil carbon were systematically examined including how AMF influences plant photosynthesis,nutrientabsorptionand transformation withinplants,microbial communityactivity nearrot systems,andsoilcarbondecompositioninproximitytoroots.Furthermore,itaddressd existing issues inpractical applications with the aim of providing theoretical support for research on soil carbon balance through AMF.

KeyWords:arbuscular mycorrhizalfungi(AMF);soilcarbon balance;glomalin-related soil protein;carbon content

全球碳循環(huán)相關(guān)研究表明,在生態(tài)系統(tǒng)中土壤固定的碳是大氣中碳的3.3倍,二氧化碳( CO2 )含量升高導(dǎo)致全球氣候變暖,是目前全球面臨的主要環(huán)境問題之一。(剩余35426字)

monitor