|Table of Contents|

Diversity of Arbuscular Mycorrhizal Fungi in Different Habitats of Paris polyphylla and Their Correlation With the Environment

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2024年6
Page:
69-78
Research Field:
Publishing date:

Info

Title:
Diversity of Arbuscular Mycorrhizal Fungi in Different Habitats of Paris polyphylla and Their Correlation With the Environment
Author(s):
ZHANG Xiangyu1CHEN Xiaofang2LIU Min1ZHOU Maochang1LI Hengqian1WANG Yong1
(1.Bijie Institute of Traditional Chinese Medicine,Bijie,Guizhou 551700;2.Bijie Medical College,Bijie,Guizhou 551700)
Keywords:
Paris polyphyllaarbuscular mycorrhizal fungidiversityenvironmental relevance
PACS:
S 151.9+4
DOI:
10.11937/bfyy.20232879
Abstract:
Taking the rhizosphere soil and root tissue of Paris polyphylla in different habitats as test materials,high-throughput sequencing and bioinformatics methods were used to study the composition of the AMF community of P.polyphylla in different habitats,and correlation analysis was conducted on soil environmental factors,in order to provide reference for the development of specialized bacterial agents for P.polyphylla and the improvement of cultivation efficiency.The results showed that both NMDS analysis and sample level clustering showed that only WNT was relatively independent,while other samples were interleaved.The diversity of root AMF was ZJG>WNG (DFG),rhizosphere soil was ZJT>WNT>DFT,and the total OTU was 0.The top 11 species with abundance showed a significant positive correlation with ACP,OM,SC,and a significant negative correlation with TP,AP,AK,PPO,TK,pH,URE;The bacteria with positive correlation were all distributed in ZJ samples,and the relationship was more closely related.Through NCBI sequence alignment,strains such as Septoglomus constrictum,Claroideoglomus etunicatum,Acaulospora brasiliensis,Funneliformis mosseae,Scutellospora calospora,and Acaulospora koskei were obtained.The aggregation of AMF was influenced by the interweaving of geographical distance and local environmental factors.The microbial community structure was influenced by the combined effects of altitude,habitat,and soil physicochemical factors.Fungi such as Acaulospora brasiliensis and Funneliformis mosseae were of great significance for the growth and development of P.polyphylla.These strains could be used to develop biological agents to improve the cultivation efficiency of P.polyphylla.

References:

[1]王发园,林先贵,周健民.丛枝菌根与土壤修复[J].土壤,2004,36(3):251-257.[2]王幼珊,张俊伶.中国丛枝菌根真菌的保藏、共享服务与研究利用[J].菌物学报,2019,38(11):1760-1807.[3]HE X H,DUAN Y H,CHEN Y L,et al.A 60-yearjourney of mycorrhizal research in China:Past,presentand future directions[J].Sci Chin Life Sci,2010,53(12):1374-1398.[4]DRIESCHE R G V,CARRUTHERS R I,CENTER T,et al.Classical biological control for the protection of natural ecosystems[J].Biological Control,2010,54(2):S2-S33.[5]MERRILD M P,AMBUS P,ROSENDAHL S,et al.Common arbuscular mycorrhizal networks amplify competition for phosphorus between seedlings and established plants[J].New Phytol,2013,200(1):229-240.[6]PRASAD T K.Role of catalase in inducing chilling tolerance in preemergent maize seedlings[J].Plant Physiol,1997,114(4):1369-1376.[7]GECHEV T,WILLEKENS H,MONTAGU M V,et al.Different responses of tobacco antioxidant enzymes to light and chilling stress[J].J Plant Physiol,2003,160(5):509-515.[8]国家药典委员会.《中华人民共和国药典》(一部)[M].北京:中国医药科技出版社,2020.[9]黄璐琦,肖培根,王永炎.中国珍稀濒危药用植物资源调查[M].上海:上海科学技术出版社,2012.[10]杨永红,戴丽君,何昆鸿,等.土壤营养与人工栽培滇重楼品质相关性评价[J].中药材,2012,35(10):1557-1561.[11]杨永红,严君,刘君英,等.滇重楼根茎腐烂的调查及其主要害虫研究[J].中药材,2009,32(9):1342-1346.[12]李海涛,罗先文,管燕红,等.云南省不同地区滇重楼皂苷含量的对比及影响因子分析[J].中国中药杂志,2014,39(5):803-806.[13]梁月明,苏以荣,何寻阳,等.喀斯特灌丛土壤丛枝菌根真菌群落结构及丰度的影响因子[J].环境科学,2017,38(11):4828-4835.[14]石汝杰,杨敏,郭冬琴,等.不同从枝菌根真菌处理对滇重楼土壤理化性质的影响[J].中国实验方剂学杂志,2020,26(22):77-85.[15]朱芙蓉,周浓,杨敏,等.不同丛枝菌根真菌对滇重楼幼苗根际土壤养分的影响[J].中国实验方剂学杂志,2020,26(22):86-95.[16]赵顺鑫,魏祖晨,李卓蔚,等.不同丛枝菌根真菌菌剂对滇重楼及土壤中营养元素的影响[J].天然产物研究与开发,2021,33:1691-1700.[17]许凌峰,李卓蔚,郭冬琴,等.不同丛枝菌根真菌组合对滇重楼根系生理特性的影响[J].华西药学杂志,2023,38(1):65-69.[18]黎海灵,郭冬琴,杨敏,等.不同丛枝菌根真菌组合对滇重楼光合生理和化学成分的影响[J].中国实验方剂学杂志,2021,27(7):134-143.[19]沈昱翔,陈朝儒,张雪妹,等.丛枝菌根对滇重楼幼苗生长及光合特性的影响[J].作物杂志,2020(4):170-177.[20]赵顺鑫,魏祖晨,李卓蔚,等.丛枝菌根真菌对滇重楼根系活力及药材化学成分的影响[J].华西药学杂志,2021,36(5):510-515.[21]张翔宇,陈晓芳,柳敏,等.不同栽培模式重楼内生真菌、根际真菌多样性与环境因子关联性研究[J].中药材,2023,46(6):1353-1360.[22]陈保冬,李雪静,徐天乐,等.丛枝菌根真菌生物地理学研究进展[J].生态学报,2018,38(4):1167-1175.[23]GAI J P,TIAN H,YANG F Y,et al.Arbuscular mycorrhizal fungal diversity along a Tibetan elevation gradient[J].Pedobiologia,2012,55(3):145-151.[24]梁月明,苏以荣,何寻阳,等.喀斯特灌丛土壤丛枝菌根真菌群落结构及丰度的影响因子[J].环境科学,2017,38(11):4828-4835.[25]林艳,何跃军,何敏红,等.喀斯特植被演替过程土壤丛枝菌根真菌(AMF)多样性[J].生态学报,2019,39(11):4127-4137.[26]姚莉梅,石磊,李海波,等.中国新记录种:巴西无梗囊霉的形态与分子生物学鉴定[J].东北林业大学学报,2020,48(11):117-119,123.[27]汪茜,李冬萍,覃晓娟,等.姜瘟病生防菌幼套近明球囊霉N62的筛选鉴定[J].中国生物防治学报,2022,38(1):267-274.[28]周晓月,袁洁,石琨,等.丛枝菌根真菌对甘薯生物量、根系形态及钾素吸收的影响[J].江苏农业学报,2022,38(4):939-948.[29]张菲,邹英宁,吴强盛.AM真菌摩西管柄囊霉对干旱胁迫下枳抗氧化酶基因表达的影响[J].菌物学报,2019,38(11):2043-2050.[30]濮春娟,李鹏英,周修腾,等.栽培基质酸碱度对甘草生长及菌根效应的影响[J].菌物学报,2019,38(4):504-512.[31]冯宇涵,高翔,宋丛威,等.接种摩西管柄囊霉(Funneliformis mosseae)对大豆净光合速率及产量和品质的影响[J].大豆科学,2020,39(6):926-931.[32]刘泽洲,颜冬,杨爱平,等.丛枝菌根真菌(AMF)对盐碱地韭菜产量及品质的影响[J].北方园艺,2022(16):16-22.

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Last Update: 2024-04-11