Page 189 - 《广西植物》2026年第1期
P. 189
1 期 王宇等: 濒危植物珙桐根际微生物和根内生菌群落特点及功能分析 1 8 5
QUAST Cꎬ PRUESSE Eꎬ YILMAZ Pꎬ et al.ꎬ 2012. The SILVA [J]. 中国生态农业学报 (中英文)ꎬ 31(4): 516-529.]
ribosomal RNA gene database project: improved data XIANG X Yꎬ RUAN S Rꎬ ZHANG Yꎬ et al.ꎬ 2025. Community
processing and web ̄based tools [ J ]. Nucleic Acids characteristics and functional diversity of the rhizosphere
Researchꎬ 41(D1): D590-D596. microbiota and endophyte from Pinus dabeshanensis [ J].
RAMETTE Aꎬ 2007. Multivariate analyses in microbial ecology: Guihaiaꎬ 45(1): 31- 43. [项小燕ꎬ 阮思睿ꎬ 张颖ꎬ 等ꎬ
Multivariate analyses in microbial ecology [ J ]. FEMS 2025. 大别山五针松根际微生物和内生菌群落特征及功
Microbiology Ecologyꎬ 62(2): 142-160. 能多样性 [J]. 广西植物ꎬ 45(1): 31-43.]
SEGATA Nꎬ IZARD Jꎬ WALDRON Lꎬ et al.ꎬ 2011. YANG X Wꎬ HUANG X Xꎬ HU Xꎬ et al.ꎬ 2024. Changes in
Metagenomic biomarker discovery and explanation [ J ]. rhizosphere and bulk soil microbial communities of tableland
Genome Biologyꎬ 12: R60. tea garden and ancient tea plantation in southwest China
SHI S Qꎬ QIN H Gꎬ ZHANG J Jꎬ et al.ꎬ 2022. Characteristics [J]. Agronomyꎬ 14(7): 1388.
and functional analysis of rhizosphere bacterial communities YANG Y Zꎬ LI Yꎬ HAO Kꎬ et al.ꎬ 2024. Microbial community
in endangered Pinus dabeshanensis [J]. Chinese Bulletin of composition and co ̄occurrence network analysis of the
Botanyꎬ 57(4): 457-467. [石水琴ꎬ 秦华光ꎬ 张静静ꎬ 等ꎬ rhizosphere soil of the main constructive tree species in Helan
2022. 濒危植物大别山五针松根际细菌群落特征与功能 Mountain of Northwest China [ J ]. Scientific Reportsꎬ
分析 [J]. 植物学报ꎬ 57(4): 457-467.] 14(1): 24557.
SLIPPERS Bꎬ WINGFIELD M Jꎬ 2007. Botryosphaeriaceae as YANG Y Jꎬ HE X Dꎬ HE Y Mꎬ et al.ꎬ 2024. Study on
endophytes and latent pathogens of woody plants: diversityꎬ population and mulberry parasitics of Davidia involucrata
ecology and impact [J]. Fungal Biology Reviewsꎬ 21(2/ 3): var. vilmoriniana in Baima Snow Mountain Nature Reserve
90-106. [J]. Forestry Constructionꎬ 42(4): 21-27. [杨永军ꎬ 和向
SUN Xꎬ LIN Y Lꎬ LI B Lꎬ et al.ꎬ 2020. Analysis and function 东ꎬ 和银美ꎬ 等ꎬ 2024. 白马雪山自然保护区光叶珙桐种
prediction of soil microbial communities of Cynomorium 群及桑寄生调查研究 [J]. 林业建设ꎬ 42(4): 21-27.]
songaricum in two daodi ̄origins [ J]. Acta Pharmaceutica ZHANG J Xꎬ LI J Qꎬ LIAN X Rꎬ 1994. Morphological and
Sinicaꎬ 55(6): 1334-1344. [孙晓ꎬ 林余霖ꎬ 李葆莉ꎬ 等ꎬ biological characteristics of Davidia involucrata [J]. Journal
2020. 干旱区沙生药用植物锁阳土壤微生物群落分析与 of Beijing Forestry Universityꎬ 16(4): 33-37. [张家勋ꎬ 李
功能预测 [J]. 药学学报ꎬ 55(6): 1334-1344.] 俊清ꎬ 廉秀荣ꎬ 1994. 珙桐的形态和生物学特性 [J]. 北
VENKATACHALAM Sꎬ JABIR Tꎬ VIPINDAS P Vꎬ et al.ꎬ 京林业大学学报ꎬ 16(4): 33-37.]
2024. Ecological significance of Candidatus ARS69 and ZHANG Q Hꎬ GUO Q Sꎬ XU D Yꎬ et al.ꎬ 2000. Influence of
Gemmatimonadota in the arctic glacier foreland ecosystems climate changes on geographical distribution of Davidia
[ J ]. Applied Microbiology and Biotechnologyꎬ involucrataꎬ the precious and endangered species native to
108(1): 128. China [J]. Scientia Silvae Sinicaeꎬ 36(2): 47-52. [张清
VURUKONDA S S K Pꎬ GIOVANARDI Dꎬ STEFANI Eꎬ 华ꎬ 郭泉水ꎬ 徐德应ꎬ 等ꎬ 2000. 气候变化对我国珍稀濒
2018. Plant growth promoting and biocontrol activity of 危树种———珙桐地理分布的影响研究 [J]. 林业科学ꎬ
Streptomyces spp. as endophytes [J]. International Journal of 36(2): 47-52.]
Molecular Sciencesꎬ 19(4): 952. ZHANG Yꎬ WANG Pꎬ MENG Yꎬ et al.ꎬ 2024. Ecological
WANG Bꎬ HUANG S Yꎬ LI Z Cꎬ et al.ꎬ 2022. Factors driving stoichiometric characterization of Davidia involucrata in
the assembly of prokaryotic communities in bulk soil and Wumeng Mountion National Nature Reserve of Yunnan
rhizosphere of Torreya grandis along a 900 ̄year age gradient Province [J]. Journal of Gansu Agricultural Universityꎬ 59
[J]. Science of the Total Environmentꎬ 837: 155573. (1): 243-251. [张燕ꎬ 王平ꎬ 孟月ꎬ 等ꎬ 2024. 云南乌蒙
WANG X Sꎬ LIAN Y Hꎬ GUO Hꎬ et al.ꎬ 2023. Effects of wheat/ 山国家级自然保护区珙桐林生态化学计量特征 [J]. 甘
safflower intercropping on rhizosphere microbial community 肃农业大学学报ꎬ 59(1): 243-251.]
function and structure [ J ]. Chinese Journal of Eco ̄
Agricultureꎬ 31(4): 516-529. [王香生ꎬ 连延浩ꎬ 郭辉ꎬ 等ꎬ (责任编辑 周翠鸣)
2023. 小麦红花间作系统根际微生物群落结构及功能分析

