首页|植物-土壤反馈对西南亚高山森林4种草本植物种子萌发和幼苗生长的影响

植物-土壤反馈对西南亚高山森林4种草本植物种子萌发和幼苗生长的影响

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种子萌发和初生幼苗生长存活对于植物能否成功定居至关重要,其常受到生物、非生物环境的影响。植物-土壤反馈是植物通过有机质周转、根际效应等影响土壤性质,而土壤性质的变化反过来影响该物种或其他物种的生长、定居以及植物群落组成的一种新的研究概念,对理解物种定居、植被恢复具有重要作用。本研究以西南亚高山森林恢复演替早期常见4种草本优势种为对象,采用室内盆栽实验,从植物-土壤反馈角度探究植物在不同演替阶段土壤中的种子萌发、幼苗生长特征,为科学指导恢复初期群落物种搭配、提高草地生产力提供理论依据。结果表明:小花草玉梅(Anemone rivularis)种子发芽率在自土中显著高于波伐早熟禾(Poa poophagorum)土壤,可能与该物种对土壤硝态氮的较高的利用率和伯克氏菌科细菌相对丰度较大有关。波伐早熟禾幼苗和溚草(Koeleria macrantha)幼苗在小花草玉梅、莓叶委陵菜(Potentilla fragari-oides)土壤中的生长为负反馈,小花草玉梅、莓叶委陵菜土壤中存在较多的被孢霉科真菌,可通过加速凋落物分解、调节根际细菌群落来促进植物生长。溚草、小花草玉梅、莓叶委陵菜幼苗在波伐早熟禾调节土壤中的生长均为负反馈,土壤有机碳、硝态氮可间接调控细菌、真菌群落从而对幼苗生物量产生促进作用。结果显示,草本幼苗比种子更容易出现负反馈,土壤有机碳、有效氮和土壤微生物能直接或间接调控草本植物定居。
Effects of plant-soil feedback on seed germination and seedling growth of four herbaceous species in a sub-alpine forest in Southwest China
Seed germination and seedling growth and survival are important for successful settlement of plants,which are often affected by biotic and abiotic environments.Plant-soil feedback is a new concept in which plants af-fect soil properties through soil organic matter turnover and rhizosphere effect,and such changes in soil properties in turn affect the growth and settlement of this species or other species and plant community composition.It plays an important role in understanding species settlement and vegetation restoration.In this study,we conducted an indoor pot experiment to examine the plant-soil feedbacks across four dominant herbaceous species common in the early restoration and succession of subalpine forests in Southwest China.The characteristics of seed germination and seed-ling growth of plants in soil at different succession stages were explored,aiming to provide theoretical basis for sci-entific guidance in restoring the initial community species pairing and improving grassland productivity.The results showed that the seed germination rate of Anemone rivularis in native soil was significantly higher than that in Poa poophagorum soil,which may be related to its high utilization rate of soil nitrate nitrogen and the high relative abun-dance of Burkholderiaceae bacteria.A negative feedback was found on the growth of Poa poophagorum seedlings and Koeleria macrantha seedlings in the soil of Anemone rivularis and Potentilla fragarioides.There were abundant Mortierellaceae fungi in the soil of Anemone rivularis and Potentilla fragarioides,which can promote plant growth by accelerating litter decomposition and regulating rhizosphere bacterial community.A negative feedback was found on the growth of Koeleria macrantha,Anemone rivularis,and Potentilla fragarioides seedlings in the Poa poophagorum regulated soil.Soil organic carbon and nitrate nitrogen could indirectly regulate bacterial and fungal communities,thus promoting seedling biomass.Our results indicated that herbaceous seedlings were more prone to negative feed-back than seeds.Soil organic carbon,available nitrogen,and soil microorganisms could directly or indirectly regu-late the settlement of herbaceous species.

plant-soil feedbackseed germinationseedlingbiomassbacteriafungi

刘露、赵文强、梁婷、夏瑞雪、刘庆

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中国科学院成都生物研究所,成都 610041

中国科学院大学,北京 100049

铜梁二中,重庆 402560

植物-土壤反馈 种子萌发 初生幼苗 生物量 细菌 真菌

国家自然科学基金重点项目中国科学院山地生态恢复与生物资源利用重点实验室和生态恢复与生物多样性保育四川省重点实验室项目资助

41930645

2024

生态学杂志
中国生态学学会

生态学杂志

CSTPCD北大核心
影响因子:1.439
ISSN:1000-4890
年,卷(期):2024.43(7)