Intraspecific plant-soil feedback in four tropical tree species is inconsistent in a field experiment.

IF 2.4 2区 生物学 Q2 PLANT SCIENCES American Journal of Botany Pub Date : 2024-05-15 DOI:10.1002/ajb2.16331
Jenalle L Eck, Lourdes Hernández Hassan, Liza S Comita
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Abstract

Premise: Soil microbes can influence patterns of diversity in plant communities via plant-soil feedbacks. Intraspecific plant-soil feedbacks occur when plant genotype leads to variations in soil microbial composition, resulting in differences in the performance of seedlings growing near their maternal plants versus seedlings growing near nonmaternal conspecific plants. How consistently such intraspecific plant-soil feedbacks occur in natural plant communities is unclear, especially in variable field conditions.

Methods: In an in situ experiment with four native tree species on Barro Colorado Island (BCI), Panama, seedlings of each species were transplanted beneath their maternal tree or another conspecific tree in the BCI forest. Mortality and growth were assessed at the end of the wet season (~4 months post-transplant) and at the end of the experiment (~7 months post-transplant).

Results: Differences in seedling performance among field treatments were inconsistent among species and eroded over time. Effects of field environment were detected at the end of the wet season in two of the four species: Virola surinamensis seedlings had higher survival beneath their maternal tree than other conspecific trees, while seedling survival of Ormosia macrocalyx was higher under other conspecific trees. However, these differences were gone by the end of the experiment.

Conclusions: Our results suggest that intraspecific plant-soil feedbacks may not be consistent in the field for tropical tree species and may have a limited role in determining seedling performance in tropical tree communities. Future studies are needed to elucidate the environmental and genetic factors that determine the incidence and direction of intraspecific plant-soil feedbacks in plant communities.

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在一项田间试验中,四个热带树种的植物-土壤内部反馈不一致。
前提:土壤微生物可通过植物-土壤反馈影响植物群落的多样性模式。当植物基因型导致土壤微生物组成发生变化时,就会产生特定植物内部的植物-土壤反馈,从而导致生长在母本植物附近的幼苗与生长在非母本同种植物附近的幼苗的表现出现差异。在自然植物群落中,尤其是在多变的野外条件下,这种特定植物内的植物-土壤反馈如何持续发生尚不清楚:方法:在巴拿马巴罗科罗拉多岛(BCI)对四种本地树种进行了一次原地实验,将每种树种的幼苗移植到其母树或 BCI 森林中的另一种同种树下。在雨季结束时(移植后约 4 个月)和实验结束时(移植后约 7 个月)对幼苗的死亡率和生长情况进行评估:结果:不同物种在田间处理中的幼苗表现差异并不一致,而且会随着时间的推移而减弱。四个物种中有两个物种在雨季结束时发现了田间环境的影响:Virola surinamensis幼苗在母树下的存活率高于其他同种树木,而Ormosia macrocalyx幼苗在其他同种树木下的存活率更高。然而,这些差异在实验结束时已经消失:我们的研究结果表明,热带树种的植物-土壤内部反馈在野外可能并不一致,在热带树木群落中决定幼苗表现的作用可能有限。未来的研究需要阐明决定植物群落中种内植物-土壤反馈发生率和方向的环境和遗传因素。
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来源期刊
American Journal of Botany
American Journal of Botany 生物-植物科学
CiteScore
4.90
自引率
6.70%
发文量
171
审稿时长
3 months
期刊介绍: The American Journal of Botany (AJB), the flagship journal of the Botanical Society of America (BSA), publishes peer-reviewed, innovative, significant research of interest to a wide audience of plant scientists in all areas of plant biology (structure, function, development, diversity, genetics, evolution, systematics), all levels of organization (molecular to ecosystem), and all plant groups and allied organisms (cyanobacteria, algae, fungi, and lichens). AJB requires authors to frame their research questions and discuss their results in terms of major questions of plant biology. In general, papers that are too narrowly focused, purely descriptive, natural history, broad surveys, or that contain only preliminary data will not be considered.
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