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在锰胁迫下,性别特异性竞争对雌雄异株植物根际真菌群落的响应具有不同的调节作用。

Sex-specific competition differently regulates the response of the rhizosphere fungal community of A dioecious plant, under Mn stress.

作者信息

Lin Yuhu, Fang Ling, Chen Hao, Sun Xudong, He Yunxiao, Duan Baoli, Li Rui, Cao Chuntao, Chen Juan

机构信息

Engineering Research Center of Chuanxibei RHS Construction at Mianyang Teachers'College of Sichuan Province, Mianyang Teachers' College, Mianyang, China.

School of Resources and Environmental Engineering, Mianyang Teachers' College, Mianyang, China.

出版信息

Front Microbiol. 2023 Jan 19;14:1102904. doi: 10.3389/fmicb.2023.1102904. eCollection 2023.

Abstract

In this study, we investigated the soil physicochemical parameters and responses of rhizospheric fungal communities of to Mn stress under different sexual competition patterns. The results showed that competition significantly affects soil physicochemical properties, enzyme activity, and rhizosphere-associated fungal community structures. Under Mn stress, soils with intersexual competition had higher levels of N supply than those with the intrasexual competition. Moreover, fungal communities under intersexual interaction were more positive to Mn stress than intrasexual interaction. Under intrasexual competition, female plants had higher total phosphorus content, neutral phosphatase activity, and relative abundance of symbiotic fungi in soils to obtain phosphorus nutrients to alleviate Mn stress. In contrast, male plants had relatively stable fungal communities in soils. In the intersexual competition, rhizosphere fungal diversity and relative abundance of saprophytic fungi in male plants were significantly higher than in female plants under Mn stress. In addition, female plants showed greater plasticity in the response of rhizosphere microorganisms to their neighbors of different sexes. The microbial composition in soils of female plants varied more than male plants between intrasexual and intersexual competition. These results indicated that sex-specific competition and neighbor effects regulate the microbial community structure and function of dioecious plants under heavy metal stress, which might affect nutrient cycling and phytoremediation potential in heavy metal-contaminated soils.

摘要

在本研究中,我们调查了不同性别竞争模式下土壤理化参数以及雌雄异株植物根际真菌群落对锰胁迫的响应。结果表明,竞争显著影响土壤理化性质、酶活性和根际相关真菌群落结构。在锰胁迫下,两性竞争的土壤比同性竞争的土壤具有更高的氮供应水平。此外,两性相互作用下的真菌群落对锰胁迫的反应比同性相互作用更积极。在同性竞争下,雌株土壤中的总磷含量、中性磷酸酶活性和共生真菌相对丰度较高,以获取磷养分来缓解锰胁迫。相比之下,雄株土壤中的真菌群落相对稳定。在两性竞争中,锰胁迫下雄株根际真菌多样性和腐生真菌相对丰度显著高于雌株。此外,雌株根际微生物对不同性别的邻株反应表现出更大的可塑性。雌株土壤中的微生物组成在同性和两性竞争之间的变化比雄株更大。这些结果表明,性别特异性竞争和邻株效应调节了重金属胁迫下雌雄异株植物的微生物群落结构和功能,这可能会影响重金属污染土壤中的养分循环和植物修复潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f74b/9892859/bb556479bc04/fmicb-14-1102904-g001.jpg

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