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丛枝菌根真菌(AMF)对冷胁迫下黄瓜生长和磷吸收的影响

Impact of arbuscular mycorrhizal fungi (AMF) on cucumber growth and phosphorus uptake under cold stress.

作者信息

Ma Jun, Janoušková Martina, Li Yansu, Yu Xianchang, Yan Yan, Zou Zhirong, He Chaoxing

机构信息

College of Horticulture, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

Institute of Botany, Academy of Sciences of the Czech Republic, 25243 Pruhonice, Czech Republic.

出版信息

Funct Plant Biol. 2015 Dec;42(12):1158-1167. doi: 10.1071/FP15106.

Abstract

Symbiosis with root-associated arbuscular mycorrhizal fungi (AMF) can improve plant phosphorus (P) uptake and alleviate environmental stresses. It could be also an effective mean to promote plant performance under low temperatures. The combined effects of arbuscular mycorrhiza and low temperature (15°C/10°C day/night) on cucumber seedlings were investigated in the present study. Root colonisation by AMF, succinate dehydrogenase and alkaline phosphatase activity in the intraradical fungal structures, plant growth parameters, and expression profiles of four cucumber phosphate (Pi) transporters, the fungal Pi transporter GintPT and alkaline phosphatase GintALP were determined. Cold stress reduced plant growth and mycorrhizal colonisation. Inoculation improved cucumber growth under ambient temperatures, whereas under cold stress only root biomass was significantly increased by inoculation. AMF supplied P to the host plant under ambient temperatures and cold stress, as evidenced by the higher P content of mycorrhizal plants compared with non-mycorrhizal plants. Thus, the cold-stressed cucumber seedlings still benefited from mycorrhiza, although the benefit was less than that under ambient temperatures. In accordance with this, a cucumber Pi transporter gene belonging to the Pht1 gene family was strongly induced by mycorrhiza at ambient temperature and to a lesser extent under cold stress. The other three Pi transporters tested from different families were most highly expressed in cold-stressed mycorrhizal plants, suggesting a complex interactive effect of mycorrhiza and cold stress on internal P cycling in cucumber plants.

摘要

与根际丛枝菌根真菌(AMF)共生可提高植物对磷(P)的吸收并缓解环境胁迫。这也可能是促进植物在低温下生长的有效手段。本研究调查了丛枝菌根与低温(白天15°C/夜间10°C)对黄瓜幼苗的综合影响。测定了AMF对根系的定殖情况、根内真菌结构中的琥珀酸脱氢酶和碱性磷酸酶活性、植物生长参数以及四种黄瓜磷酸盐(Pi)转运蛋白、真菌Pi转运蛋白GintPT和碱性磷酸酶GintALP的表达谱。冷胁迫降低了植物生长和菌根定殖。接种在环境温度下促进了黄瓜生长,而在冷胁迫下,接种仅显著增加了根生物量。与非菌根植物相比,菌根植物中较高的P含量证明,AMF在环境温度和冷胁迫下均为宿主植物提供了P。因此,冷胁迫下的黄瓜幼苗仍从菌根中受益,尽管受益程度低于环境温度下。与此一致的是,一个属于Pht1基因家族的黄瓜Pi转运蛋白基因在环境温度下被菌根强烈诱导,在冷胁迫下诱导程度较小。从不同家族测试的其他三种Pi转运蛋白在冷胁迫的菌根植物中表达最高,这表明菌根和冷胁迫对黄瓜植物体内P循环具有复杂的交互作用。

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