College of Horticulture and Gardening, Yangtze University, Jingzhou, Hubei 434025, China.
Institute of Root Biology, Yangtze University, Jingzhou, Hubei 434025, China.
Sci Rep. 2017 Feb 9;7:42389. doi: 10.1038/srep42389.
Arbuscular mycorrhizal fungi (AMF) can enhance drought tolerance in plants, whereas little is known regarding AMF contribution to sucrose and proline metabolisms under drought stress (DS). In this study, Funneliformis mosseae and Paraglomus occultum were inoculated into trifoliate orange (Poncirus trifoliata) under well watered and DS. Although the 71-days DS notably (P < 0.05) inhibited mycorrhizal colonization, AMF seedlings showed significantly (P < 0.05) higher plant growth performance and leaf relative water content, regardless of soil water status. AMF inoculation significantly (P < 0.05) increased leaf sucrose, glucose and fructose concentration under DS, accompanied with a significant increase of leaf sucrose phosphate synthase, neutral invertase, and net activity of sucrose-metabolized enzymes and a decrease in leaf acid invertase and sucrose synthase activity. AMF inoculation produced no change in leaf ornithine-δ-aminotransferase activity, but significantly (P < 0.05) increased leaf proline dehydrogenase activity and significantly (P < 0.05) decreased leaf both Δ-pyrroline-5-carboxylate reductase and Δ-pyrroline-5-carboxylate synthetase activity, resulting in lower proline accumulation in AMF plants under DS. Our results therefore suggest that AMF strongly altered leaf sucrose and proline metabolism through regulating sucrose- and proline-metabolized enzyme activities, which is important for osmotic adjustment of the host plant.
丛枝菌根真菌(AMF)可以增强植物的耐旱性,但对于 AMF 在干旱胁迫(DS)下对蔗糖和脯氨酸代谢的贡献知之甚少。在这项研究中,摩西管柄囊霉和隐丛赤壳菌在水分充足和 DS 条件下接种到三叶橙(Poncirus trifoliata)中。尽管 71 天的 DS 显著(P < 0.05)抑制了菌根定殖,但 AMF 幼苗表现出明显(P < 0.05)更高的植物生长性能和叶片相对含水量,无论土壤水分状况如何。AMF 接种显著(P < 0.05)增加了 DS 下叶片蔗糖、葡萄糖和果糖的浓度,同时叶片蔗糖磷酸合酶、中性转化酶和蔗糖代谢酶的净活性显著增加,叶片酸性转化酶和蔗糖合酶活性显著降低。AMF 接种对叶片鸟氨酸-δ-氨基转移酶活性没有影响,但显著(P < 0.05)增加了叶片脯氨酸脱氢酶活性,显著(P < 0.05)降低了叶片 Δ-吡咯啉-5-羧酸还原酶和 Δ-吡咯啉-5-羧酸合酶活性,导致 DS 下 AMF 植物中脯氨酸积累降低。因此,我们的研究结果表明,AMF 通过调节蔗糖和脯氨酸代谢酶的活性强烈改变了叶片蔗糖和脯氨酸代谢,这对于宿主植物的渗透调节很重要。