Combinations of different arbuscular mycorrhizal fungi improve fitness and metal tolerance of sorghum in ultramafic soil

Rhizosphere - Tập 14 - Trang 100204 - 2020
Thomas Crossay1, Yvon Cavaloc1, Clarisse Majorel1, Dirk Redecker2, Valérie Medevielle1, Hamid Amir1
1Institut des Sciences Exactes et Appliquées (ISEA), Université de la Nouvelle-Calédonie, BP R4, 98851, Nouméa Cedex, Nouvelle-Calédonie, France
2Agroécologie, AgroSup Dijon, CNRS, INRAE, Univ. Bourgogne Franche-Comté, F-21000, Dijon, France

Tài liệu tham khảo

Aboul-Nasr, 1995, Effects of vesicular-arbuscular mycorrhiza on Tagetes erecta and Zinnia elegans, Mycorrhiza, 6, 61, 10.1007/s005720050107 Amir, 2019, Arbuscular mycorrhizal fungi and sewage sludge enhance growth and adaptation of Metrosideros laurifolia on ultramafic soil in New Caledonia: a field experiment, Sci. Total Environ., 651, 334, 10.1016/j.scitotenv.2018.09.153 Amir, 2013, Arbuscular mycorrhizal fungi from New Caledonian ultramafic soils improve tolerance to nickel of endemic plant species, Mycorrhiza, 23, 585, 10.1007/s00572-013-0499-6 Amir, 2008, Tolerance and induction of tolerance to Ni of arbuscular mycorrhizal fungi from New Caledonian ultramafic soils, Mycorrhiza, 19, 1, 10.1007/s00572-008-0197-y Amir, 2010, Les bactéries et les champignons du sol sur roches ultramafiques, 129 Baker, 1987, Metal tolerance, New Phytol., 106, 93, 10.1111/j.1469-8137.1987.tb04685.x Baugé, 2013, Phosphorus and trace metals in serpentine-affected soils of the Sumas Basin, British Columbia. Can. J. Soil. Sci., 93, 359, 10.4141/cjss2012-138 Becquer, 2010, Toxic levels of metals in Ferralsols under natural vegetation and crops in New Caledonia, Eur. J. Soil Sci., 61, 994, 10.1111/j.1365-2389.2010.01294.x Bennett, 2009, Trade-offs between arbuscular mycorrhizal fungal competitive ability and host growth promotion in Plantago lanceolata, Oecologia, 160, 807, 10.1007/s00442-009-1345-6 Berruti, 2015, Arbuscular mycorrhizal fungi as natural biofertilizers: let's benefit from past successes, Front. Microbiol., 6, 1559 Bini, 1999, The effect of CrVI on the seedling development of two species of calendula (C. arvensis L. and C. officinalis L.), 1146 Błaszkowski, 2017 Błaszkowski, 2006, Glomus drummondii and G. walkeri, two new species of arbuscular mycorrhizal fungi (Glomeromycota), Mycol. Res., 110, 555, 10.1016/j.mycres.2006.02.006 Brooks, 1987, The serpentine factor Crossay, 2019, Is a mixture of arbuscular mycorrhizal fungi better for plant growth than single-species inoculants?, Mycorrhiza, 29, 325, 10.1007/s00572-019-00898-y Crossay, 2018, Four new species of arbuscular mycorrhizal fungi (Glomeromycota) associated with endemic plants from ultramafic soils of New Caledonia, Mycol. Prog., 17, 729, 10.1007/s11557-018-1386-5 Crossay, 2018 Daniels, 1982, Methods for the recovery and quantitative estimation of propagules from soil, 29 Doubková, 2013, Arbuscular mycorrhizal symbiosis alleviates drought stress imposed on Knautia arvensis plants in serpentine soil, Plant Soil, 370, 149, 10.1007/s11104-013-1610-7 Ferrol, 2016, The heavy metal paradox in arbuscular mycorrhizas: from mechanisms to biotechnological applications, J. Exp. Bot., 67, 6253, 10.1093/jxb/erw403 Fernández, 1999, Plant heavy metal concentrations and soil biological properties in agricultural serpentine soils, Commun. Soil Sci. Plant Anal., 30, 1867, 10.1080/00103629909370338 Gajewska, 2009, Nickel-induced changes in nitrogen metabolism in wheat shoots, J. Plant Physiol., 166, 1034, 10.1016/j.jplph.2008.12.004 Galey, 2017, Ultramafic geoecology of South and Southeast Asia, Bot. Stud., 58, 18, 10.1186/s40529-017-0167-9 Gaur, 2005, Diverse response of five ornamental plant species to mixed indigenous and single isolate arbuscular-mycorrhizal inocula in marginal soil amended with organic matter, J. Plant Nutr., 28, 707, 10.1081/PLN-200052647 González-Guerrero, 2016, Transition metal transport in plants and associated endosymbionts: arbuscular mycorrhizal fungi and rhizobia, Front. Plant Sci., 7, 10.3389/fpls.2016.01088 González-Guerrero, 2008, Ultrastructural localization of heavy metals in the extraradical mycelium and spores of the arbuscular mycorrhizal fungus Glomus intraradices, Can. J. Microbiol., 54, 103, 10.1139/W07-119 González-Guerrero, 2005, Characterization of a Glomus intraradices gene encoding a putative Zn transporter of the cation diffusion facilitator family, Fungal Genet. Biol., 42, 130, 10.1016/j.fgb.2004.10.007 Gosling, 2016, Evidence for functional redundancy in arbuscular mycorrhizal fungi and implications for agroecosystem management, Mycorrhiza, 26, 77, 10.1007/s00572-015-0651-6 Hart, 2003, Plant coexistence mediated by arbuscular mycorrhizal fungi, Trends Ecol. Evol., 18, 418, 10.1016/S0169-5347(03)00127-7 Hart, 2002, Taxonomic basis for variation in the colonization strategy of arbuscular mycorrhizal fungi, New Phytol., 153, 335, 10.1046/j.0028-646X.2001.00312.x Herath, 2015, Immobilization and phytotoxicity reduction of heavy metals in serpentine soil using biochar, J. Soils Sediments, 15, 126, 10.1007/s11368-014-0967-4 Hildebrandt, 2007, Arbuscular mycorrhiza and heavy metal tolerance. Phytochemistry, Mol. Basics of Mycorrhizal Symbiosis, 68, 139 Jaffré, 2010, Conditions de milieu des terrains miniers, 33 Johnson, 1997, Functioning of mycorrhizal associations along the mutualism–parasitism continuum, New Phytol., 135, 575, 10.1046/j.1469-8137.1997.00729.x Kayama, 2002, Needle life span, photosynthetic rate and nutrient concentration of Picea glehnii, P. jezoensis and P. abies planted on serpentine soil in northern Japan, Tree Physiol., 22, 707, 10.1093/treephys/22.10.707 Kazakou, 2008, Hypotheses, mechanisms and trade-offs of tolerance and adaptation to serpentine soils: from species to ecosystem level, Biol. Rev., 83, 495 Kidd, 2018, Developing sustainable agromining systems in agricultural ultramafic soils for nickel recovery, Front. Environ. Sci., 6, 44, 10.3389/fenvs.2018.00044 L'Huillier, 1996, Extractability of nickel and its concentration in cultivated plants in Ni rich ultramafic soils of New Caledonia, Plant Soil, 186, 255, 10.1007/BF02415521 Liu, 2000, The mechanism of cobalt toxicity in mung beans, Physiol. Plantarum, 110, 104, 10.1034/j.1399-3054.2000.110114.x Maherali, 2007, Influence of phylogeny on fungal community assembly and ecosystem functioning, Science, 316, 1746, 10.1126/science.1143082 Miranda, 2009, Metal accumulation in cattle raised in a serpentine-soil area: relationship between metal concentrations in soil, forage and animal tissues, J. Trace Elem. Med. Biol., 23, 231, 10.1016/j.jtemb.2009.03.004 Miransari, 2010, Contribution of arbuscular mycorrhizal symbiosis to plant growth under different types of soil stress, Plant Biol., 12, 563 Mozafar, 2002, Effect of heavy metal contaminated shooting range soils on mycorrhizal colonization of roots and metal uptake by leek, Environ. Monit. Assess., 79, 177, 10.1023/A:1020202801163 Opel, 2010, A study of PCR inhibition mechanisms using real time PCR*,†, J. Forensic Sci., 55, 25, 10.1111/j.1556-4029.2009.01245.x Orłowska, 2011, The effect of mycorrhiza on the growth and elemental composition of Ni-hyperaccumulating plant Berkheya coddii Roessler, Environ. Pollut., 159, 3730, 10.1016/j.envpol.2011.07.008 Page, 2015, Heavy metals in crop plants: transport and redistribution processes on the whole plant level, Agronomy, 5, 447, 10.3390/agronomy5030447 Perner, 2007, Effect of arbuscular mycorrhizal colonization and two levels of compost supply on nutrient uptake and flowering of Pelargonium plants, Mycorrhiza, 17, 469, 10.1007/s00572-007-0116-7 Perrier, 2006, Occurrence of mycorrhizal symbioses in the metal-rich lateritic soils of the Koniambo Massif, New Caledonia, Mycorrhiza, 16, 449, 10.1007/s00572-006-0057-6 Phieler, 2015, Phytoremediation using microbially mediated metal accumulation in Sorghum bicolor, Environ. Sci. Pollut. Res., 22, 19408, 10.1007/s11356-015-4471-1 Phillips, 1970, Improved procedures for clearing roots and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection, Trans. Br. Mycol. Soc., 55, 10.1016/S0007-1536(70)80110-3 Poulton, 2002, Mycorrhizal infection and high soil phosphorus improve vegetative growth and the female and male functions in tomato, New Phytol., 154, 255, 10.1046/j.1469-8137.2002.00366.x Samantary, 2002, Biochemical responses of Cr-tolerant and Cr-sensitive mung bean cultivars grown on varying levels of chromium, Chemosphere, 47, 1065, 10.1016/S0045-6535(02)00091-7 Sharma, 1995, Chromium accumulation and its effects on wheat (Triticum aestivum L. cv. HD 2204) metabolism, Plant Sci., 111, 145, 10.1016/0168-9452(95)04230-R Singh, 2010 Susaya, 2010, Quantifying nickel in soils and plants in an ultramafic area in Philippines, Environ. Monit. Assess., 167, 505, 10.1007/s10661-009-1067-6 Sutlovic, 2008, Interaction of humic acids with human DNA: proposed mechanisms and kinetics, Electrophoresis, 29, 1467, 10.1002/elps.200700699 Thonar, 2014, Competition and facilitation in synthetic communities of arbuscular mycorrhizal fungi, Mol. Ecol., 23, 733, 10.1111/mec.12625 Tang, 2017, Regulation of calcium and magnesium homeostasis in plants: from transporters to signaling network, Curr. Opin. Plant Biol., 39, 97, 10.1016/j.pbi.2017.06.009 Trouvelot, 1986, Mesure du taux de mycorhization VA d’un système radiculaire. Recherche de méthodes d’estimation ayant une signification fonctionnelle, 217 Vodnik, 2008, The contribution of glomalin-related soil protein to Pb and Zn sequestration in polluted soil, Sci. Total Environ., 392, 130, 10.1016/j.scitotenv.2007.11.016 Wang, 2014, Variations in metal tolerance and accumulation in three hydroponically cultivated varieties of Salix integra treated with lead, PloS One, 9 Wu, 2017, Arbuscular mycorrhizal fungi alter nitrogen allocation in the leaves of Populus × canadensis ‘Neva, Plant Soil, 421, 477, 10.1007/s11104-017-3461-0 Yang, 2017, Taxonomic resolution is a determinant of biodiversity effects in arbuscular mycorrhizal fungal communities, J. Ecol., 105, 219, 10.1111/1365-2745.12655 Young, 1984, Specificity of iron transport in iron-stressed sugar beet plants: evidence for preferential accumulation of cobalt in the presence of iron, Can. J. Bot., 62, 207, 10.1139/b84-034 Zornoza, 1999, Alleviation of nickel toxicity by ammonium supply to sunflower plants, Plant Soil, 208, 221, 10.1023/A:1004517414730