264
C. García-Latorre et al.
Soto-Barajas MC, Zabalgogeazcoa I, Gómez-Fuertes J, González-Blanco V, Vázquez-de-Aldana
BR (2016) Epichloë endophytes affect the nutrient and fiber content of Lolium perenne regardless
of plant genotype. Plant Soil. https://doi.org/10.1007/s11104-015-2617-z
Spiering MJ, Greer DH, Schmid J (2006) Effects of the fungal endophyte, Neotyphodium lolii, on
net photosynthesis and growth rates of perennial ryegrass (Lolium perenne) are independent of
in planta endophyte concentration. Ann Bot. https://doi.org/10.1093/aob/mcl108
Strom N, Hu W, Haarit D, Chen S, Bushley K (2019) Corn and soybean host root endophytic
fungi with toxicity towards the soybean cyst nematode. Phytopathology. https://doi.org/10.1094/
PHYTO-07-19-0243-R
Su CL, Wang HW, Xie XG, Zhang W, Li XG, Wang XX, Dai CC (2016) Effects of endophytic fungi
and Atractylodes lancea powder on rhizosphere microflora and trace elements during continuous
peanut cropping. Acta Ecol Sin. https://doi.org/10.5846/stxb201409171842
Su C-L, Zhang F-M, Sun K, Zhang W, Dai C-C (2019) Fungal endophyte Phomopsis liquidambari
improves iron and molybdenum nutrition uptake of peanut in consecutive monoculture soil. J
Soil Sci Plant Nutr. https://doi.org/10.1007/s42729-019-0011-2
Surup F, Halecker S, Nimtz M, Rodrigo S, Schulz B, Steinert M, Stadler M (2018) Hyfraxins A
and B, cytotoxic ergostane-type steroid and lanostane triterpenoid glycosides from the invasive
ash dieback ascomycete Hymenoscyphus fraxineus. Steroids. https://doi.org/10.1016/j.steroids.
2018.03.007
Suttle NF (2010) Mineral nutrition of livestock, 4th edn. CABI Publishing, Wallingford
Svenningsen NB, Watts-Williams SJ, Joner EJ, Battini F, Efthymiou A, Cruz-Paredes C, Nybroe
O, Jakobsen I (2018) Suppression of the activity of arbuscular mycorrhizal fungi by the soil
microbiota. ISME J. https://doi.org/10.1038/s41396-018-0059-3
Tilman D, Cassman KG, Matson PA, Naylor R, Polasky S (2002) Agricultural sustainability and
intensive production practices. Nature. https://doi.org/10.1038/nature01014
Upson R, Read DJ, Newsham KK (2009) Nitrogen form influences the response of Deschampsia
antarctica to dark septate root endophytes. Mycorrhiza. https://doi.org/10.1007/s00572-0090260-3
Usuki F, Narisawa K (2007) A mutualistic symbiosis between a dark septate endophytic fungus,
Heteroconium chaetospira, and a nonmycorrhizal plant. Mycologia, Chinese cabbage. https://
doi.org/10.3852/mycologia.99.2.175
van der Ent A, Baker AJM, Reeves RD, Pollard AJ, Schat H (2013) Hyperaccumulators of metal
and metalloid trace elements: Facts and fiction. Plant Soil. https://doi.org/10.1007/s11104-0121287-3
Vázquez-de-Aldana BR, Zabalgogeazcoa I, García-Ciudad A, García-Criado B (2013) An Epichloë
endophyte affects the competitive ability of Festuca rubra against other grassland species. Plant
Soil. https://doi.org/10.1007/s11104-012-1283-7
Verbruggen N, HermansC Schat H (2009) Molecular mechanisms of metal hyperaccumulation in
plants. New Phytol 181:759–776
Vergara C, Araujo KEC, Urquiaga S, Schultz N, Balieiro F de C, Medeiros PS, Santos LA, Xavier
GR, Zilli JE (2017) Dark Septate endophytic fungi help tomato to acquire nutrients from ground
plant material. Front Microbiol. https://doi.org/10.3389/fmicb.2017.02437
Waller F, Achatz B, Baltruschat H, Fodor J, Becker K, Fischer M, Heier T, Hückelhoven R, Neumann
C, Von Wettstein D, Franken P, Kogel KH (2005) The endophytic fungus Piriformospora indica
reprograms barley to salt-stress tolerance, disease resistance, and higher yield. Proc Natl Acad
Sci U S A. https://doi.org/10.1073/pnas.0504423102
Wenzel WW (2009) Rhizosphere processes and management in plant-assisted bioremediation
(phytoremediation) of soils. Plant Soil. https://doi.org/10.1007/s11104-008-9686-1
White J, Bacon CW, Hinton DM (1997) Modifications of host cells and tissues by the biotrophic
endophyte Epichloe amarillans (Clavicipitaceae. Can J Bot, Ascomycotina). https://doi.org/10.
1139/b97-117
White PJ, Broadley MR (2005) Biofortifying crops with essential mineral elements. Trends Plant
Sci. https://doi.org/10.1016/j.tplants.2005.10.001
C. García-Latorre et al.
Soto-Barajas MC, Zabalgogeazcoa I, Gómez-Fuertes J, González-Blanco V, Vázquez-de-Aldana
BR (2016) Epichloë endophytes affect the nutrient and fiber content of Lolium perenne regardless
of plant genotype. Plant Soil. https://doi.org/10.1007/s11104-015-2617-z
Spiering MJ, Greer DH, Schmid J (2006) Effects of the fungal endophyte, Neotyphodium lolii, on
net photosynthesis and growth rates of perennial ryegrass (Lolium perenne) are independent of
in planta endophyte concentration. Ann Bot. https://doi.org/10.1093/aob/mcl108
Strom N, Hu W, Haarit D, Chen S, Bushley K (2019) Corn and soybean host root endophytic
fungi with toxicity towards the soybean cyst nematode. Phytopathology. https://doi.org/10.1094/
PHYTO-07-19-0243-R
Su CL, Wang HW, Xie XG, Zhang W, Li XG, Wang XX, Dai CC (2016) Effects of endophytic fungi
and Atractylodes lancea powder on rhizosphere microflora and trace elements during continuous
peanut cropping. Acta Ecol Sin. https://doi.org/10.5846/stxb201409171842
Su C-L, Zhang F-M, Sun K, Zhang W, Dai C-C (2019) Fungal endophyte Phomopsis liquidambari
improves iron and molybdenum nutrition uptake of peanut in consecutive monoculture soil. J
Soil Sci Plant Nutr. https://doi.org/10.1007/s42729-019-0011-2
Surup F, Halecker S, Nimtz M, Rodrigo S, Schulz B, Steinert M, Stadler M (2018) Hyfraxins A
and B, cytotoxic ergostane-type steroid and lanostane triterpenoid glycosides from the invasive
ash dieback ascomycete Hymenoscyphus fraxineus. Steroids. https://doi.org/10.1016/j.steroids.
2018.03.007
Suttle NF (2010) Mineral nutrition of livestock, 4th edn. CABI Publishing, Wallingford
Svenningsen NB, Watts-Williams SJ, Joner EJ, Battini F, Efthymiou A, Cruz-Paredes C, Nybroe
O, Jakobsen I (2018) Suppression of the activity of arbuscular mycorrhizal fungi by the soil
microbiota. ISME J. https://doi.org/10.1038/s41396-018-0059-3
Tilman D, Cassman KG, Matson PA, Naylor R, Polasky S (2002) Agricultural sustainability and
intensive production practices. Nature. https://doi.org/10.1038/nature01014
Upson R, Read DJ, Newsham KK (2009) Nitrogen form influences the response of Deschampsia
antarctica to dark septate root endophytes. Mycorrhiza. https://doi.org/10.1007/s00572-0090260-3
Usuki F, Narisawa K (2007) A mutualistic symbiosis between a dark septate endophytic fungus,
Heteroconium chaetospira, and a nonmycorrhizal plant. Mycologia, Chinese cabbage. https://
doi.org/10.3852/mycologia.99.2.175
van der Ent A, Baker AJM, Reeves RD, Pollard AJ, Schat H (2013) Hyperaccumulators of metal
and metalloid trace elements: Facts and fiction. Plant Soil. https://doi.org/10.1007/s11104-0121287-3
Vázquez-de-Aldana BR, Zabalgogeazcoa I, García-Ciudad A, García-Criado B (2013) An Epichloë
endophyte affects the competitive ability of Festuca rubra against other grassland species. Plant
Soil. https://doi.org/10.1007/s11104-012-1283-7
Verbruggen N, HermansC Schat H (2009) Molecular mechanisms of metal hyperaccumulation in
plants. New Phytol 181:759–776
Vergara C, Araujo KEC, Urquiaga S, Schultz N, Balieiro F de C, Medeiros PS, Santos LA, Xavier
GR, Zilli JE (2017) Dark Septate endophytic fungi help tomato to acquire nutrients from ground
plant material. Front Microbiol. https://doi.org/10.3389/fmicb.2017.02437
Waller F, Achatz B, Baltruschat H, Fodor J, Becker K, Fischer M, Heier T, Hückelhoven R, Neumann
C, Von Wettstein D, Franken P, Kogel KH (2005) The endophytic fungus Piriformospora indica
reprograms barley to salt-stress tolerance, disease resistance, and higher yield. Proc Natl Acad
Sci U S A. https://doi.org/10.1073/pnas.0504423102
Wenzel WW (2009) Rhizosphere processes and management in plant-assisted bioremediation
(phytoremediation) of soils. Plant Soil. https://doi.org/10.1007/s11104-008-9686-1
White J, Bacon CW, Hinton DM (1997) Modifications of host cells and tissues by the biotrophic
endophyte Epichloe amarillans (Clavicipitaceae. Can J Bot, Ascomycotina). https://doi.org/10.
1139/b97-117
White PJ, Broadley MR (2005) Biofortifying crops with essential mineral elements. Trends Plant
Sci. https://doi.org/10.1016/j.tplants.2005.10.001
