11 Endophytes as Plant Nutrient Uptake-Promoter in Plants
261
Green F, Clausen CA (2003) Copper tolerance of brown-rot fungi: Time course of oxalic acid
production. Int Biodeterior Biodegrad. https://doi.org/10.1016/S0964-8305(02)00099-9
Hamilton CE, Bauerle TL (2012) A new currency for mutualism? Fungal endophytes alter antioxidant activity in hosts responding to drought. Fungal Divers. https://doi.org/10.1007/s13225-0120156-y
Hardoim PR, van Overbeek LS, Berg G, Pirttilä AM, Compant S, Campisano A, Döring M, Sessitsch
A (2015) The hidden world within plants: Ecological and evolutionary considerations for defining
functioning of Microbial Endophytes. Microbiol Mol Biol Rev. https://doi.org/10.1128/mmbr.000
50-14
Harman GE, Howell CR, Viterbo A, Chet I, Lorito M (2004) Trichoderma species—Opportunistic,
avirulent plant symbionts. Rev. Microbiol, Nat. https://doi.org/10.1038/nrmicro797
Haselwandter K, Read DJ (1982) The significance of a root-fungus association in two Carex species
of high-alpine plant communities. Oecologia. https://doi.org/10.1007/BF00389012
Hiruma K, Gerlach N, Sacristán S, Nakano RT, Hacquard S, Kracher B, Neumann U, Ramírez
D, Bucher M, O’Connell RJ, Schulze-Lefert P (2016) Root endophyte Colletotrichum tofieldiae
Confers plant fitness benefits that are phosphate status dependent. Cell. https://doi.org/10.1016/
j.cell.2016.02.028
Huang G, Jin Q, Peng H, Zhu T, Ye H (2019) Effect of a fungus, Hypoxylon spp., on endophytes in
the roots of Asparagus. FEMS Microbiol Lett FEMS https://doi.org/10.1093/femsle/fnz207
Hwang J-S, You Y-H, Bae J-J, Khan SA, Kim J-G, Choo Y-S (2011) Effects of endophytic fungal
secondary metabolites on the growth and physiological response of Carex kobomugi Ohwi. J
Coast Res. https://doi.org/10.2112/jcoastres-d-10-00090.1
Ikram M, Ali N, Jan G, Jan FG, Rahman IU, Iqbal A, Hamayun M (2018) IAA producing fungal
endophyte Penicillium roqueforti Thom., enhances stress tolerance and nutrients uptake in wheat
plants grown on heavy metal contaminated soils. PLoS One. https://doi.org/10.1371/journal.pone.
0208150
Johnson LJ, Koulman A, Christensen M, Lane GA, Fraser K, Forester N, Johnson RD, Bryan
GT, Rasmussen S (2013) An extracellular siderophore is required to maintain the mutualistic
interaction of Epichloë festucae with Lolium perenne. PLoS Pathog. https://doi.org/10.1371/jou
rnal.ppat.1003332
Jumpponen A (2001) Dark septate endophytes—Are they mycorrhizal? Mycorrhiza. https://doi.
org/10.1007/s005720100112
Jumpponen A, Trappe JM (1998) Dark septate endophytes: A review of facultative biotrophic
root-colonizing fungi. New Phytol. https://doi.org/10.1046/j.1469-8137.1998.00265.x
Jungk A (2002) Dynamics of nutrient movement at the soil-root interface. In: Waisel Y, Eshel A,
Kafkafi U (eds) Plant roots: the hidden half. CRC Press, New York, pp 455–481
Khan AL, Al-Harrasi A, Al-Rawahi A, Al-Farsi Z, Al-Mamari A, Waqas M, Asaf S, Elyassi A,
Mabood F, Shin JH, Lee IJ (2016) Endophytic fungi from frankincense tree improves host growth
and produces extracellular enzymes and indole acetic acid. PLoS ONE. https://doi.org/10.1371/
journal.pone.0158207
Khan MS, Zaidi A, Ahemad M, Oves M, Wani PA (2010) Plant growth promotion by phosphate
solubilizing fungi—Current perspective. Arch Agron Soil Sci. https://doi.org/10.1080/036503
40902806469
Khan NM, Rastoskuev VV, Sato Y, Shiozawa S (2005) Assessment of hydrosaline land degradation
by using a simple approach of remote sensing indicators. Water Manag, Agric. https://doi.org/
10.1016/j.agwat.2004.09.038
Kiers ET, Duhamel M, Beesetty Y, Mensah JA, Franken O, Verbruggen E, Fellbaum CR, Kowalchuk
GA, Hart MM, Bago A, Palmer TM, West SA, Vandenkoornhuyse P, Jansa J, Bücking H (2011)
Reciprocal rewards stabilize cooperation in the mycorrhizal symbiosis. Science. https://doi.org/
10.1126/science.1208473
Krueger GL, Morris TK, Suskind RR, Widner EM, Berlyne GM (1984) The health effects of
aluminum compounds in mammals. Crit Rev Toxicol. https://doi.org/10.3109/104084484090
29320
261
Green F, Clausen CA (2003) Copper tolerance of brown-rot fungi: Time course of oxalic acid
production. Int Biodeterior Biodegrad. https://doi.org/10.1016/S0964-8305(02)00099-9
Hamilton CE, Bauerle TL (2012) A new currency for mutualism? Fungal endophytes alter antioxidant activity in hosts responding to drought. Fungal Divers. https://doi.org/10.1007/s13225-0120156-y
Hardoim PR, van Overbeek LS, Berg G, Pirttilä AM, Compant S, Campisano A, Döring M, Sessitsch
A (2015) The hidden world within plants: Ecological and evolutionary considerations for defining
functioning of Microbial Endophytes. Microbiol Mol Biol Rev. https://doi.org/10.1128/mmbr.000
50-14
Harman GE, Howell CR, Viterbo A, Chet I, Lorito M (2004) Trichoderma species—Opportunistic,
avirulent plant symbionts. Rev. Microbiol, Nat. https://doi.org/10.1038/nrmicro797
Haselwandter K, Read DJ (1982) The significance of a root-fungus association in two Carex species
of high-alpine plant communities. Oecologia. https://doi.org/10.1007/BF00389012
Hiruma K, Gerlach N, Sacristán S, Nakano RT, Hacquard S, Kracher B, Neumann U, Ramírez
D, Bucher M, O’Connell RJ, Schulze-Lefert P (2016) Root endophyte Colletotrichum tofieldiae
Confers plant fitness benefits that are phosphate status dependent. Cell. https://doi.org/10.1016/
j.cell.2016.02.028
Huang G, Jin Q, Peng H, Zhu T, Ye H (2019) Effect of a fungus, Hypoxylon spp., on endophytes in
the roots of Asparagus. FEMS Microbiol Lett FEMS https://doi.org/10.1093/femsle/fnz207
Hwang J-S, You Y-H, Bae J-J, Khan SA, Kim J-G, Choo Y-S (2011) Effects of endophytic fungal
secondary metabolites on the growth and physiological response of Carex kobomugi Ohwi. J
Coast Res. https://doi.org/10.2112/jcoastres-d-10-00090.1
Ikram M, Ali N, Jan G, Jan FG, Rahman IU, Iqbal A, Hamayun M (2018) IAA producing fungal
endophyte Penicillium roqueforti Thom., enhances stress tolerance and nutrients uptake in wheat
plants grown on heavy metal contaminated soils. PLoS One. https://doi.org/10.1371/journal.pone.
0208150
Johnson LJ, Koulman A, Christensen M, Lane GA, Fraser K, Forester N, Johnson RD, Bryan
GT, Rasmussen S (2013) An extracellular siderophore is required to maintain the mutualistic
interaction of Epichloë festucae with Lolium perenne. PLoS Pathog. https://doi.org/10.1371/jou
rnal.ppat.1003332
Jumpponen A (2001) Dark septate endophytes—Are they mycorrhizal? Mycorrhiza. https://doi.
org/10.1007/s005720100112
Jumpponen A, Trappe JM (1998) Dark septate endophytes: A review of facultative biotrophic
root-colonizing fungi. New Phytol. https://doi.org/10.1046/j.1469-8137.1998.00265.x
Jungk A (2002) Dynamics of nutrient movement at the soil-root interface. In: Waisel Y, Eshel A,
Kafkafi U (eds) Plant roots: the hidden half. CRC Press, New York, pp 455–481
Khan AL, Al-Harrasi A, Al-Rawahi A, Al-Farsi Z, Al-Mamari A, Waqas M, Asaf S, Elyassi A,
Mabood F, Shin JH, Lee IJ (2016) Endophytic fungi from frankincense tree improves host growth
and produces extracellular enzymes and indole acetic acid. PLoS ONE. https://doi.org/10.1371/
journal.pone.0158207
Khan MS, Zaidi A, Ahemad M, Oves M, Wani PA (2010) Plant growth promotion by phosphate
solubilizing fungi—Current perspective. Arch Agron Soil Sci. https://doi.org/10.1080/036503
40902806469
Khan NM, Rastoskuev VV, Sato Y, Shiozawa S (2005) Assessment of hydrosaline land degradation
by using a simple approach of remote sensing indicators. Water Manag, Agric. https://doi.org/
10.1016/j.agwat.2004.09.038
Kiers ET, Duhamel M, Beesetty Y, Mensah JA, Franken O, Verbruggen E, Fellbaum CR, Kowalchuk
GA, Hart MM, Bago A, Palmer TM, West SA, Vandenkoornhuyse P, Jansa J, Bücking H (2011)
Reciprocal rewards stabilize cooperation in the mycorrhizal symbiosis. Science. https://doi.org/
10.1126/science.1208473
Krueger GL, Morris TK, Suskind RR, Widner EM, Berlyne GM (1984) The health effects of
aluminum compounds in mammals. Crit Rev Toxicol. https://doi.org/10.3109/104084484090
29320
