United Nations Department of Economic and Social Affairs. World population projected to reach 9.8 billion in 2050 and 11.2 billion in 2100. 2017. Available at: https://un.org/development/desa/en/news/population/world-population-prospects-2017.html (Last accessed April2018).
2.
RoserM, RitchieH. Yields and land use in agriculture. Our World in Data. Available at: https://ourworldindata.org/yields-and-land-use-in-agriculture (Last accessed April2018).
NewLeaf Symbiotics. Terrasym. Available at: www.terrasym.com (Last accessed April2018).
5.
DunhamB. Microbial biopesticides: A key role in the multinational portfolio. 2015. Available at: http://dunhamtrimmer.com/wp-content/uploads/2015/01/Products-and-Trends.pdf (Last accessed April2018)
6.
BerendsenRL, PieterseCM, BakkerPA. The rhizosphere microbiome and plant health. Trends Plant Sci, 2012; 17(8):478–486.
7.
ChandlerD, BaileyAS, TatchellGM, et al.The development, regulation and use of biopesticides for integrated pest management. Philos Trans R Soc Lond B Biol Sci; 2011; 366(1573):1987–1998.
8.
BeegleCC, YamamotoT. Initation paper (C.P. Alexander Fund): History of Bacillus thuringiensis Berliner research and development. The Can Entomol, 1992; 124(4);587–616.
9.
KumarM, TomarRS, LadeH, PaulD. Methylotrophic bacteria in sustainable agriculture. World J Microbiol Biotechnol, 2016; 32:120–129.
CorpeWA. A method for detecting methylotrophic bacteria on solid surfaces. J Microbiol Methods, 1985; 3:215–221.
12.
Mark Holland, Salisbury University, MD (personal communication).
13.
HollandMA, BiBelloP, CarltonRM. 2011. US Patent Application US20140283441A1.
14.
ErlacherA, CernavaT, CardinaleM, et al.Rhizobiales as functional and endosymbiotic members of the lichen symbiosis of Lobaria pulmonaria L. Front Microbiol, 2015; 6(53):1–9.
15.
SchauerS, KutscheraU. A novel growth-promoting microbe, Methylobacteria funariae sp. Nov., isolated from the surface of a common moss. Plant Signal Behav, 2011; 6(4)510–515.
16.
FerreiraAC, NobreaMF, MooreE, et al.Characterization and radiation resistance of new isolates of Rubrobacter radiotoloerns and Rubrobacter xylanophilus. Extremeophiles, 1999; 3:235–238.
17.
HiranoSS, UpperCD. Bacteria in the leaf ecosystem with emphasis on Pseudomonas syringae—A pathogen, ice nucleus and epiphyte. Microbiol Mol Biol Rev, 2000; 64(3):624–653.
18.
KwakMJ, JeougH, MadhaiyanM, et al.Genome information of Methylobacterium oryzea, a plant-probiotic methylotroph in the phyllosphere. PLOS One, 2014; 9:e106704.
19.
KoskimakiJ, PirttilaAM, IhantolaEL, et al.The intracellular Scots Pine shoot symbiont Methylobacterium extorquens DSM13060 aggregates around the host nucleus and encodes eukaryote-like proteins. mBio, 2015; 6(2):e00039-15.
20.
AbdoulayaS, GoraudE, JourandP, et al.Methylotrophic methylobacterium bacteria nodulates and fix nitrogen in symbiosis with legumes. J Bacteriol, 2001; 183(1):214–220.
21.
JourandP, GiraudE, BenaG, et al.Methylobacterium nodulans sp. nov., for a group of aerobic facultatively methylotrophic, root-nodule-forming and nitrogen-fixing bacteria. Int J Syst Evol Microbiol, 2004; 54(6):2269–2273.
22.
MadhaiyanM, PoonguzhaliS, SenthilkumarM, et al.Nodulation and plant-growth promotion by methylotrophic bacteria isolated from tropical legumes. Microbiol Res, 2009; 164:114–120.
23.
LongRLG. tRNA is the source of cytokinin secretion by plant-associated members of the genus Methylobacterium. PhD dissertation, University of Missouri-Columbia, 2000.
24.
SiddikeeM, HamayunG, HanH, SaT. Optimization of gibberellin acid production by Methylobacterium oryzae CBMM20. Korean J Soil Sci Fert, 2010; 43(4):522–527.
25.
MadhaiyanM, PoonguzhaliS, SenthilkumarM, et al.Growth promotion and induction of systemic resistance in rice cultivar Co-47 (Oryzae sativa L.) by Methylobacterium spp. Bot Bull Acad Sin, 2004; 45:315–324.
26.
PoorniammalR, SundaramSP, KumuthaK. Induced systemic resistance by Methylobacterium extorquens against Rhizoctonia solani in cotton. Int J Plant Protect, 2010; 2(2):199–204.
27.
BalachandranC, DuraipandiyanV, IgnacimuthuS. Cytotoxin (A549) and antimicrobial effects of Methylobacterium sp. isolate (ERI-135) from Nilgris forest soil, India. Asian Pacific J Trop Biomed, 2012; 2(9):712–716.
28.
ArdonovP, SessitschA, HaggmanH, et al.Methylobacterium-induced endophyte community changes correspond with protection of plants against pathogen attack. PLoS One, 2012; 7(10):e46802.
HollandMA, PolaccoJC. 1996. U.S. Patent No. 5,512,069.
32.
Biological Products Industry Alliance. Markets for Biological Products: Global Market Landscape. Available at: http://bpia.org/markets-for-biological-products-global-market-landscape/ (Last accessed April2018).