Atkinson, L. E., Miskelly, I.R., Moffett C.L., McCoy, C. J., Maule, A.G., Marks, N.J., and Mousley, A. 2016. Unraveling flp-11/flp-32 dichotomy in nematodes. International Journal for Parasitology 46:723–36.
Chase, D. L., and Koelle, M. R. 2007. Biogenic Amine Neurotransmitters in C. elegans (February 20, 2007). The C. elegans Research Community, ed. Wormbook. http://www.wormbook.org/chapters/www_monoamines/monoamines.html.
Gamborg, O. L., R. A. Miller, and Ojima, K. 1968. Nutrient requirements of suspension cultures of soybean root cells. Experimental Cell Research 50:151–158.
Gendrel, M., Atlas, E.G., and Hobert, O. 2016. A cellular and regulatory map of the GABAergic nervous system of C. elegans. eLife 5. https://doi.org/10.7554/eLife.17686.
Guastella, J., Johnson, C. D. and Stretton, A. O. 1991. GABA-immunoreactive neurons in the nematode Ascaris. The Journal of Comparative Neurology 307: 584–597.
Hada, A., Kumari, C., Phani, V., Singh, D., Chinnusamy, V., and Rao, U. 2020. Host-induced silencing of FMRFamide-like peptide genes, flp-1 and flp-12, in rice impairs reproductive fitness of the root-knot nematode Meloidogyne graminicola. Frontiers in Plant Science 11. https://doi.org/10.3389/fpls.2020.00894.
Hall, D. H., and Russell, R. L. 1991. The posterior nervous system of the nematode Caenorhabditis elegans: serial reconstruction of identified neurons and complete pattern of synaptic interactions. The Journal of Neuroscience 11:1–22.
Han, Z., Thapa, S., Reuter-Carlson, U., Reed, H., Gates, M., Lambert, K. N., and Schroeder, N. E. 2018. Immobility in the sedentary plant-parasitic nematode H. glycines is associated with remodeling of neuromuscular tissue. PLoS Pathogens 14:e1007198.
Jia, Y., Pan, F., Wang, S., Wang, Y., and Hu, Y. 2021. FMRFamide-like peptide 22 influences the head movement, host finding, and infection of Heterodera glycines. Frontiers in Plant Science 12:673354.
Jixiang, C., Li, Q.X., and Song, B. 2020. Chemical nematicides: recent research progress and outlook. Journal of Agricultural and Food Chemistry 68:12175–12188.
Johnson, C. D., and Stretton, A. O. 1987. GABA-immunoreactivity in inhibitory motor neurons of the nematode Ascaris. The Journal of Neuroscience 7: 223–235.
Johnston, M. J. G., McVeigh, P., McMaster, S., Fleming, C. C. and Maule, A. G. 2010. FMRFamide-like peptides in root-knot nematodes and their potential role in nematode physiology. Journal of Helminthology 84: 253–265.
Kumari, C., Dutta, T. K., Chaudhary, S., Banakar, P., Papolu, P. K., and Rao, U. 2017. Molecular characterization of FMRFamide-like peptides in Meloidogyne graminicola and analysis of their knockdown effect on nematode infectivity. Gene 619:50–60.
Lauritis, J. A., Rebois, R. V., and Graney, L. S. 1983. Development of Heterodera glycines Ichinohe on soybean, Glycine max (L.) merr., under gnotobiotic conditions. Journal of Nematology 15:272–281.
Lee, J. S., Shih, P.-Y., Schaedel, O. N., Quintero-Cadena, P., Rogers, A. K., and Sternberg, P. W. 2017. FMRFamide-like peptides expand the behavioral repertoire of a densely connected nervous system. Proceedings of the National Academy of Sciences of the United States of America 114:10726–35.
Liu, Q.-Y., Dunlap, V., and Barker, J. L. 1994. Gamma-Aminobutyric acid type A receptor antagonists picrotoxin and bicuculline alter acetylcholine channel kinetics in cultured embryonic rat skeletal muscle. Molecular Pharmacology 46:1197–1203.
Miltsch, S. M., Krücken, J., Demeler, J., Ramünke, S., Harder, A., and von Samson-Himmelstjerna, G. 2013. Interactions of anthelmintic drugs in Caenorhabditis elegans neuro-muscular ion channel mutants. Parasitology International 62:591–598.
Nelson, M. D., Lee, K. H., Churgin, M. A., Hill, A. J., Van Buskirk, C., Fang-Yen, C., and Raizen, D. M. 2014. FMRFamide-like FLP-13 neuropeptides promote quiescence following heat stress in Caenorhabditis elegans. Current Biology 24:2406–2410.
Nomura, K., Yoshizumi, S., Ozoe, F., and Ozoe, Y. 2021. “Molecular cloning and pharmacology of Min-UNC-49B, a GABA receptor from the southern root-knot nematode Meloidogyne incognita.” Pest Management Science 77:3763–3776.
Rebois, R. V., and Huettel, R. N. 1986. Population dynamics, root penetration, and feeding behavior of Pratylenchus agilis in monoxenic root cultures of corn, tomato, and soybean. Journal of Nematology 18: 392–397.
Stewart, G. R., Perry, R. N., and Wright, D. J. 1994. Immunocytochemical studies on the occurrence of gamma-aminobutyric acid in the nervous system of the nematodes Panagrellus redivivus, Meloidogyne incognita and Globodera rostochiensis. Fundamental and Applied Nematology. 17:433–439.
van Megen, H., van den Elsen, S., Holterman, M., Karssen, G., Mooyman, P., Bongers, T., Holovachov, O., Bakker, J., and Helder, J.2009. A phylogenetic tree of nematodes based on about 1200 full-length small subunit ribosomal DNA sequences. Nematology 11:927–950.
Wright, D. J., Birtle, A. J., and Roberts, I. T. 1984. Triphasic locomotor response of a plant-parasitic nematode to vermectin: Inhibition by the GABA antagonists bicuculline and picrotoxin. Parasitology 88:375–382.
Zunke, U. 1990. Observations on the invasion and endoparasitic behavior of the root lesion nematode Pratylenchus penetrans. Journal of Nematology 22: 309–320.