{{Short description|Larva of an insect that lives in and eats the leaf tissue of plants}} [[File:Cameraria ohridella 150893811.jpg|thumb|Leaf miner damage to a horse chestnut tree]] thumb|Leaf with minor miner damage thumb|Tomato with leaf miner damage [[Image:Phyllocnistis hyperpersea mine.JPG|thumb|Leaf mines by the moth ''Phyllocnistis hyperpersea'' on a ''Persea borbonia'' leaf. The red arrow indicates the pupal crypt.]] [[Image:Cryptocarya foveolata from Cobark Park Barrington Tops.jpg|thumb|Leaf miner trail on a fallen leaf in a Gondwana cool temperate rainforest. Note the initial thin width of the insect trail, becoming wider as the insect grows while it navigates around the leaf. ''Cryptocarya foveolata'' from Cobark Park, Barrington Tops, Australia]]
A '''leaf miner''' is a larval stage of various insect species that live and feed within the tissues of a plant's leaves. The term does not describe a single taxonomic group, but rather a feeding behavior known as "leaf mining" that has evolved independently across several insect orders. Leaf miners are considered both ecologically significant and economically important because of their role in ecosystems and their impact on agriculture and horticulture. Leaf miners consume the inner tissues of leaves while leaving the outer epidermal layers largely intact. This results in distinctive patterns or "mines" on the leaves, which can appear as winding trails, blotches, or tunnels. Leaf mining is an ancient ecological strategy that has been employed by insect larvae since at least the beginning of the Permian period, around 295 million years ago.<ref>{{Cite journal |last1=Laaß |first1=Michael |last2=Luthardt |first2=Ludwig |last3=Trümper |first3=Steffen |last4=Leipner |first4=Angelika |last5=Hauschke |first5=Norbert |last6=Rößler |first6=Ronny |date=2025-08-25 |title=Host-specific leaf-mining behaviour of holometabolous insect larvae in the early Permian |journal=Scientific Reports |language=en |volume=15 |issue=1 |article-number=31241 |doi=10.1038/s41598-025-15413-x |issn=2045-2322 |pmc=12378220 |pmid=40855100 |bibcode=2025NatSR..1531241L }}</ref>
== Taxonomy == Leaf mining behavior is observed in multiple insect groups, including:
* Lepidoptera (moths) * Diptera (flies, especially Agromyzidae) * Hymenoptera (specifically sawflies) * Coleoptera (beetles)<ref>Świętojańska, Jolanta & Borowiec, Lech & Stach, Małgorzata. (2014). Redescription of immatures and bionomy of the Palaearctic species Dicladispa testacea (Linnaeus, 1767) (Coleoptera: Chrysomelidae: Cassidinae: Hispini), a leaf-mining hispine beetle. Zootaxa. 3811. 1-33. 10.11646/zootaxa.3811.1.1.</ref>
Each group contains numerous species with larvae that are specialized for leaf-mining on their preferred host plants.
== Life cycle == Adult leaf mining insects typically lay eggs on or within the surface of a host plant's leaf. When the larvae hatch, they burrow into the leaf and begin feeding between the epidermal layers. Much like woodboring beetles, leaf miners are protected from many predators while feeding within the tissues of the leaves,<ref>Connor, Edward & Taverner, Melissa. (1997). The Evolution and Adaptive Significance of the Leaf-Mining Habit. Oikos. 79. 6. 10.2307/3546085.</ref> selectively eating only the layers that have the least amount of cellulose. After completing larval development, the insect pupates either inside the mine, on the leaf surface of the leaf or within the soil below the host plant depending on the species. Emerging adult insects can then continue their cycle.
== Plant defenses == Plants have developed a variety of defense strategies to reduce damage from leaf miners. These defenses can be structural, chemical, or physiological and may act either directly against the larvae or indirectly by attracting natural enemies.
=== Structural defenses ===
* '''Leaf toughness and thickness''': Some species of leaf mining insect will only lay eggs on the younger leaves of its specific host plant.<ref>{{Cite web |last=Faeth |first=Stanely H. |date=2025-09-22 |title=Novel Aspects of Host Tree Resistance to Leafminers. |url=https://www.nrs.fs.usda.gov/pubs/gtr/gtr_ne153/gtr_ne153_219.pdf |access-date=2025-09-22 |website=United States Forest Service Northern Research Station}}</ref> The older and larger leaves of orange trees such as ''Citrus × sinensis'' can resist infestation from the citrus leaf miner (''Phyllocnistis citrella''), however the younger thinner leaves are highly susceptible.<ref>Nawaz R, Abbasi NA, Hafiz IA, Khan MF, Khalid A. Environmental variables influence the developmental stages of the citrus leafminer, infestation level and mined leaves physiological response of Kinnow mandarin. ''Sci Rep''. 2021;11(1):7720. Published 2021 Apr 8. doi:10.1038/s41598-021-87160-8</ref> * '''Trichomes (leaf hairs)''': Plants that possess trichomes on their leaves have been found to deter leaf miners.<ref name=":0">Hawthorne, D. J., J. A. Shapiro, W. M. Tingey, and M. A. Mutschler. 1992. "Trichome-Borne and Artificially Applied Acylsugars of Wild Tomato Deter Feeding and Oviposition of the Leafminer ''Liriomyza trifolii''." ''Entomologia Experimentalis et Applicata'' 65 (1): 65–73. <nowiki>https://doi.org/10.1111/j.1570-7458.1992.tb01628.x</nowiki>.</ref> The plant species ''Solanum pennellii'' possesses leaves covered in tiny hairs, which make it resistant to the leaf mining fly ''Liriomyza trifollii''. The cultivated tomato (''Solanum lycopersicum'') however doesn't possess as many trichomes therefore is much more suscpectible to the leaf miner.<ref name=":0" /> * '''Leaf variegation:''' Plants can sometimes evolve to use leaf variegation in order to mimic leaf miner damage, this then makes the plant less appealing to leaf mining insects that seek a healthy host plant to desposit their eggs. It is believed that some patterns of leaf variegation are adaptations used by plants to deceive adult leaf miners into mistaking the variegated leaf as one that is already hosting a larval leaf miner.<ref>{{cite web |last1=Walker |first1=Matt |date=19 June 2009 |title=The plant that pretends to be ill |url=http://news.bbc.co.uk/earth/hi/earth_news/newsid_8108000/8108940.stm |access-date=13 April 2016 |website=BBC News}}</ref> The plant species ''Caladium steudnerifolium'' can possess individuals with leaves that exhibit variegation that strongly resembles the leaf damage caused by the larvae of leaf miners. Infestations of leaf miner were found to be significantly higher in ''C. steudnerifolium'' leaves that lacked variegatation.<ref>{{cite journal |last1=Soltau |first1=U. |last2=Dötterl |first2=S. |last3=Liede-Schumann |first3=S. |date=2009 |title=Leaf variegation in ''Caladium steudneriifolium'' (Araceae) – A case of mimicry? |journal=Evolutionary Ecology |volume=23 |issue=4 |pages=503–512 |doi=10.1007/s10682-008-9248-2 |bibcode=2009EvEco..23..503S |s2cid=5033305}}</ref>
=== Chemical defenses ===
* '''Tannins:''' Plants will use a variety of organic polyphenolic compounds such as tannins to poison and deter insect herbivores.<ref>Materska, M., Pabich, M., Sachadyn-Król, M., Konarska, A., Weryszko-Chmielewska, E., Chilczuk, B., Staszowska-Karkut, M., Jackowska, I., & Dmitruk, M. (2022). The Secondary Metabolites Profile in Horse Chestnut Leaves Infested with Horse-Chestnut Leaf Miner. ''Molecules (Basel, Switzerland)'', ''27''(17), 5471. <nowiki>https://doi.org/10.3390/molecules27175471</nowiki></ref> Leaves containing high tannin levels have been found to cause leaf mining ''Cameraria'' to become more susceptible to parasitism from parasitic species of Hymenoptera. High tannin levels within consumed leaves were also found to affected the development of larva by causing a decrease in weight in the developing pupa.<ref>Faeth, Stanley H., and Thomas L. Bultman. 1986. "Interacting Effects of Increased Tannin Levels on Leaf-Mining Insects." ''Entomologia Experimentalis et Applicata'' 40 (3): 297–301. <nowiki>https://doi.org/10.1111/j.1570-7458.1986.tb00515.x</nowiki></ref> * '''Saponins:''' Tree species such as the Red buckeye (''Aesculus'' ''pavia'') produces saponins within its leaves to aid leaf resistance against the larvae of the Horse Chestnut Leafminer (''Cameraria ohridella).''<ref>Ferracini, Chiara, Paolo Curir, Marcello Dolci, Virginia Lanzotti, and Alberto Alma. 2010. "Aesculus pavia Foliar Saponins: Defensive Role against the Leafminer ''Cameraria ohridella''." ''Pest Management Science'' 66 (4): 399–405. <nowiki>https://doi.org/10.1002/ps.1940</nowiki></ref>
=== Physiological responses ===
* '''Leaf abscission:''' Some plants can shed their leaves when affected by leaf miners in a process known as abscission. The arroyo willow (''Salix lasiolepis'') will often release leaves that contain the larva of leaf mining ''Phyllonorycter'' species''.'' This process has been found to greatly reduce the survival rates of ''Phyllonorycter'' larva within the abscised leaves.<ref>Preszler, Ralph W., and Peter W. Price. 1993. "The Influence of ''Salix'' Leaf Abscission on Leaf-Miner Survival and Life History." ''Ecological Entomology'' 18 (2): 150–154. <nowiki>https://doi.org/10.1111/j.1365-2311.1993.tb01196.x</nowiki></ref>
== Identification == The pattern of the feeding tunnel and the layer of the leaf being mined is often diagnostic of the insect responsible, sometimes even to species level. The mine often contains frass, or droppings, and the pattern of frass deposition, mine shape, and host plant identity are useful to determine the species and instar of the leaf miner. Some mining insects feed in other parts of a plant, such as the surface of a fruit or the petal of a flower.
==Relationship with humans== [[Image:Cameraria ohridella 8419.jpg|thumb|left|Horse-chestnut leaf miner (adult)]] Leaf miners are regarded as pests by many farmers and gardeners as they can cause damage to agricultural crops and garden plants, and can be difficult to control with insecticide sprays as they are protected inside the plant's leaves. Spraying the infected plants with spinosad, an organic insecticide, can control some leaf miners. Spinosad does not kill on contact and must be ingested by the leaf miner. Two or three applications may be required in a season. However, this will have harmful ecological effects, especially if sprayed when bees or other beneficial arthropods are present.<ref>{{cite journal |last1=Tomé |first1=Hudson Vaner |last2=Barbosa |first2=Wagner |last3=Martins |first3=Gustavo F. |last4=Guedes |first4=Raul Narciso |title=Spinosad in the native stingless bee Melipona quadrifasciata: Regrettable non-target toxicity of a bioinsecticide |journal=Chemosphere |year=2015 |volume=124 |pages=105–109 |doi=10.1016/j.chemosphere.2014.11.038 |pmid=25496737 |bibcode=2015Chmsp.124..103T |url=https://www.sciencedirect.com/science/article/pii/S0045653514013563 |access-date=4 September 2021|url-access=subscription }}</ref><ref>{{cite journal |last1=Pasquet |first1=Alain |last2=Tupiner |first2=Nora |last3=Mazzia |first3=Christophe |last4=Capowiez |first4=Yvan |title=Exposure to spinosad affects orb-web spider (Agalenatea redii) survival, web construction and prey capture under laboratory conditions |journal=Journal of Pest Science |date=August 25, 2015 |volume=89 |issue=2 |pages=507–515 |doi=10.1007/s10340-015-0691-x |s2cid=6156257 |url=https://link.springer.com/article/10.1007/s10340-015-0691-x |access-date=4 September 2021}}</ref>
Leaf miner infection of crops can be reduced or prevented by planting trap crops near the plants to be protected. For example, lambsquarter and columbine will distract leaf miners, drawing them to those plants and therefore reducing the incidence of attack on nearby crops. This is a method of companion planting.<ref>{{cite web |title=Companion planting and trap cropping vegetables |url=https://extension.umn.edu/yard-and-garden-news/companion-planting-and-trap-cropping-vegetables |website=University of Minnesota Extension |access-date=2021-09-04 |archive-date=2021-09-04 |archive-url=https://web.archive.org/web/20210904203314/https://extension.umn.edu/yard-and-garden-news/companion-planting-and-trap-cropping-vegetables |url-status=dead }}</ref>
[[File:Phyllocnistis magnoliella caterpillar. leaf mine.jpg|thumb|''Phyllocnistis magnoliella'' in magnolia leaf.]]Some leaf miners are known to cause outbreaks due to population spikes. These outbreaks can defoliate a large amount of plants within a short time period, damaging crops and forest plantations, as well as altering the local ecosystems and nutrient availbility. <ref name=":1">{{Cite journal |last=Woodman |first=Samuel G. |last2=Khoury |first2=Sacha |last3=Fournier |first3=Ronald E. |last4=Emilson |first4=Erik J. S. |last5=Gunn |first5=John M. |last6=Rusak |first6=James A. |last7=Tanentzap |first7=Andrew J. |date=2021-11-03 |title=Forest defoliator outbreaks alter nutrient cycling in northern waters |url=https://www.nature.com/articles/s41467-021-26666-1 |journal=Nature Communications |language=en |volume=12 |issue=1 |pages=6355 |doi=10.1038/s41467-021-26666-1 |issn=2041-1723|pmc=8566564 }}</ref>
==See also== *Agromyzidae (leaf miner flies) *''Pegomya hyoscyami'' (spinach/beet leaf miner) *Douglasiidae (including ''Tinagma'', the largest genus of Douglasiidae) *Gracillariidae *''Liriomyza sativae'' (vegetable leaf miner) *''Liriomyza trifolii'' (American serpentine leaf miner) *''Malacosoma'' ('tent caterpillars')<ref name=":1" /> *Nepticulidae *Horse-chestnut leaf miner (''Cameraria ohridella'') *Tenthredinidae (some species) *Tischerioidea (trumpet leaf-miner moths) *Folivore
==References== {{Reflist}}
==External links== {{Commons category|Leaf mining}} *[http://www.leafmines.co.uk/ British leafminers] - many of which are distributed widely across Europe. *[http://www.ukflymines.co.uk/index.php The leaf and stem mines of British flies and other insects]. Includes illustrated keys for identification of mines by host-plant genus and detailed descriptions of over 900 species along with their distribution in Great Britain and Northern Ireland and elsewhere. *[http://www.bladmineerders.nl/ Leafminers of Europe] - covers over 1800 leafmining insect species. *[http://entomology.ifas.ufl.edu/fasulo/woodypest/leafmine.htm Leafminers of southeastern U.S. woody ornamentals] {{Webarchive|url=https://web.archive.org/web/20120220071353/http://entomology.ifas.ufl.edu/fasulo/woodypest/leafmine.htm |date=2012-02-20 }} on the UF / IFAS Featured Creatures Web site *[http://entomology.ifas.ufl.edu/creatures/veg/leaf/a_serpentine_leafminer.htm ''Liriomyza trifolii'', American serpentine leafminer] *[http://entomology.ifas.ufl.edu/creatures/veg/leaf/vegetable_leafminer.htm ''Liriomyza sativae'', vegetable leafminer] *[http://entomology.ifas.ufl.edu/creatures/citrus/citrus_leafminer.htm ''Phyllocnistis citrella'', citrus leafminer] *[http://cisr.ucr.edu/citrus_leafminer.html CISR: Citrus Leaf Miner] Center for Invasive Species Research page on Citrus Leaf Miner
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Category:Agricultural pest insects Category:Folivores Category:Leaf miners