Species
+

Veronica longifolia L.

Garden Speedwell, Longleaf speedwell, Wulki rozraz, long-leaf speedwell

Climate known 56 photographs
Add one to my plants Sow seed

Every figure on this page is derived from public data by a stated rule and says its source; nothing here is written by a person or a model, except the Wikipedia passage, which is quoted and marked as such. How it is made.

Summary

Veronica longifolia, known as garden speedwell or longleaf speedwell, is a flowering plant in the family Plantaginaceae where many introduced varieties in North America are native to Europe and Western Asia.

Text from Wikipedia, “Veronica longifolia”, CC BY-SA 4.0, quoted as written. Kept separate from everything derived here.

Family
Plantaginaceae
Described by
L.
Native to
Denmark, Norway, Sweden +43
Wild records
1780 in range· 1041 open

At a glance

Warmest month
21°C
Jul, mean day; nights 14 °C (CHELSA)
Rain
699mm/yr
12 wet months · peak Jul 82 mm (CHELSA)
Light
2–35DLI
mol/m²/day, winter to summer, open sky (CHELSA shortwave)
In short condensed by rule from the cultivation cards · not written by a person
Rain rule: no season, 70% of the rain takes 8 months (May to December in the northern hemisphere). Habitat rain 699 mm a year, wettest July at 82 mm, driest April at 37 mm (habitat calendar, northern hemisphere). Open sky over the habitat: 2 to 35 mol/m²/day. Cold floor -18.2 °C (1st-percentile habitat night, NASA POWER).
Each sentence is one card's own one-line form, written by the same rule as the card (Its year, Rain, Light, Temperature); the note cannot say what a card does not. Months are given for the northern hemisphere (set your site in Settings to change this), and the habitat's own alongside. The cards · the figures.

Also known as Pseudolysimachium longifolium (L.) Opiz; Veronica incana F.W.Schmidt; Veronica kosteletzskyi Opiz, 1825; Veronica longifolia f. longifolia; Veronica ruthenica Spreng. and 1 more.

Cultivation

Its year Rain rule: no season, 70% of the rain takes 8 months (May to December in the northern hemisphere).

This species’ habitat figures, and what two fixed rules read from them.

The rain rule reads no season: 70% of the year's rain (535 mm of 699 mm) takes 8 months, May to December. Mean temperature moves 24.6 °C between the warmest and coldest month. Months are the habitat's, northern hemisphere; shifted six months for a southern-hemisphere collection: November to June.

Read from the median year of CHELSA monthly rainfall and mean temperature across the envelope cells: the rain rule takes the smallest set of months carrying 70% of the rain and calls it winter when its mean is more than half a degree below the year's, summer when more than that above, and neither in between; the temperature rule, used only under 120 mm, names the cooler six months when they are at least a degree cooler than the other six. Months are shifted for the other hemisphere only where the temperature curve gives a season to reverse. A reading of the curves, not an observation of the plant.

Rain Habitat rain 699 mm a year, wettest July at 82 mm, driest April at 37 mm (habitat calendar, northern hemisphere).

This species’ habitat figures, with their source.

699 mm a year at the habitat, 535 mm of it May to December. Wettest month July at 82 mm, driest April at 37 mm. Across the envelope cells the year's total runs 537 mm to 891 mm (10th to 90th percentile of each cell's own year) (median year across the envelope cells, CHELSA; habitat calendar, northern hemisphere).

CHELSA monthly precipitation, median year across the envelope cells. The rain that falls where the species is recorded; nothing about how the plant takes water.

Light Open sky over the habitat: 2 to 35 mol/m²/day.

This species’ habitat figures, with their source.

Open sky over the habitat: 2 to 35 mol/m²/day across the year (daily light integral, median year across the envelope cells, CHELSA; the lowest 10th-percentile month across the cells is 0, the highest 90th-percentile month 38).

CHELSA shortwave radiation at each envelope cell, a daily-mean flux taken to a daily total and converted at 2.07 mol of PAR per MJ. The sky over the habitat, measured; what reaches a plant under a rock, a shrub or a shade cloth is not.

Warmth and air Cold floor -18.2 °C (1st-percentile habitat night, NASA POWER).

This species’ habitat figures, with their source.

Temperature

Coldest: the 1st-percentile night over 44 years at the typical cell is -18.2 °C, the absolute minimum -31.5 °C, about 167 frost nights a year (NASA POWER daily minima). Warmest: the 99th-percentile day is 24.7 °C. Monthly means: coldest night -9.8 °C in February (across the envelope cells -17.1 °C to 0.1 °C), warmest day 21.4 °C in July (median year across the envelope cells, CHELSA). Cold floor: -18.2 °C, which is the 1st-percentile night over 44 years at the typical cell (NASA POWER).

NASA POWER daily minima and maxima 1981–2024 at the typical cell, lapse-corrected to its elevation; CHELSA monthly means, median year across the envelope cells, CHELSA. The cold floor is the figure named in its sentence. Not a measured survival limit for any plant in a pot.

Humidity

Relative humidity at the habitat: 57 to 71% across the year (monthly means, median year across the envelope cells, CHELSA). A figure about the air, saying nothing about how the plant takes water.

CHELSA relative humidity, median year across the envelope cells.

The figures the cards read from are in Climate below, and where they came from in Natural habitat.

Climate across the habitat

Habitat climate through the yearMean day from -5 °C in Feb to 21 °C in Jul; mean night from -10 °C in Feb to 14 °C in Jul. The cold quarter, Jan to Mar, is the three months around the coldest night. 699 mm of rain a year, most in Jul. The bands show the 10th to 90th percentile across 1579 habitat cells. Over 44 years at the typical cell the absolute minimum was -31.5 °C and the 99th-percentile day 24.7 °C; neither is dated to a month. Beneath: daily light integral and relative humidity through the year, each on its own scale.-40°-30°-20°-10°10°20°30°frost24.7° 99th-percentile day (undated)-31.5° lowest night in 44 yrs (undated)°C · day and nightcold quarter0255075100125mm rainDLI 2–35RH 57–71 %JanFebMarAprMayJunJulAugSepOctNovDec
day night rain 10th–90th percentile across 1579 habitat cells cold quarter: the three months around the coldest night extremes over 44 years at the typical cell, marked at the edge: undated DLI, mol/m²/dayRH %each on its own scale
Figures by month
JanFebMarAprMayJunJulAugSepOctNovDec
Day °C-4 / -10–5-5 / -9–61 / -4–99 / 2–1315 / 8–1819 / 13–2221 / 17–2420 / 15–2315 / 9–198 / 2–141 / -5–9-3 / -9–5
Night °C-9 / -18–0-10 / -17–0-6 / -11–21 / -5–56 / 0–911 / 7–1314 / 10–1513 / 8–158 / 4–113 / -2–8-3 / -11–4-7 / -16–1
Rain mm49 / 31–7738 / 25–6040 / 26–6937 / 30–4953 / 37–6874 / 56–8782 / 62–10779 / 61–9867 / 52–8169 / 41–9058 / 40–8453 / 35–81
DLI3 / 0–68 / 3–1116 / 11–2026 / 23–2933 / 30–3635 / 32–3833 / 28–3627 / 19–3017 / 11–208 / 4–123 / 1–62 / 0–4
RH %71 / 67–7569 / 64–7364 / 62–6760 / 57–6157 / 54–6058 / 56–6160 / 58–6261 / 58–6363 / 60–6665 / 62–7068 / 66–7471 / 67–75

Each figure is the median across the 1579 grid cells holding the 1718 in-range records, with the 10th–90th percentile span across those cells after the slash where it differs. Extremes and elevation were read at the typical cell 605:3792 (59.725, 9.625). Over 44 years there: absolute minimum -31.5 °C, 1st-percentile night -18.2 °C, 99th-percentile day 24.7 °C. Normals: CHELSA V2.1 1981–2010 climatology, 0.05° cells (each the mean of ~36 1 km pixels). Envelope: median and 10th–90th percentile of each month across the 1579 distinct grid cells holding the 1718 in-range records; extremes and elevation at the typical cell 605:3792 (its coldest month's mean night nearest the median across cells); its position is the cell centre. Extremes: NASA POWER (MERRA-2) daily 1981–2024, cell 59.50_9.375, lapse-corrected -73 m at 6.5 °C/km. Elevation: ETOPO 2022, 336 m (cell mean).

Natural habitat

Native range as published by WCVP; the marker is where the records are densest and decides nothing: the climate was read across every in-range record's cell, not at the marker.
Openly licensed records inside the range, framed on where they fall.
NativeDenmark, Norway, Sweden, Austria, Belgium, Czechoslovakia, Germany, Hungary, Netherlands, Poland, France, Bulgaria, Italy, Romania, Turkey-in-Europe, Yugoslavia, Belarus, Baltic States, Central European Russia, East European Russia, North European Russia, South European Russia, Northwest European Russia, Ukraine, Altay, Buryatiya, Chita, Irkutsk, Krasnoyarsk, Tuva, West Siberia, Yakutskiya, Amur, Khabarovsk, Magadan, Primorye, Sakhalin, Kazakhstan, Kirgizistan, North Caucasus, Turkey, Inner Mongolia, Manchuria, Xinjiang, Mongolia, Korea· introduced: Great Britain, Alaska, Northwest Territories, Yukon, Alberta, British Columbia, Manitoba, Saskatchewan, New Brunswick, Newfoundland, Nova Scotia, Ontario, Prince Edward I., Québec, Montana, Washington, Illinois, Iowa, Minnesota, Missouri, North Dakota, Wisconsin, Connecticut, Indiana, Maine, Massachusetts, Michigan, New Hampshire, New Jersey, New York, Ohio, Pennsylvania, Rhode I., Vermont, West Virginia, Florida, Kentucky, Maryland
Kew's description“perennial” · “temperate”· quoted from WCVP, RBG Kew (CC BY 4.0); not derived here
Map marker66.39, 23.612 · in the densest population, 508 records (29% of those in range)
Evidence usedThe map marker and the climate envelope rest on all 1780 georeferenced records inside the native range; the map shows only the 1041 openly licensed ones, which alone would put the marker 178 km away. 57 records outside the range (gardens, roadsides, misidentifications) ignored. 62 in-range records are placed to worse than 10 km and stay on the map but off the climate.
The map markerthe map marker: the openly licensed record nearest the middle of the densest 1° population inside the densest 4° block of the 1780 in-range records; it decides nothing.

Photographs

Veronica longifoliaVeronica longifoliaVeronica longifoliaVeronica longifoliaVeronica longifoliaVeronica longifoliaVeronica longifoliaVeronica longifolia

Photographs: (c) Mary E. Macaulay, P.Eng., some rights reserved (CC BY); (c) Yves Bas, some rights reserved (CC BY) (2); (c) Andre Hosper, some rights reserved (CC BY) (2); (c) Георгий Виноградов (Georgy Vinogradov), some rights reserved (CC BY); (c) Aleksei Baushev, some rights reserved (CC BY) (2).

Photographs: iNaturalist did not answer when this page was built; what is shown came from the sources that did.

Papers naming this species

Works whose title or abstract names Veronica longifolia, most cited first, from OpenAlex (CC0). A mention, not a cultivation source: nothing on this page is drawn from them.

Chlorinated Iridoid Glucosides from Veronica longifolia and Their Antioxidant Activity
Søren Rosendal Jensen, Charlotte H. Gotfredsen, Ü. Şebnem Harput, İclal Saraçoğlu (2010) · Journal of Natural Products
New alternate hosts for the rustsCronartium ribicolaandCronartium flaccidumin Finland
Juha Kaitera, Ritva Hiltunen (2012) · Canadian Journal of Forest Research
Diversity of the Seed Material of Selected Plant Species of Naturally Valuable Grassland Habitats in Terms of the Prognosis of Introduction Success
Maria Janicka, Bogumiła Pawluśkiewicz, Elżbieta Małuszyńska, Tomasz Gnatowski (2021) · Sustainability
Forest meadows of the West Siberian Plain and revision of the order Carici macrourae–Crepidetalia sibiricae
A. Yu. Korolyuk, М. П. Тищенко, S. M. Yamalov (2016) · Vegetation of Russia
Chemical composition of essential oils from flowers of veronica Longifolia L., Veronica Incana L. and Veronica Spicata L.
А. М. Ковалева, Alina Osmachko, Тetiana Ilina, Olga Goryacha (2022) · ScienceRise Pharmaceutical Science
Korean native Veronica rotunda and Veronica longifolia are day-neutral plants with no vernalization requirements
So Hyeon Lim, Nam Hyun Im, Seong Kwang An, Hyo Beom Lee (2021) · Horticulture Environment and Biotechnology
Antiviral activity of Siberian wild and cultivated plants
Natalya Mazurkova, Mariya Protsenko, И. Е. Лобанова, Ekaterina Filippova (2020) · BIO Web of Conferences
Impact of beaver dams on surface channel capacity and phytocoenoses diversity of Łąki Soleckie (PLH140055)
Ryszard Oleszczuk, Janusz Urbański, Bogumiła Pawluśkiewicz, Sławomir Bajkowski (2024) · Journal of Water and Land Development
Preliminary Results of the Introduction of Dicotyledonous Meadow Species
Maria Janicka, Bogumiła Pawluśkiewicz, Tomasz Gnatowski (2023) · Sustainability

Similar habitat climate the 6 species whose habitat climate is nearest this one's: mean day and night, month by month, and rain on a log scale, in calendar order, so a habitat with the same seasons six months out is far, not near. Nothing else counts: not range, not family.

Other Veronica 6 in the reference

History & registers

Where this page came from built 2026-09-20 · dossier v2 · node
gbif.species answeredcarried from build of 2026-09-19 (offline re-derivation; the backbone was not asked)
gbif.synonyms answeredcarried from build of 2026-09-19 (offline re-derivation; the backbone was not asked)
gbif.vernacular answeredcarried from build of 2026-09-19 (offline re-derivation; the backbone was not asked)
wcvp.distribution answered
gbif.occurrences answeredGBIF occurrence download https://doi.org/10.15468/dl.3h4zam
climate answered
wikidata answeredcarried from build of 2026-09-19 (rederive); that build: carried from build of 2026-09-19 (rederive)
wikipedia answeredcarried from build of 2026-09-19; this build: skipped
inat.taxon not asked
inat.photos.wild answeredcarried from build of 2026-09-19; this build: skipped
inat.photos.cultivated nothing to reportcarried from build of 2026-09-19 (rederive); that build: carried from build of 2026-09-19 (rederive)
commons nothing to reportcarried from build of 2026-09-19 (rederive); that build: carried from build of 2026-09-19 (rederive)
gbif.media answered
openalex answeredcarried from build of 2026-09-19; this build: skipped

Every upstream is recorded as having answered, reported nothing, or refused. Only “nothing to report” is ever shown as an absence. Records came from 124 datasets via GBIF.org; each carries its own licence.