The quality-filtered native-record profile for Philodendron erubescens centers on 19.7°C annual mean temperature and 1906 mm annual precipitation. Its robust p10–p90 climate envelope is wider than those two medians: the coldest-month minimum spans 11.8–18.7°C, while modeled annual rainfall spans 1523–2967 mm.

This is a computed environmental fingerprint built from 14 spatially thinned climate points attached to filtered GBIF records inside the POWO native range of Colombia. It describes where retained records occur in long-term gridded climate; it is not an indoor-care prescription or a physiological tolerance test.

Native-sample note: this species has 14 spatially thinned climate points and low native-range confidence. Interpret the percentile envelope cautiously because a narrow record sample cannot represent every part of the species’ native range.

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Blushing Philodendron Climate DNA at a glance

Signal Computed result
Annual mean temperature median 19.7°C
Coldest-month minimum, p10–p90 11.8–18.7°C
Warmest-month maximum, p10–p90 21.6–26.3°C
Annual precipitation median 1906 mm
Precipitation seasonality median 35.9 CV
Evidence 14 climate points; low confidence (39/100)

The source plant is described as a wet-tropical climber. That botanical context matters because the same regional rainfall, humidity, or radiation can be experienced very differently by a climber, epiphyte, geophyte, tree, or succulent. The page therefore reports the climate evidence without turning it into a universal potting or watering formula.

Philodendron erubescens Climate DNA percentile ranges Five occurrence-derived climate distributions. Thin lines show p10 to p90, thick green bars show p25 to p75, and dots show medians. Annual mean temperature16.4°Cmedian 19.7°C22.4°CColdest-month minimum11.8°Cmedian 14.9°C18.7°CWarmest-month maximum21.6°Cmedian 23.7°C26.3°CAnnual precipitation1523 mmmedian 1906 mm2967 mmPrecipitation seasonality27.8 CVmedian 35.9 CV47.9 CV
Thin line: p10–p90. Thick bar: middle 50% (p25–p75). Dot: median. Each row uses its own scale.

What stands out in the computed profile

  • Temperature center: The annual-mean median is 19.7°C, with the middle 50% of sampled points between 18.5 and 20.4°C. In this model that is a mild annual baseline.
  • Cold and heat edges: The robust outer envelope runs from 11.8°C at the p10 coldest-month minimum to 26.3°C at the p90 warmest-month maximum. The 14.5°C span is narrow; it is an occurrence-climate span, not a laboratory tolerance range.
  • Rainfall volume: Median modeled annual precipitation is 1906 mm, while the p10–p90 range is 1523–2967 mm. The wet end is 1.9 times the dry end, evidence that one annual total would hide real geographic variation.
  • Rainfall timing: The precipitation-seasonality median is 35.9 CV, placing this record set in the fairly even band used by this renderer. That describes variation through the year, not how often to water a pot.
  • Atmosphere and open sky: Relative humidity centers on 66.5%, while solar radiation centers on 17.3 MJ/m²/day. Both are gridded outdoor climate values; neither reports the humidity or light at an indoor leaf.

Together, those observations describe the climate attached to retained records of Philodendron erubescens. They do not establish the species’ physiological limits, and they should not be converted directly into thermostat, humidifier, or watering targets.

Native-record climate envelope

Variable p10 p25 Median p75 p90
Annual mean temperature 16.4°C 18.5°C 19.7°C 20.4°C 22.4°C
Coldest-month minimum 11.8°C 13.9°C 14.9°C 15.4°C 18.7°C
Warmest-month maximum 21.6°C 22.1°C 23.7°C 25.3°C 26.3°C
Annual precipitation 1523 mm 1624 mm 1906 mm 2521 mm 2967 mm
Precipitation seasonality 27.8 CV 30.2 CV 35.9 CV 40.7 CV 47.9 CV
Relative humidity 61.3% 63.8% 66.5% 70.0% 70.6%
Solar radiation 12.9 MJ/m²/day 16.7 MJ/m²/day 17.3 MJ/m²/day 18.8 MJ/m²/day 21.1 MJ/m²/day

The outer p10–p90 values are a robust descriptive envelope; the middle p25–p75 band shows where the central half of sampled climate values falls. Neither band is an “ideal range.” Occurrence density, collection effort, native-range boundaries, coordinate quality, and CHELSA grid resolution all shape what appears here.

Native occurrence records

Zoomed quality-filtered Philodendron erubescens occurrence coordinates Coordinate plot automatically zoomed to the retained native-country GBIF records. Axes show longitude and latitude in degrees. -77.0°-75.9°-74.8°-73.7°-72.7°2.0°3.3°4.7°6.0°7.4°
Auto-zoomed coordinate plot of 14 retained native-country GBIF points. This is a record footprint, not a complete species-range map.

The CHELSA climate-extraction sample covers 14 quarter-degree grid cells across the native-country filter (CO). Its coordinate bounds run from 2.446° to 6.905° latitude and -76.627° to -73.023° longitude. Bounds show sampled coverage, not the legal or botanical outline of the species’ range.

Filtering stage Records
GBIF records returned before filters 58
Accepted before spatial thinning 17
Usable coordinates after spatial thinning 14
CHELSA climate-extraction points 14

Recorded rejection counts were basis of record: 11, license: 30. The pipeline also constrains records to the POWO native-country list, removes duplicate spatial cells, and retains the source timestamp and record-set hash. A low count can be scientifically honest: it is better to expose weak coverage than to fill the gap with invented precision.

How this profile compares inside its 10-plant cluster

Within this release cluster, Blushing Philodendron ranks #2 of 10 for median coldest-month temperature, #7 for annual-mean temperature, #3 for annual precipitation, #10 for precipitation seasonality, and #10 for usable climate-point sample size. Ranks compare only the ten selected profiles and are descriptive, not measures of plant quality or indoor difficulty.

The closest profiles in the same normalized seven-variable comparison are:

The cluster was selected deterministically: the remaining ten profiles after the current 20-plant dataset is split at the median coldest-month temperature. This keeps the collection rule reproducible and prevents an editorial label from overriding the data.

What this can—and cannot—change about care

Native-record climate can improve the questions you ask. For Philodendron erubescens, the wet rainfall median and fairly even precipitation signal indicate that annual rain volume alone is incomplete. Indoors, substrate structure, pot volume, root density, airflow, temperature, and actual light determine drying. Never convert millimeters of regional rainfall into a weekly watering interval.

The same limit applies to temperature, humidity, and solar radiation. CHELSA describes outdoor long-term grid cells; glass, walls, heating, air conditioning, shade, and distance from a window create a different microclimate. Use this profile to understand the source evidence and to frame observations, then use the Philodendron care guide for practical indoor-care context.

Confidence and limits

Confidence is low (39/100). The score reflects sample size, spatial coverage, and coordinate-precision reporting in this pipeline version. It is not a probability that the numbers are “correct,” and it does not measure how well a particular plant will perform in a particular home.

Important limits remain: GBIF is a record of observations and specimens, not a balanced field survey; a native-country filter is coarser than a verified native-range polygon; historical and cultivated records can be difficult to classify; CHELSA values are modeled long-term normals rather than sensor readings at each plant. The page reports ranges and provenance so those constraints remain visible.

Methodology and sources
  1. Resolve the accepted taxon through the GBIF Species API and retain the taxon key 2871297.
  2. Constrain the occurrence query using the POWO native distribution: Colombia.
  3. Filter GBIF occurrence records for usable coordinates, uncertainty, basis of record, establishment signals, duplicate locations, native countries, and compatible CC0/CC-BY licensing.
  4. Spatially thin accepted records at 0.05° before climate extraction so dense collecting areas do not dominate the distributions.
  5. Sample CHELSA-climatologies V2.1 1981-2010 grids using stable hash sample, maximum 30 post-filter and spatially thinned GBIF records and calculate p10, p25, median, p75, and p90 deterministically.
  6. Persist source URLs, timestamps, rejection counts, record hash 67c6fbdf610a592cfececf309c7ed3b1bd478dc25dd21b8c9e83d454c66f7db5, and fact hash 80b4cd156063610738a364496a32ab02b86168e006890116cca92af1de3769c0.

Source licenses recorded by the pipeline: occurrences, CC-BY-4.0 on retained records; CHELSA climate layers, CC0-1.0. Derived summaries and comparisons are transformations of the cited source data.

Continue from the data

Bring the evidence back to your actual plant

Use KnowYourPlant to identify the species, record changes, and compare this broad climate context with conditions in your home.

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