High Monte

High Monte
The High Monte is a montane shrubland ecoregion confined to Argentina, running along the eastern slopes of the Andes from the vicinity of Salta south to Mendoza, set between the Sierras Pampeanas and the main Andean ridge and bounded by the arid Puna to the north and the Chaco and Espinal woodlands to the east. Its characteristic cover is evergreen scrubland dominated by Larrea shrubs (the jarillas, or creosote bushes), with open algarrobo woodland of Prosopis alba and Prosopis nigra where groundwater is reachable, alongside genera such as Bulnesia and Bougainvillea and an abundance of cacti and bromeliads in the north. The climate is temperate and arid to semi-arid, with sparse rainfall that falls mainly in the austral summer when the South American monsoon pushes moist air across the region. Sitting in the Andean rain shadow, it shelters notable endemics and a flagship southern mountain cavy, and its burrowing parrots act as important dispersers of algarrobo seeds. For gardeners in dry, hot-summer climates, the ecoregion is the native home of drought-hardy ornamental and shade genera including Prosopis, Larrea, and Bougainvillea.
RESOLVE 592
Neotropic
45,083 sq mi
Montane Grasslands & Shrublands
Landscape type
Montane Grasslands & Shrublands
Plant region
Neotropic
Region footprint
45,083 sq mi
Habitat pressure
Nature Could Recover (Dinerstein NNH 3)
Use this as the broad planting pattern for the region: High-elevation grasslands, meadows, and shrublands above the treeline or in mountain basins, including alpine and páramo systems. Cool temperatures, intense sunlight, and specialized, often endemic flora characterize them. For garden decisions, pair that context with the plant list below, then narrow by your site's light, water, soil, and mature-size constraints.

Plants that can handle this region

A climate-fit shortlist from Plotwright's catalog. Start with the reliable fits, then use each plant page to check light, water, soil, mature size, and local availability.
Showing 569 of 569 climate-fit plants for this region.
Reliable climate fits
Good bets for now and later
525 plants
These plants fit the region today and stay within range under the mid-century projection. Start here when you want choices with the least climate regret.
Good now, not later
Good now, less certain later
12 plants
These plants fit the region as it is today. The projection moves them outside their listed range, so treat them as shorter-horizon or higher-care choices.
A close stand of balsam firs seen from ground to tip, their narrow spire crowns and short dense branches dusted with a light coating of snow, against a clear blue sky.
Abies balsamea
Balsam fir
Balsam fir (Abies balsamea) is THE Christmas tree of the northeast and, for most gardens, a tree to admire rather than plant. Missouri Botanical Garden is unambiguous about why: the species is native to cool climates and is not recommended for planting in the hot and humid summer conditions south of USDA Zone 5, it is generally intolerant of urban pollution, and MBG explicitly does not recommend it for its own St. Louis climate. Wikipedia puts the same limit the other way round - it wants a mean annual temperature near 40°F with consistent moisture, and low moisture combined with high temperature is what stops the range. This is a boreal tree. It runs from Labrador and Newfoundland west to Alberta and south to Minnesota, Wisconsin, New England and New York, then survives in the Appalachians only by climbing, hanging on at 2,500 to 5,000 feet as far south as Virginia and West Virginia. Where it does suit the climate it is superb: a narrow aromatic spire of 50 to 70 feet and only 15 to 25 feet wide, clothed in flat blunt needles 0.6 to 1.2 inches long, dark green above with two chalk-white stomatal bands beneath and twisted at the base so they lie in two horizontal ranks either side of the shoot. Two features are worth learning by hand. The young bark is smooth and grey and studded with RESIN BLISTERS that spray when punctured - no spruce or pine does that - and the erect cones, 2 to 3 inches and dark purple, ripen brown and DISINTEGRATE on the branch in September, dropping their scales and leaving a bare central spike standing on the twig. A fir cone is therefore something you almost never find whole on the ground, which is the single fastest way to tell Abies from Picea. That resin is also the reason this tree has a place in the history of optics: Canada balsam, the oleoresin tapped from those bark blisters, dries to a transparent mass with a refractive index near 1.52, effectively the same as crown glass, so it worked as an invisible glue for cementing lens elements and became the standard mounting medium for microscope slides from about 1830. It was phased out during the Second World War for polyester, epoxy and urethane adhesives, which do not yellow and have far better thermal and solvent resistance. The honest catch list is long: balsam woolly adelgid, spruce budworm (this is the budworm's preferred main host), bark beetles, spider mites in hot spells, cankers, heart rot, root rot, needle rust and twig blight, plus heavy deer browsing, shallow roots that make it wind-firm only in a stand, and a working life measured in decades rather than centuries.
Tree
Full sun / Part shade
Consistent moisture
Zones 3a-6b
Climate: moderate
Focal point
Structure
Grand fir boughs seen from above, the flat needles laid in strictly two-ranked combs either side of brown twigs, with needles of clearly unequal length, over brown forest-floor leaf litter and moss.
Abies grandis
Grand fir
Grand fir (Abies grandis) is one of the great trees of the Pacific Northwest and a poor choice for most gardens, and those are the same fact rather than two: it is built for cool, wet, deep-soiled maritime ground and it is built enormous. Missouri Botanical Garden gives it 100 to 250 feet with a 4 to 6 foot trunk, says it performs poorly in most areas of the eastern United States, and states flatly that it is not recommended for planting south of USDA Zone 6. It is also fast - the coastal form can put on more than 5 feet a year while young - so the mistake compounds quickly, and it is not a durable tree in return: historically it reached nearly 300 years, but 100 is more typical under modern stress. Its bark is thin and it cannot seal a wound with pitch, so fire scars, pruning cuts and logging damage open the trunk to heart rot, and east of the Cascades a trunk carrying Indian paint fungus is rotten inside whether or not the crown looks it. Balsam woolly adelgid, bark beetles, root rot and needle rust are all on Missouri Botanical Garden's problem list, and western spruce budworm epidemics killed grand fir at scale in the eastern Cascades and the Blue Mountains in the late twentieth century. What is genuinely wonderful about it belongs on the label too. The needles are flat, blunt and laid in two neat horizontal ranks like the teeth of a comb, and along one side of a twig they alternate short, long, short - a sawtooth that white fir rarely shows and the quickest way to name the tree. Crushed, they smell strongly of tangerine, which is why it is also called stinking fir, and no other fir in this group smells like it. The cones stand UPRIGHT on the upper branches and never fall whole; they break apart on the tree in autumn and leave a bare spike standing on the branch, which is the single cleanest way to separate any Abies from a spruce or a pine.
Tree
Full sun / Part shade
Consistent moisture
Zones 5a-6b
Climate: narrow
Structure
Focal point
Red spruce crowns with full conical outlines and slightly drooping branches standing along a meadow edge, silhouetted against a deep blue cloudless sky.
Picea rubens
Red spruce
Red spruce (Picea rubens) is the best-documented case of a tree damaged by air pollution anywhere in the world, and that is the honest headline rather than anything horticultural. Through the 1970s and 1980s, high-elevation stands across the Adirondacks, the Green Mountains and the central and southern Appalachians lost roughly a quarter to a half of their canopy trees. The mechanism took twenty years to pin down and turned out to be indirect: acid fog and mist leach calcium out of the needle cell membranes, and decades of acid deposition strip exchangeable calcium out of already-poor soils while mobilising aluminium that is toxic to fine roots. A calcium-starved needle loses cold tolerance, so the tree is killed not by the acid but by an ordinary winter it should have survived. The controlled proof came from Hubbard Brook in New Hampshire, where a watershed refertilised with calcium silicate in 1999 lost roughly a third as much current-year foliage as the untreated reference watershed in the severe winter-injury year of 2003, the reference losing about 75 per cent of it. The ending is genuinely good news, which is rare in this catalog: after the 1990 Clean Air Act Amendments cut utility sulphur dioxide by around forty per cent, more than three-quarters of monitored red spruce have been growing faster since about 2001. The second thing to know is that this is the tonewood - the Adirondack spruce of pre-war Martin guitars, still the premium soundboard for steel-string guitars, violin bellies and piano boards, and priced accordingly after mid-century overcutting. The third thing is the caveat the Lady Bird Johnson Wildflower Center states flatly: this species is not well suited to cultivation. It wants cool foggy montane summers, permanently moist acid ground and no lime, its roots sit in the top foot of soil so it blows over, and it is often defoliated by spruce budworm. Plant it because you are restoring an Appalachian or northeastern spruce forest, not because you want a garden conifer.
Tree
Full sun / Part shade
Consistent moisture
Zones 3a-6b
Climate: moderate
Structure
Subalpine firs with very narrow steeple crowns scattered across a green subalpine meadow, with lingering snowfields, bare rock and a cloud-covered peak behind them.
Abies lasiocarpa
Subalpine fir
Subalpine fir (Abies lasiocarpa) is the narrowest conifer in western North America and, for most gardens, the wrong tree. It is a timberline species: the US Forest Service silvical account puts its climate at a mean July temperature of 45 to 60°F, with more than 24 inches of precipitation of which much falls as snow, on ground that is frozen or under snow for a large part of the year. Bring it down the mountain into a hot summer, a humid one, or a polluted one and it sulks, thins and dies, and it does so slowly enough that people keep watering it. The Lady Bird Johnson Wildflower Center calls it a spire-like evergreen of 30 to 50 feet with stiff horizontal limbs branched to the ground, and that spire is the whole ornamental argument - a crown so narrow it can be a fifth as wide as it is tall, which is a snow-shedding adaptation rather than a nursery selection. At and above treeline it stops being a tree at all and grows as krummholz, low sprawling mats scoured by wind, and reproduces by LAYERING: a branch pressed into the ground roots and becomes a new stem, so a single tree can leave behind a ring of clones that mountaineers call an atoll. Two honest problems follow it down into cultivation. It is slow and, for a conifer, short-lived and structurally weak - thin bark, persistent dead branches, easily windthrown - and its pest list is serious: balsam woolly adelgid (Adelges piceae), introduced from Europe and the most destructive insect on this species in the Cascades, and the western balsam bark beetle (Dryocoetes confusus), which together with Armillaria root rot drives the mortality complex that has killed subalpine fir across large areas of the Rockies. Like every true fir it carries its cones UPRIGHT on the upper branches, dark purple ripening brown, and those cones never fall whole - they shatter on the tree and leave a bare central spike standing on the branch, which is the single quickest way to tell an Abies from a Picea at a glance.
Tree
Full sun / Part shade
Moderate water
Zones 3a-6b
Climate: moderate
Structure
Focal point
Future climate matches
Likely better as winters warm
32 plants
These plants are not the best current fit, but the mid-century projection moves this region toward their comfort range.

Planting collections

Finished planting recipes where every member can handle this region's climate range. The fit badge uses the collection's most sensitive plant, so a resilient collection is a safer starting point than any single standout.
Annabelle hydrangea (Hydrangea arborescens 'Annabelle') showing large white ball-shaped flower clusters on a rounded deciduous shrub.
Coral bells (Heuchera 'Marmalade') showing a low mound of ruffled coppery-orange foliage characteristic of the Heuchera villosa-derived hybrids.
Climate-resilient · 2 plants
Bright shade foundation
A part-shade planting with shrub structure and low foliage contrast.
Annabelle hydrangea
Coral bells
Switchgrass (Panicum virgatum) mature clump in the green growing season, its upright vase-shaped habit topped by the airy, diffuse open panicles diagnostic of the species.
Little bluestem (Schizachyrium scoparium) clumps in a garden bed, showing the species' upright, fine-textured blue-green vase-shaped growing-season habit.
Common milkweed (Asclepias syriaca) mature clump in flower, showing its stout upright reddish stems, broad opposite leaves, and pink-mauve flower umbels with young green pods.
A full clump of black-eyed Susan (Rudbeckia fulgida 'Goldsturm') in a garden bed, showing the dense mounded foliage base topped with golden, dark-centered daisies on branching stems.
+4
Climate-resilient · 8 plants
Climate-resilient natives for warming zones (eastern NA)
A pollinator-supporting palette of eastern North American natives with broad hardiness ranges and wide native distributions. Built for gardeners who want a planting that can handle warming zones without giving up wildlife value.
Switchgrass
Little bluestem
Common milkweed
Orange coneflower
Wild bergamot
Sweet Joe-Pye weed
Cutleaf coneflower
New England aster
A mature butterfly weed (Asclepias tuberosa) clump in a garden bed, showing its bushy mounded habit with several flat-topped orange umbels above a dense whorl of narrow leaves.
Common milkweed (Asclepias syriaca) mature clump in flower, showing its stout upright reddish stems, broad opposite leaves, and pink-mauve flower umbels with young green pods.
Purple coneflower (Echinacea purpurea) in bloom, showing pinkish-purple ray petals around a brown-domed central cone on an erect stem.
Wild bergamot (Monarda fistulosa) clump in an open meadow, its several upright square stems each topped by a ragged lavender flower head over toothed mint-family foliage.
+5
Climate-resilient · 9 plants
Native pollinator border (eastern US)
A continuous-bloom native pollinator strip for eastern North America. Covers spring through frost with host + nectar plants spanning monarchs, native bees, hummingbirds, and specialist Lepidoptera. Little bluestem provides the matrix grass + Hesperiidae host.
Butterfly weed
Common milkweed
Purple coneflower
Wild bergamot
Scarlet bee balm
Little bluestem
Sweet Joe-Pye weed
Swamp sunflower
Smooth blue aster
A mature oakleaf hydrangea (Hydrangea quercifolia) in flower - a broad, mounded multi-stemmed shrub studded with upright white panicles above coarse, deeply lobed oak-shaped leaves.
Woodland phlox (Phlox divaricata) showing five-petaled pale lavender-blue flowers on slender erect stems above a low spreading mat of foliage.
Wild columbine (Aquilegia canadensis) whole plant in rocky-ledge habitat, the airy blue-green compound foliage hung with nodding red-and-yellow spurred flowers.
Foamflower (Tiarella cordifolia) showing characteristic frothy white spring flower spikes above heart-shaped foliage.
+2
Climate-resilient · 6 plants
Part-shade woodland edge
A part-shade / bright-shade planting for morning sun or dappled light - eastern North American woodland-edge natives with spring bloom, season-long foliage, and a fern + shrub structure.
Oakleaf hydrangea
Woodland phlox
Wild columbine
Foamflower
Hairy alumroot
Christmas fern
English lavender (Lavandula angustifolia) as a broadly mounded, dense subshrub of fine silvery blue-green aromatic foliage.
Purple coneflower (Echinacea purpurea) in bloom, showing pinkish-purple ray petals around a brown-domed central cone on an erect stem.
A full clump of black-eyed Susan (Rudbeckia fulgida 'Goldsturm') in a garden bed, showing the dense mounded foliage base topped with golden, dark-centered daisies on branching stems.
Switchgrass (Panicum virgatum) mature clump in the green growing season, its upright vase-shaped habit topped by the airy, diffuse open panicles diagnostic of the species.
Climate-resilient · 4 plants
Sunny pollinator border
A durable sunny border with summer bloom, seedheads, and upright winter texture.
English lavender
Purple coneflower
Orange coneflower
Switchgrass
A green-season spicebush (Lindera benzoin) in its native woodland understory, showing the loose, open, multi-stemmed branching and alternate obovate leaves.
Wild ginger (Asarum canadense) - a clump rising from a mossy forest floor, paired heart-shaped leaves on fuzzy petioles arching over the maroon jug-shaped flowers nestled at ground level.
Bloodroot (Sanguinaria canadensis) showing characteristic white multi-petaled flower wrapped in a rounded leaf.
Virginia bluebells (Mertensia virginica) showing pendulous pink-to-blue bell-shaped flower clusters above smooth blue-green foliage.
+3
Currently suited · 7 plants
Shade & understory woodland
A full-shade woodland-floor community for deep shade beneath a closed canopy: an understory shrub, spreading groundcovers, spring ephemerals, and a large fern - eastern North American natives that expect low light and leaf-litter soil.
Northern spicebush
Wild ginger
Bloodroot
Virginia bluebells
Mayapple
Ostrich fern
Foamflower

Starter kits for this region

Generated from catalog plants that already pass this region's climate fit gate, with native matches sorted first when the catalog has enough coverage.
Sunny pollinator border
A sunny, wildlife-forward planting assembled from plants that pass this region fit gate.
Native fit: 0/6
Climate resilient: 6/6
Wildlife links: 14
Host/specialist links: 4
Forage/pollination links: 19
Shelter links: 1
AD
AF
AL
AM
AM
AM
Shade-edge planting
A softer edge kit for woodland margins, porches, and mixed-light garden edges.
Native fit: 0/6
Climate resilient: 6/6
Wildlife links: 14
Host/specialist links: 4
Forage/pollination links: 16
Shelter links: 1
AD
AF
AL
AL
AM
AM
Resilient shrub layer
A woody structure layer led by plants that fit both current and projected regional conditions.
Native fit: 0/6
Climate resilient: 6/6
Wildlife links: 13
Host/specialist links: 4
Forage/pollination links: 17
Shelter links: 1
AD
AL
AM
AM
AM
AM

Similar planting regions

Browse other regions in the same biome. Their plant lists can suggest species and combinations worth comparing.
Laguna Verde and arid volcanic highlands in the Central Andean dry puna.
RESOLVE 587 - Neotropic
Central Andean dry puna
The Central Andean dry puna spans the high Altiplano of the southern Andes across Argentina, Bolivia, and Chile, occupying the arid zone between the tree line and the permanent snow line east of the Atacama Desert. Its vegetation is mostly high-elevation grassland dominated by bunchgrasses of the genera Stipa and Festuca, with dry shrublands lower down and scattered Polylepis woodlands at higher elevations; this includes Polylepis tarapacana, the woody plant that grows at the highest elevations in the world. The climate is dry and cold, ranging from cold steppe to cold desert and receiving less than 400 millimeters of rainfall annually, and the landscape is studded with volcanoes and vast salt flats such as Uyuni, Coipasa, and Atacama. Wild camelids including the vicuna roam the puna, the endangered Andean cat is the flagship species, and the region's saline lakes and bofedal wetlands support Andean, James's, and Chilean flamingos. Cushion-forming alpine genera such as Werneria and Nototriche, along with hardy high-altitude Senecio shrubs, are among the cold-adapted plants native here.
Montane Grasslands & Shrublands
Zones 5b-9b
+2.9°F by 2070
98,778 sq mi
NNH tier 2
Puna grassland and volcanic highlands near Tacora in the Central Andes.
RESOLVE 588 - Neotropic
Central Andean puna
The Central Andean puna is a high-elevation montane grassland and shrubland ecoregion of the southern Andes, stretching from southern Peru through Bolivia into northern Chile and Argentina, generally between about 3,200 and 6,600 meters above sea level. Its landscape of open meadows, plateaus, high lakes, and snow-capped peaks is dominated by tussock or bunchgrass grasslands built from genera such as Calamagrostis, Agrostis, and Festuca, dotted with herbs, moss, and lichen, and accented by Polylepis (queñoa) woodland, Azorella cushion plants, and the giant bromeliad Puya raimondii. The climate is cold and semi-arid, with annual temperatures ranging from below freezing to about 15 degrees Celsius and yearly rainfall of roughly 250 to 500 millimeters. The region remains an important refuge for hardy Andean wildlife, including the vicuna, guanaco, chinchilla, and its flagship bird, Darwin's rhea, though habitat is increasingly pressured by grazing, burning, mining, and agriculture. For gardeners drawn to rugged high-altitude flora, the puna is the native home of the dramatic Puya raimondii, prized for producing one of the tallest flower spikes in the plant world.
Montane Grasslands & Shrublands
Zones 7b-9b
+2.6°F by 2070
82,099 sq mi
NNH tier 1
High Andean wet puna grassland, lakes, and peaks near Huascaran.
RESOLVE 589 - Neotropic
Central Andean wet puna
The Central Andean wet puna stretches across the high Andes of Peru and eastern Bolivia, blanketing plateaus, glacial valleys, and lake basins generally above 3,500 metres in elevation. Its dominant cover is high-elevation montane grassland woven from bunchgrass genera such as Festuca, Calamagrostis, Stipa, Agrostis, and Paspalum, interspersed with gnarled Polylepis woodlands, the giant rosette bromeliad Puya raimondii, and waterlogged cushion-plant bogs (bofedales) of species like Distichia muscoides. The climate is cold and seasonally wet, with nightly freezes year-round in the upper zones and a rainy season that lengthens from roughly two months in the south to about eight months in the north. All four South American camelids occur here (vicuna, llama, guanaco, and alpaca) alongside puma and Andean fox, and the ecoregion harbors many endemic birds, including the critically endangered royal cinclodes, which depends on the dwindling Polylepis forests now threatened by grazing, burning, and mining. For high, cold gardens the puna offers hardy native ornamentals, from the dramatic Puya to cool-season tussock grasses such as Festuca, Calamagrostis, and Stipa.
Montane Grasslands & Shrublands
Zones 7b-10a
+3.0°F by 2070
45,316 sq mi
NNH tier 3
Paramo vegetation with frailejones in the Cordillera Central highlands.
RESOLVE 590 - Neotropic
Cordillera Central páramo
The Cordillera Central páramo is a high-Andean ecoregion that spans the treeless heights of northern Peru (the Piura and Cajamarca regions) and southernmost Ecuador, lying near the Marañón Valley in three distinct oblong patches. Above the treeline at roughly 3,200 metres and reaching toward the permanent snowline near 4,500 metres, it is covered in tussock bunchgrasses such as Calamagrostis and Agrostis along with cushion plants, low shrubs, and sedges, often over a mat of lichens and moss; characteristic woody genera include Hypericum, Polylepis, and Escallonia. The climate is cold, wet, and very cloudy, with high rainfall and temperatures that can drop below freezing. Because these isolated sky-island habitats foster high endemism, the ecoregion shelters notable wildlife including the endangered mountain tapir, its flagship species, along with the spectacled bear and northern pudú. For gardeners, the region is also the native home of quinine (Cinchona officinalis), the tree historically prized for its bark.
Montane Grasslands & Shrublands
Zones 9a-10b
+2.7°F by 2070
4,699 sq mi
NNH tier 3
Open paramo vegetation and Andean mountain terrain in the Cordillera de Merida.
RESOLVE 591 - Neotropic
Cordillera de Merida páramo
The Cordillera de Mérida páramo is a high-altitude grassland and shrubland ecoregion in western Venezuela, occupying isolated patches above the treeline within the Cordillera de Mérida massif, south of Lake Maracaibo. Its dry páramo is defined by the spectacular giant rosettes of Espeletia (frailejones), alongside tussock grasses, dwarf bamboo, cushion plants, and lichens, with Polylepis woodlands forming an important transition at lower elevations. The climate is alpine tundra, with no month averaging above 10 degrees Celsius, a pronounced dry season, and regular snowfall on the highest peaks. Long isolation has produced high local endemism, especially on the more remote summits, while the endangered spectacled bear and mountain tapir range through its lower portions; the World Wildlife Fund rates the ecoregion as relatively stable and intact, with protected areas including Sierra Nevada and Sierra La Culata National Parks. For gardeners, it is the native home of cold-hardy high-mountain genera such as Espeletia and the Andean rose-relative Polylepis.
Montane Grasslands & Shrublands
Zones 9b-11b
+2.5°F by 2070
1,084 sq mi
NNH tier 4
Frailejones among golden paramo grass below rock cliffs at Nevado del Ruiz, Colombia.
RESOLVE 593 - Neotropic
Northern Andean páramo
The Northern Andean páramo is a band of high-altitude grasslands that lie above the tree line and below the snow line in the equatorial Andes of Colombia and Ecuador, generally between about 3,000 and 5,000 meters. Its vegetation is a distinctive mix of tussock or bunch grasses such as Calamagrostis and Festuca, giant rosette plants of the genus Espeletia (the frailejones), low cushion plants, and shrubs of the heath family (Ericaceae). The climate is cold, humid, and cloud-bound, with moisture arriving as rain, fog, and low cloud; annual rainfall ranges roughly from 500 to 3,000 millimeters, and temperatures can fall below freezing at night yet climb toward 30°C by day. Plant endemism is very high, and the páramo serves as habitat for threatened animals including the mountain tapir and the spectacled bear, though burning, overgrazing, and road building remain ongoing pressures. For gardeners, the showy frailejón rosettes (Espeletia) and the many native heaths reflect the cool, perpetually moist conditions this ecoregion demands.
Montane Grasslands & Shrublands
Zones 9a-10b
+2.3°F by 2070
11,580 sq mi
NNH tier 1

Where this ecoregion reaches

The countries, US states, and Canadian provinces this ecoregion touches, from a spatial join of its RESOLVE polygon against Natural Earth boundaries.
Countries

Educator packet

Region packet
High Monte educator packet
The High Monte is a montane shrubland ecoregion confined to Argentina, running along the eastern slopes of the Andes from the vicinity of Salta south to Mendoza, set between the Sierras Pampeanas and the main Andean ridge and bounded by the arid Puna to the north and the Chaco and Espinal woodlands to the east. Its characteristic cover is evergreen scrubland dominated by Larrea shrubs (the jarillas, or creosote bushes), with open algarrobo woodland of Prosopis alba and Prosopis nigra where groundwater is reachable, alongside genera such as Bulnesia and Bougainvillea and an abundance of cacti and bromeliads in the north. The climate is temperate and arid to semi-arid, with sparse rainfall that falls mainly in the austral summer when the South American monsoon pushes moist air across the region. Sitting in the Andean rain shadow, it shelters notable endemics and a flagship southern mountain cavy, and its burrowing parrots act as important dispersers of algarrobo seeds. For gardeners in dry, hot-summer climates, the ecoregion is the native home of drought-hardy ornamental and shade genera including Prosopis, Larrea, and Bougainvillea.
Realm
Neotropic
Dominant biome
Montane Grasslands & Shrublands
Approximate area
45,083 square miles
States / provinces
Not recorded
Climate descriptor
Not recorded
Classroom prompts
- Which climate and biome facts explain why this region supports its characteristic plants?
- How do native-plant and wildlife-support claims differ from a species-presence claim?
- Which source-backed facts would you cite before using this region in a classroom map activity?
Use the Sources & citations section below for page citation styles and region source links.

Sources & citations

Cite this page
For lesson plans, articles, or regional planting notes that use this Plotwright page. To cite the underlying ecoregion framework or a specific editorial profile, use the source cards below.
Plotwright. (n.d.). High Monte (High Monte). Retrieved 2026, August 20, from https://plotwright.com/regions/resolve-592
Sources for this region
This page cites Plotwright first for the compiled view, then lists the upstream framework, climate, and editorial source pages so readers can cite the original material directly.
RESOLVE 2017 Terrestrial Ecoregions (Dinerstein et al.)
Primary ecoregion framework
One Earth
One Earth
Wikipedia
Wikimedia Foundation