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Ecological site R028AB224UT
Semidesert Sandy Loam (Winterfat)
Last updated: 6/12/2025
Accessed: 07/20/2026
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Provisional. A provisional ecological site description has undergone quality control and quality assurance review. It contains a working state and transition model and enough information to identify the ecological site.
MLRA notes
Major Land Resource Area (MLRA): 028A–Ancient Lake Bonneville
MLRA 28A occurs in Utah (82 percent), Nevada (16 percent), and Idaho (2 percent). It encompasses approximately 36,775 square miles (95,246 square kilometers). A large area west and southwest of Great Salt Lake is a salty playa. This area is the farthest eastern extent of the Great Basin Section of the Basin and Range Province of the Intermontane Plateaus. It is an area of nearly level basins between widely separated mountain ranges trending north to south. The basins are bordered by long, gently sloping alluvial fans. The mountains are uplifted fault blocks with steep side slopes. Most of the valleys are closed basins containing sinks or playa lakes. Elevation ranges from 3,950 to 6,560 feet (1,204 to 2000 meters) in the basins and from 6,560 to 11,150 feet (1996 to 3398 meters) in the mountains. Much of the MLRA has alluvial valley fill and playa lakebed deposits at the surface from pluvial Lake Bonneville, which dominated this MLRA 13,000 years ago. A level line of remnant lake terraces on some mountain slopes indicates the former extent of this glacial lake. The Great Salt Lake is what remains of the pluvial lake.
Mountains in the interior of this MLRA consist of tilted blocks of marine sediments from Cambrian to Mississippian age with scattered outcrops of Tertiary continental sediments and volcanic rocks. The average annual precipitation is 5 to 12 inches (13 to 30 cm) in the valleys and ranges up to 49 inches (124 cm) in the mountains. Most of the rainfall in the southern LRU occurs as high-intensity, convective thunderstorms during the growing season (April through September). The driest period is from midsummer to early autumn in the northern LRU. Precipitation in winter typically occurs as snow. The average annual temperature is 39 to 53 °F (4 to 12 °C). The freeze-free period averages 165 days and ranges from 110 to 215 days, decreasing in length with increasing elevation. The dominant soil orders in this MLRA are Aridisols, Entisols, and Mollisols. Soils are dominantly in the mesic or frigid soil temperature regime, aridic or xeric soil moisture regime, and mixed mineralogy. The soils are generally well drained, loamy or loamy-skeletal, and very deep.LRU notes
The Basin and Range South LRU has mountain ranges that are about 40 percent sedimentary/metasedimentary (limestone/quartzite dominant) and about 40 percent Tertiary volcanics. The basin floors are generally higher in the southern LRU than in the north LRU between 4,900 and 6,100 feet (1493 to 1859 meters) in elevation. The Basin and Range South LRU also exhibits patterns of summers with a greater relative amount of precipitation in July and August coming from convective storms (ustic trending pattern). Pinyon and juniper ecological sites have a great percentage of pinyon pine (Pinus edulis or monophylla) than Utah juniper (Juniperus osteosperma), with pinyon pine up to 50 percent of the tree composition in the semidesert zones and more than 50 percent in upland zones. Warm season grasses, such as James’ galleta (Pleuraphis jamesii) or blue grama (Bouteloua gracilis), are present within the plant community, and can make up a large portion of the subdominant grass composition. Bristlecone pine (Pinus longaeva) and cliffrose (Purshia sp.) are also present and dominant on some ecological sites in the southern LRU, while they are sparse or absent in the northern LRU.
Classification relationships
MLRA: 28A Great Salt Lake Area LRU: Basin and Range South Ecological Zone: Semidesert Ecological Site: Semidesert Sandy Loam (Winterfat)
EPA Ecoregion: North American Desert Cold Desert Central Basin and Range Sagebrush Basins and SlopesEcological site concept
The Semidesert Sandy Loam (Winterfat) site is found on lake terraces at slopes up to 8 percent. The soil is deep, sandy loam texture, with few rock fragments on the surface or subsurface. The dominant species are Indian ricegrass (Achnatherum hymenoides) and winterfat (Krascheninnikovia lanata), with grasses in reference condition, accounting for more of the community composition.
Associated sites
R028AY220UT Semidesert Loam (Wyoming Big Sagebrush)
Occurs adjacent to the ecological site. Soil texture is finer.
R028AY234UT Semidesert Shallow Loam (Utah juniper-Salina wildrye)
Occurs on shallow soils further up on the landform/landscape.
Similar sites
R028AY224UT Semidesert Sandy Loam (Winterfat)
Similar site that occurs in the Basin and Range North LRU.
R028AY226UT Semidesert Sandy Loam (Wyoming Big Sagebrush)
Dominant shrub is Wyoming big sagebrush.
R028AA222UT Semidesert Sand (Four-Wing Saltbush)
This site has coarser textured, sandy soil. It is also dominated by fourwing saltbush.
Table 1. Dominant plant species
Tree Not specified
Shrub (1) Krascheninnikovia lanata
Herbaceous (1) Achnatherum hymenoides
Physiographic features
The Semidesert Sandy Loam (Winterfat) site occurs on fan remnants, alluvial flats, and stream terraces at slopes up to 8 percent. The elevation ranges from 5,000 to 5,600 feet. The geology is alluvium derived from igneous and sedimentary rock.
Table 2. Representative physiographic features
Landforms (1) Fan remnant
(2) Alluvial flat
(3) Stream terrace
Flooding frequency None Ponding frequency None Elevation 5000 – 5600 ft Slope 0 – 8 % Climatic features
The climate is dry subhumid and semiarid. It is characterized by cold, snowy winters and warm summers. The average annual precipitation ranges from 8 to 12 inches. The most reliable sources of moisture for plant growth are the snow that accumulates over the winter, and spring rains. Summer thunderstorms are intermittent and sporadic in nature, but occur frequently enough to influence vegetation composition on the site.
Climate tables derived from PRISM model. Climate stations were not found within the site.Table 3 Representative climatic features
Frost-free period (average) Freeze-free period (average) Precipitation total (average) 10 in BarLineFigure 1. Monthly average minimum and maximum temperature
Figure 2. Annual precipitation pattern
Figure 3 Annual average temperature pattern
">Influencing water features
Soil features
Soil is deep well to excessively well drained. There are fewer than 15 percent rock fragments by volume on the surface or subsurface. Surface soil texture is sandy loam.
This site has been correlated on both sides of the proposed LRU boundary and the following soil components need to be evaluated for correlation to this site.
UT626: Crestline (111, 127, 134, 163, 165, 170), Garbo (124, 202), Manselo (103, 105, 107, 161), Pyrat (103, 105, 107, 124, 125, 202), Sevy (111, 151, 159), Sugarloaf (165)
UT634: Ardnas (478), Bannion (329, 361), Biblesprings (329, 330, 382), Crestline (352), Deerlodge (383), Escalante (375, 492), Garbo (383), Manselo (452), Pyrat (454), Sevy (477, 478), Taylorsflat (492), Wales (509)Table 4. Representative soil features
Surface texture (1) Sandy loam
Drainage class Well drained to somewhat excessively drained Permeability class Moderate to moderately rapid Soil depth 60 – 0 in Surface fragment cover <=3" 0 – 11 % Surface fragment cover >3" 0 – 15 % Available water capacity
(0-40in)3.2 – 6.5 in Calcium carbonate equivalent
(0-40in)0 – 15 % Electrical conductivity
(0-40in)0 – 4 mmhos/cm Sodium adsorption ratio
(0-40in)0 – 5 Soil reaction (1:1 water)
(0-40in)7.9 – 9 Subsurface fragment volume <=3"
(Depth not specified)0 – 13 % Subsurface fragment volume >3"
(Depth not specified)0 – 13 % Ecological dynamics
The Semidesert Sandy Loam (Winterfat) site is dominated by winterfat and Indian ricegrass in reference condition. Plant communities shift in the Reference State between shrub dominated and grass dominated based on drought patterns or herbivory. When drought occurs, bunchgrasses decrease, increasing the percentage of shrubs in the community.
As ecological condition deteriorates due to overgrazing, Indian ricegrass decreases, while low rabbitbrush and snakeweed increase. When the potential natural plant community is burned, Indian ricegrass and needleandthread decrease while low rabbitbrush increases.
Annual grasses and annual forbs are most likely to invade this site.
Evaluation of the Semidesert Sandy Loam (Winterfat) site in the field is needed to fully develop the ecological dynamics. The Annual State has not been recorded in any existing data.
Draft hypothetical state and transition model from a similar site in Nevada (R028AY030NV) was used for this site.State and transition model
Custom diagramStandard diagram
Figure 4. STM R028AB224UT
More interactive model formats are also available. View Interactive Models
More interactive model formats are also available. View Interactive Models
Click on state and transition labels to scroll to the respective textEcosystem states
SWAPAEHSWAPAEHSWAPAEHSWAPAEHState 1 submodel, plant communities
State 2 submodel, plant communities
State 3 submodel, plant communities
State 4 submodel, plant communities
State 1
Reference StateThe dominant aspect of this plant community is Indian ricegrass. The composition by air-dry weight is approximately 55 percent perennial grasses, 10 percent forbs, and 35 percent shrubs.
Community 1.1
Indian ricegrass/winterfatThe dominant aspect of this plant community is Indian ricegrass. The composition by air-dry weight is approximately 55 percent perennial grasses, 10 percent forbs, and 35 percent shrubs.
Figure 5. Annual production by plant type (representative values) or group (midpoint values)
Table 5. Annual production by plant type
Plant type Low
(lb/acre)Representative value
(lb/acre)High
(lb/acre)Grass/Grasslike 138 261 385 Shrub/Vine 88 166 245 Forb 25 48 70 Total 251 475 700 Table 6. Ground cover
Tree foliar cover 0% Shrub/vine/liana foliar cover 10-30% Grass/grasslike foliar cover 20-40% Forb foliar cover 0-10% Non-vascular plants 0% Biological crusts 0% Litter 0% Surface fragments >0.25" and <=3" 0% Surface fragments >3" 0% Bedrock 0% Water 0% Bare ground 0% Table 7. Canopy structure (% cover)
Height Above Ground (ft) Tree Shrub/Vine Grass/
GrasslikeForb <0.5 – – – – >0.5 <= 1 – – – – >1 <= 2 – – 30-40% 0-10% >2 <= 4.5 – 20-30% – – >4.5 <= 13 – – – – >13 <= 40 – – – – >40 <= 80 – – – – >80 <= 120 – – – – >120 – – – – Figure 6. Plant community growth curve (percent production by month). UT2241 , PNC. Excellent Condition.
Jan Feb Mar Apr May Jun Jul Aug Sep Oct Nov Dec J F M A M J J A S O N D 0 0 5 15 40 30 5 5 0 0 0 0 Community 1.2
Winterfat/Indian ricegrassDrought will favor shrubs over perennial bunchgrasses. However, long-term drought will result in an overall decline in the plant community, regardless of functional group.
Pathway 1.1a
Community 1.1 to 1.2Long term drought and/or excessive herbivory decrease in perennial bunchgrasses
Pathway 1.2a
Community 1.2 to 1.1Time, lack of disturbance and recovery from drought would allow the vegetation to increase and bare ground would eventually decrease.
State 2
Current PotentialThe Current Potential State is similar to the Reference State, however is also includes non-native annual species such as cheatgrass and Halogeton. This species change the natural disturbance pattern of this site by increasing under natural disturbance (fire) and out competing native species (Indian ricegrass). Community Phase 2.2 is at risk of moving to a Shrub State (3) or Annual State (4) because it has lost resiliency and resistance to returning to a native plant community after disturbance.
Community 2.1
Indian ricegrass/winterfatThis community is dominated by winterfat and Indian ricegrass. Bottlebrush squirreltail and fourwing saltbush are also important species on this site. Community phase changes are primarily a function of chronic drought. Fire is infrequent and patchy due to low fuel loads. Non-native annual species are present in trace amounts ( less than 5 percent). Potential vegetative composition is approximately 25 percent grasses, 10 percent forbs, and 65 percent shrubs.
Community 2.2
Winterfat/Indian ricegrass (At Risk)Drought will favor shrubs over perennial bunchgrasses. However, long-term drought will result in an overall decline in the plant community, regardless of functional group. Inappropriate grazing will favor unpalatable shrubs such as shadscale, and cause a decline in winterfat and budsage.
Pathway 2.1a
Community 2.1 to 2.2Inappropriate grazing management and/or drought.
Pathway 2.2a
Community 2.2 to 2.1Release from drought and/or growing season grazing pressure allows recovery of bunchgrasses, winterfat, and bud sagebrush.
State 3
Shrub StateBunchgrasses have been greatly reduced in the Shrub State either from heavy grazing in the presence of non-native species.
Community 3.1
Winterfat/Sickle saltbush/Annual speciesPerennial bunchgrasses, like Indian ricegrass are reduced and the site is dominated by winterfat. Rabbitbrush (Chrysothamnus spp.) and shadscale may be significant components or dominant shrubs. Annual non-native species increase. Bare ground has increased.
State 4
Annual StateThe Annual State consists of one community phase. This community is characterized by the dominance of annual non-native species such as Halogeton and cheatgrass. Rabbitbrush and other sprouting shrubs may dominate the overstory.
Community 4.1
Annual non-nativeThis community is dominated by annual non-native species. Trace amounts of winterfat and other shrubs may be present, but are not contributing to site function. Bare ground may be abundant, especially during low precipitation years. Wind erosion and extreme soil temperatures are driving factors in site function.
Transition T1A
State 1 to 2Introduction of non-native invasive species.
Transition T2A
State 2 to 3Inappropriate grazing management in the presence of non-native species
Transition T2B
State 2 to 4Large fire and/or multiple fires
Transition T3A
State 3 to 4Large fire and/or multiple fires that remove the native shrubs and grasses.
Additional community tables
Table 8. Community 1.1 plant community composition
Group Common name Symbol Scientific name Annual production () Foliar cover (%) Shrub/Vine0 Primary Shrubs 130–200 purple threeawn ARPU9 Aristida purpurea 5–15 – blue grama BOGR2 Bouteloua gracilis 5–15 – sandhill muhly MUPU2 Muhlenbergia pungens 5–15 – western wheatgrass PASM Pascopyrum smithii 5–15 – sand dropseed SPCR Sporobolus cryptandrus 5–15 – sixweeks fescue VUOC Vulpia octoflora 5–15 – 3 Secondary Shrubs 15–25 Grass/Grasslike0 Primary Grasses 205–275 Fendler's sandwort ARFE3 Arenaria fendleri 5–15 – Utah milkvetch ASUT Astragalus utahensis 5–15 – matted buckwheat ERCA8 Eriogonum caespitosum 5–15 – longleaf phlox PHLO2 Phlox longifolia 5–15 – woolly plantain PLPA2 Plantago patagonica 5–15 – thorn skeletonweed PLSP7 Pleiacanthus spinosus 5–15 – Pacific aster SYCHC Symphyotrichum chilense var. chilense 5–15 – 1 Secondary Grasses 15–25 Forb0 Primary Forbs 15–25 black sagebrush ARNO4 Artemisia nova 5–15 – Wyoming big sagebrush ARTRW8 Artemisia tridentata ssp. wyomingensis 5–15 – shadscale saltbush ATCO Atriplex confertifolia 5–15 – green molly BAAM4 Bassia americana 5–15 – spiny hopsage GRSP Grayia spinosa 5–15 – broom snakeweed GUSA2 Gutierrezia sarothrae 5–15 – plains pricklypear OPPO Opuntia polyacantha 5–15 – Nuttall's horsebrush TENU2 Tetradymia nuttallii 5–15 – 2 Secondary Forbs 15–25 Table 9. Community 1.2 plant community composition
Group Common name Symbol Scientific name Annual production () Foliar cover (%) Table 10. Community 2.1 plant community composition
Group Common name Symbol Scientific name Annual production () Foliar cover (%) Table 11. Community 2.2 plant community composition
Group Common name Symbol Scientific name Annual production () Foliar cover (%) Table 12. Community 3.1 plant community composition
Group Common name Symbol Scientific name Annual production () Foliar cover (%) Table 13. Community 4.1 plant community composition
Group Common name Symbol Scientific name Annual production () Foliar cover (%) Interpretations
Animal community
The Semidesert Sandy Loam (Winterfat) site is suited for grazing by cattle and sheep during winter and spring.
Wildlife using this site include rabbit, coyote, fox, badger, pronghorn antelope, mule deer, and dove.
This is a short list of the more common species found. Many other species are present as well and migratory birds are present at times.Hydrological functions
The soils are in hydrologic group B with runoff curves ranging from 61 to 79 depending on hydrologic condition.
Recreational uses
Resources that have special aesthetic and landscape values are wildflowers. Some recreation uses of this site are hiking and horseback riding.
Wood products
None
Other information
Threatened and endangered species include plants and animals.
Supporting information
Type locality
Location 1: Iron County, UT General legal description Northeast of Cedar City 14 Miles on Luna Highway on Nelson Brothers’ Allotment Contributors
Sarah Quistberg
David J. SomervilleApproval
Kendra Moseley, 6/12/2025
Rangeland health reference sheet
Interpreting Indicators of Rangeland Health is a qualitative assessment protocol used to determine ecosystem condition based on benchmark characteristics described in the Reference Sheet. A suite of 17 (or more) indicators are typically considered in an assessment. The ecological site(s) representative of an assessment location must be known prior to applying the protocol and must be verified based on soils and climate. Current plant community cannot be used to identify the ecological site.
Author(s)/participant(s) Jack Alexander, Range Specialist, Synergy Resource Solutions, Inc. Julia Kluck, Soil Scientist, Synergy Resource Solutions, Inc. Shane Green, State Range Specialist, Utah NRCS Contact for lead author Shane Green, Shane.Green@ut.usda.gov Date 02/08/2010 Approved by Approval date Composition (Indicators 10 and 12) based on Annual Production Indicators
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Number and extent of rills:
No rills present. Very minor rill development may occur in sparsely vegetated areas. If rills are present, they should be widely spaced and not connected. Rill development may increase following large storm events, but should begin to heal during the following growing season. Frost heaving will accelerate recovery. Rill development may increase when run inflow enters site from adjacent sites that produce large amounts of runoff (i.e. steeper sites, slickrock, rock outcrop). Site is essentially level and rills do not form. -
Presence of water flow patterns:
Water flow patterns will be short (2-5’), narrow (<1’), and meandering; interrupted by plants and exposed rocks. Slight to no evidence of erosion or deposition associated with flow patterns. -
Number and height of erosional pedestals or terracettes:
Plants may have small pedestals (1-3”) where they are adjacent to water flow patterns, but without exposed roots. Terracettes should be few and stable. Terracettes should be small (1-3”) and show little sign of active erosion. Some plants may appear to have a pedestal but rather than be formed by erosion, the only place litter accumulates and soil collects is at plant bases forming the appearance of a pedestal. Well-developed biological crusts may appear pedestalled, but are actually a characteristic of the crust formation. Some plants may appear to have a pedestal but rather than be formed by erosion, the only place litter accumulates and soil collects is at plant bases forming the appearance of a pedestal. -
Bare ground from Ecological Site Description or other studies (rock, litter, lichen, moss, plant canopy are not bare ground):
20-35% bare ground (soil with no protection from raindrop impact). Herbaceous communities are most likely to have lower values. As species composition by shrubs increases, bare ground is likely to increase. Poorly developed biological soil crust that is susceptible to raindrop splash erosion should be recorded as bare ground. Very few if any bare spaces of greater than 1 square foot. -
Number of gullies and erosion associated with gullies:
No gullies present. -
Extent of wind scoured, blowouts and/or depositional areas:
Very minor evidence of active wind-generated soil movement. Wind scoured (blowouts) and depositional areas are rarely present. If present they have muted features and are mostly stabilized with vegetation and/or biological crust. Gravel or desert pavement protects the site from wind scour. -
Amount of litter movement (describe size and distance expected to travel):
Most litter resides in place with some redistribution caused by water and wind movement. Very minor litter removal may occur in flow patterns and rills with deposition occurring at points of obstruction. The majority of litter accumulates at the base of plants. Some leaves, stems, and small twigs may accumulate in soil depressions adjacent to plants. Woody stems are not likely to move. -
Soil surface (top few mm) resistance to erosion (stability values are averages - most sites will show a range of values):
Soil surface is moderately stable (average soil stability score of 3.5 -5). -
Soil surface structure and SOM content (include type of structure and A-horizon color and thickness):
This description is based on the modal soil (Escalante SL, soil survey area: 634, Iron-Wash). This site has 11 correlated soils, resulting in variation of each of these attributes. Unless working on a location with the modal soil, it is critical to supplement this description with the soil-specific information from the published soil survey. Soil surface horizon is typically 7 inches deep. Structure is typically moderate medium platy. Color is typically pale brown (10YR 6/3), brown (10YR 4/3) moist. An ochric horizon extends to a depth of 7 inches. An ochric horizon typically extends to a depth of 2 to 10 inches. The ochric horizon is a surface horizon lacking fine stratification and which is either light colored, or thin, or has an low organic carbon content, or is massive and (very) hard when dry. The A horizon would be expected to be more strongly developed under plant canopies. It is important if you are sampling to observe the A horizon under plant canopies as well as the interspaces. -
Effect of community phase composition (relative proportion of different functional groups) and spatial distribution on infiltration and runoff:
Bunchgrasses and shrubs equally important for increasing infiltration and reducing runoff. Litter plays a role in increasing infiltration and decreasing runoff. Plants provide microhabitat for seedlings, catch litter and soil, and slow raindrops and runoff. Vascular plants and/or well-developed biological soil crusts (where present) will break raindrop impact and splash erosion. Spatial distribution of vascular plants and interspaces between well-developed biological soil crusts (where present) provide detention storage and surface roughness that slows runoff allowing time for infiltration. Interspaces between plants and any well-developed biological soil crusts (where present) may serve as water flow patterns during episodic runoff events, with natural erosion expected in severe storms. When perennial grasses decrease, reducing ground cover and increasing bare ground, runoff is expected to increase and any associated infiltration reduced. Shrubs catch snow, slow wind evaporation, and provide microhabitat for seedling establishment. -
Presence and thickness of compaction layer (usually none; describe soil profile features which may be mistaken for compaction on this site):
None. Naturally occurring soil horizons may be harder than the surface because of an accumulation of calcium carbonate and should not be considered as compaction layers. -
Functional/Structural Groups (list in order of descending dominance by above-ground annual-production or live foliar cover using symbols: >>, >, = to indicate much greater than, greater than, and equal to):
Dominant:
Indian ricegrassSub-dominant:
fourwing saltbrushOther:
other grasses = other shrubs > forbsAdditional:
In the northern portion of the MLRA cool-season perennial grasses (Indian ricegrass, needle and thread) dominate. In the southernmost portion of the MLRA warm-season perennial grasses (galleta, sand dropseed) dominate. The two groups share dominance in the middle portion of the MLRA. -
Amount of plant mortality and decadence (include which functional groups are expected to show mortality or decadence):
During years with average to above average precipitation, there should be very little recent mortality or decadence apparent in either the shrubs or grasses. Some mortality of bunchgrass and other shrubs may occur during very severe (long-term) droughts. There may be partial mortality of individual bunchgrasses and shrubs during less severe drought. Long-lived species dominate site. Open spaces from disturbance are quickly filled by new plants through seedlings and reproductive reproduction (tillering). -
Average percent litter cover (%) and depth ( in):
Litter cover includes litter under plants. Most litter will be fine litter. Depth should be 1-2 leaf thickness in the interspaces and up to 1/2” under canopies. Litter cover may increase to 20-30% following years with favorable growing conditions. Excess litter may accumulate in absence of disturbance. Vegetative production may be reduced if litter cover exceeds 40%. -
Expected annual annual-production (this is TOTAL above-ground annual-production, not just forage annual-production):
475#/acre. Even the most stable communities exhibit a range of production values. Production will vary between communities and across the MRLA. Refer to the community descriptions in the ESD. Production will differ across the MLRA due to the naturally occurring variability in weather, soils, and aspect. The biological processes on this site are complex; therefore, representative values are presented in a land management context. -
Potential invasive (including noxious) species (native and non-native). List species which BOTH characterize degraded states and have the potential to become a dominant or co-dominant species on the ecological site if their future establishment and growth is not actively controlled by management interventions. Species that become dominant for only one to several years (e.g., short-term response to drought or wildfire) are not invasive plants. Note that unlike other indicators, we are describing what is NOT expected in the reference state for the ecological site:
Annual grasses and annual forbs -
Perennial plant reproductive capability:
All perennial plants should have the ability to reproduce sexually or asexually, except in drought years. Density of plants indicates that plants reproduce at level sufficient to fill available resource. Within capability of site there are no restrictions on seed or vegetative reproductive capacity.
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