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Salt Tolerance of Sego SupremeTM Plants
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Sego Supreme
TM
is a designated plant breeding and introduction program at the Utah State University Botanical Center and the Center for Water Efficient Landscaping. This plant selection program introduces native and adapted plants to the arid West for aesthetic landscaping and water conservation. The plants are evaluated for characteristics such as color, flowering, ease of propagation, market demand, disease/pest resistance, and drought tolerance. However, salt tolerance has not been considered during the evaluation processes. Four Sego Supreme
TM
plants [
Aquilegia barnebyi
(oil shale columbine),
Clematis fruticosa
(Mongolian gold clematis),
Epilobium septentrionale
(northern willowherb), and
Tetraneuris acaulis
var.
arizonica
(Arizona four-nerve daisy)] were evaluated for salt tolerance in a greenhouse. Uniform plants were irrigated weekly with a nutrient solution at an electrical conductivity (EC) of 1.25 dS·m
−1
as control or a saline solution at an EC of 2.5, 5.0, 7.5, or 10.0 dS·m
−1
for 8 weeks. After 8 weeks of irrigation,
A. barnebyi
irrigated with saline solution at an EC of 5.0 dS·m
−1
had slight foliar salt damage with an average visual score of 3.7 (0 = dead; 5 = excellent), and more than 50% of the plants were dead when irrigated with saline solutions at an EC of 7.5 and 10.0 dS·m
−1
. However,
C. fruticosa, E. septentrionale
, and
T. acaulis
had no or minimal foliar salt damage with visual scores of 4.2, 4.1, and 4.3, respectively, when irrigated with saline solution at an EC of 10.0 dS·m
−1
. As the salinity levels of treatment solutions increased, plant height, leaf area, and shoot dry weight of
C. fruticosa
and
T. acaulis
decreased linearly; plant height of
A. barnebyi
and
E. septentrionale
also declined linearly, but their leaf area and shoot dry weight decreased quadratically. Compared with the control, the shoot dry weights of
A. barnebyi
,
C. fruticosa
,
E. septentrionale
, and
T. acaulis
decreased by 71.3%, 56.3%, 69.7%, and 48.1%, respectively, when irrigated with saline solution at an EC of 10.0 dS·m
−1
.
Aquilegia barnebyi
and
C. fruticosa
did not bloom during the experiment at all treatments. Elevated salinity reduced the number of flowers in
E. septentrionale
and
T. acaulis
. Elevated salinity also reduced the number of shoots in all four species. Among the four species, sodium (Na
+
) and chloride (Cl
–
) concentration increased the most in
A. barnebyi
by 53 and 48 times, respectively, when irrigated with saline solution at an EC of 10.0 dS·m
−1
. In this study,
C. fruticosa
and
T. acaulis
had minimal foliar salt damage and less reduction in shoot dry weight, indicating that they are more tolerant to salinity.
Epilobium septentrionale
was moderately tolerant to saline solution irrigation with less foliar damage, although it had more reduction in shoot dry weight. On the other hand,
A. barnebyi
was the least tolerant with severe foliar damage, more reduction in shoot dry weight, and a greater concentration of Na
+
and Cl
–
.
American Society for Horticultural Science
Title: Salt Tolerance of Sego SupremeTM Plants
Description:
Sego Supreme
TM
is a designated plant breeding and introduction program at the Utah State University Botanical Center and the Center for Water Efficient Landscaping.
This plant selection program introduces native and adapted plants to the arid West for aesthetic landscaping and water conservation.
The plants are evaluated for characteristics such as color, flowering, ease of propagation, market demand, disease/pest resistance, and drought tolerance.
However, salt tolerance has not been considered during the evaluation processes.
Four Sego Supreme
TM
plants [
Aquilegia barnebyi
(oil shale columbine),
Clematis fruticosa
(Mongolian gold clematis),
Epilobium septentrionale
(northern willowherb), and
Tetraneuris acaulis
var.
arizonica
(Arizona four-nerve daisy)] were evaluated for salt tolerance in a greenhouse.
Uniform plants were irrigated weekly with a nutrient solution at an electrical conductivity (EC) of 1.
25 dS·m
−1
as control or a saline solution at an EC of 2.
5, 5.
0, 7.
5, or 10.
0 dS·m
−1
for 8 weeks.
After 8 weeks of irrigation,
A.
barnebyi
irrigated with saline solution at an EC of 5.
0 dS·m
−1
had slight foliar salt damage with an average visual score of 3.
7 (0 = dead; 5 = excellent), and more than 50% of the plants were dead when irrigated with saline solutions at an EC of 7.
5 and 10.
0 dS·m
−1
.
However,
C.
fruticosa, E.
septentrionale
, and
T.
acaulis
had no or minimal foliar salt damage with visual scores of 4.
2, 4.
1, and 4.
3, respectively, when irrigated with saline solution at an EC of 10.
0 dS·m
−1
.
As the salinity levels of treatment solutions increased, plant height, leaf area, and shoot dry weight of
C.
fruticosa
and
T.
acaulis
decreased linearly; plant height of
A.
barnebyi
and
E.
septentrionale
also declined linearly, but their leaf area and shoot dry weight decreased quadratically.
Compared with the control, the shoot dry weights of
A.
barnebyi
,
C.
fruticosa
,
E.
septentrionale
, and
T.
acaulis
decreased by 71.
3%, 56.
3%, 69.
7%, and 48.
1%, respectively, when irrigated with saline solution at an EC of 10.
0 dS·m
−1
.
Aquilegia barnebyi
and
C.
fruticosa
did not bloom during the experiment at all treatments.
Elevated salinity reduced the number of flowers in
E.
septentrionale
and
T.
acaulis
.
Elevated salinity also reduced the number of shoots in all four species.
Among the four species, sodium (Na
+
) and chloride (Cl
–
) concentration increased the most in
A.
barnebyi
by 53 and 48 times, respectively, when irrigated with saline solution at an EC of 10.
0 dS·m
−1
.
In this study,
C.
fruticosa
and
T.
acaulis
had minimal foliar salt damage and less reduction in shoot dry weight, indicating that they are more tolerant to salinity.
Epilobium septentrionale
was moderately tolerant to saline solution irrigation with less foliar damage, although it had more reduction in shoot dry weight.
On the other hand,
A.
barnebyi
was the least tolerant with severe foliar damage, more reduction in shoot dry weight, and a greater concentration of Na
+
and Cl
–
.
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