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Number of results: 4
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Abstract

Habitat fragmentation is one of serious threats to biodiversity of nature in today's world. The present study of a typical steppe species Iris pumila L. (Iridaceae) has analyzed the impacts of geographical isolation and population size on genetic diversity and population structure in conditions of habitat fragmentation. The key indices of population genetic variability calculated from the ISSR markers data were on average as follows: Shannon diversity index (S) – 0.188; unbiased Nei’s gene diversity (He) – 0.123; and the average measure of Jaccard’s genetic distances between individuals within populations – 58.4%. Although the largest population had significantly higher values of S and He, the small and marginal populations also showed a comparable level of variation. Most of the genetic variation of I. pumila was distributed within the populations. A strong correlation was found between Nei’s genetic distances and geographic distances between the populations. According to the Bayesian analysis, genetic structure of the populations was highly homogeneous; however, the presence of admixed genotypes indicated the possibility of gene flow between the populations at present.

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Authors and Affiliations

Olena Bublyk
Igor Andreev
ORCID: ORCID
Ivan Parnikoza
ORCID: ORCID
Viktor Kunakh
ORCID: ORCID
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Abstract

Dehydroabietic acid R=COOH (DHA), a naturally occuring diterpene resin acid, is an activator of systemic acquired resistance (SAR) under biotic stress. However, there had been no report on its functioning under salinity. In the present study, we determined the effects of DHA on salinity and its possible role as a signal transmitter in soybean (Glycine max L.) leaves under salinity (200 mM NaCl). Furthermore, physiological parameters, chlorophyll, proline, malondialdehyde (MDA), hydrogen peroxide (H2O2) content, superoxide (O2‾) and hydroxyl radical (•OH) scavenge capacity, as well as antioxidant enzymes (SOD, POX, APX and GST) and GmWRKY-71 gene expressions were investigated in the treated plants at 6 h, 12 h and 24 h. The obtained results showed that pretreatment of DHA caused (1) a reduction in salt-induced damage, (2) improvement in biomass yield, water status, chlorophyll and leaf area, (3) regulation of the proline level and relative electrolyte leakage, (4) increase in reactive oxygen species (ROS) scavenging capacity, (5) induction of SOD and APX enzyme activity at all the investigated periods, while POX only at 6 h, and thus alleviation of the oxidative damage. In addition, the changes in GmWRKY-71 gene expressions were remarkable in soybean under salinity. To sum up, these results showed that DHA can be used as a ROS inhibitor or a signal molecule in increasing salt tolerance in soybean under salinity.

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Authors and Affiliations

Eda Tasci
Burcu Seckin Dinler
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Abstract

Hydrogen sulfide (H2S) regulates many critical processes of plants. The effect of sodium hydrogen sulfide as H2S agent was investigated in basil plants under cadmium stress. A completely randomized design with three different concentrations (0, 50 and 100 μM) of CdCl2 and two levels of NaHS (0 and 100 μM) was used in this study. Cadmium exposure reduced growth parameters and relative water content. Cd also caused a significant increase in ion leakage and higher oxidative stress in terms of lipid peroxidation and H2O2 production. Although exogenous NaHS used in non-stressed control plants negatively affected growth and physiological parameters, it improved the root/shoot length ratio and fresh weight in basil plants under Cd 50 μM exposure. Moreover, NaHS alleviated deleterious effects of cadmium on ion leakage, relative water content and photosynthetic pigments of leaves. The activity of antioxidant enzymes like catalase, peroxidase and ascorbate peroxidase were also enhanced by NaHS in plants under moderate cadmium stress. Our results show that NaHS 50 μM ameliorates growth retardation induced by cadmium 50 μM stress in basil plants, probably through regulating physiological parameters such as photosynthetic pigments content, relative water content and the activity of antioxidant enzymes.

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Authors and Affiliations

Hakimeh Oloumi
Mansooreh Khodashenas
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Abstract

The genus Scutellaria L., Lamiaceae family, Scutellarioideae sub-family is known as the most important medicinal plant in the world. This research aimed to investigate the flavonoid content of seven Scutellaria species from the center, southwest, and west of Iran. Via thin layer and column chromatography, the flavonoid was extracted from leaves and then purified. To screen the flavonoid compositions, a chromatographic method was applied by liquid chromatography mass spectrometry on a triple quadrupole mass spectrometer (LC/TQMS/MS). Fingerprint analysis was implemented so as to characterize a total of 73 chemical compounds, from which 71 compounds were flavonoids belonging to different classes. Flavone with 37 derivatives possessed major values. The most abundant flavonoid compounds were observed in S. multicaulis (23 compounds) and S. patonii (22 compounds). Flavonoid composition, including apigenin, kaempferol, quercetin, and hydroxyl- flavones represented remarkable derivatives. A total of 45 flavonoids, one tannin and one anthraquinone compound, were observed to be primarily separated and identified for Scutellaria species. Moreover, six categorized chemical groups were identified in this genus and proposed as chemical barcodes. The specific chemical groups strongly provided the boundaries of Scutellaria species, the pharmacological value enhancement, breeding programs, and comprehensive documents of the species. According to the results, LC/TQMS/MS was proven a dominant method regarding genus Scutellaria.

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Authors and Affiliations

Farzaneh Jafari Dehkordi
Navaz Kharazian
Zahra Lorigooini

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