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2 y published studies have assessed the use of Astragalus and other Chinese herbal medicines in combina
3 raccumulating species belonging to the genus Astragalus are known for their capacity to accumulate up
4 ood and feed purposes, the phytochemicals of Astragalus armatus (AA), A. caprinus (AC), and A. gombif
5 valuate evidence from randomized trials that Astragalus-based Chinese herbal medicine combined with p
7 stribution and chemical forms of selenium in Astragalus bisulcatus (two-grooved poison or milk vetch)
12 SMT) from the selenium (Se) hyperaccumulator Astragalus bisulcatus in Arabidopsis and Indian mustard
13 a CysRS from the selenium accumulator plant Astragalus bisulcatus that is reported to reject Sec in
15 hyperaccumulators (Astragalus racemosus and Astragalus bisulcatus) and closely related nonaccumulato
16 ntic SMT enzyme from the Se-hyperaccumulator Astragalus bisulcatus, a related species that lives with
17 in, we present a newly recognized fossilized astragalus bone recently found in the legacy collections
18 ron, common eryngo, lavender, Jerusalem tea, astragalus, clover and acacia), two different honeydew h
19 d a transcript level in Se-hyperaccumulating Astragalus comparable with other plant species under S d
20 ferase (SMT) enzyme from the non-accumulator Astragalus drummondii and biochemically compare it with
21 tus and Stanleya pinnata and nonaccumulators Astragalus drummondii and Stanleya elata were cocultivat
24 bited multistep degradation while those from Astragalus gummifer (AG), Salvia aegyptiaca (SA) and Oci
29 inational treatment of two natural products, astragalus polysaccharide (APS) and beta-elemene (ELE) o
31 ted in both selenium (Se) hyperaccumulators (Astragalus racemosus and Astragalus bisulcatus) and clos
33 moter, was introduced into the forage legume Astragalus sinicus by Agrobacterium rhizogenes with kana
35 xpression of sulfate transporters in certain Astragalus species may lead to enhanced Se uptake and tr
36 sulfate transporters were cloned from these Astragalus species to investigate patterns of expression
37 nocysteine methyltransferase (SMT), in eight Astragalus species with varying abilities to accumulate
40 ized predominantly within the chloroplast in Astragalus, the principal site of Se assimilation in pla
41 eae; V-Anacardiaceae and Astragalus type; VI-Astragalus type and Myrtaceae; VII-Asteraceae family and
42 In these, the predominant pollens were: I-Astragalus type; II-Acanthus sp; III-Celastraceae; IV-Br
43 raceae; IV-Brassicaceae; V-Anacardiaceae and Astragalus type; VI-Astragalus type and Myrtaceae; VII-A
44 hat a fossilized rhinoceros (Stephanorhinus) astragalus was collected in the past, possibly from afar