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151.
Tomato serves as a model to introduce agronomically important genes into dicotyledonous crop plants and to develop edible vaccines and produce cost-effective therapeutics. This study has developed an efficient protocol of shoot organogenesis for Lycopersicon esculentum Mill. through using of different types of explants and growth regulators. Generally, all explants responded significantly to presence of BAP. Best shoot regeneration for leaf (100%) was achieved on MS supplemented with BAP (2 mg/L) + IAA (0.1 mg/L), whereas it was recorded on MS supplemented with BAP (2 mg/L) and BAP (2 mg/L) + IAA (0.5 mg/L) for cotyledons (95%). In addition, hypocotyls (77%) showed the best shoot response on MS supplemented BAP (3 mg/L). Highest number of shoots per explant was 13.33, 12.25, 7.94 respectively for hypocotyls, leaves, cotyledons. The best medium for highest length of shoot was in the presence of BAP (3 and 2 mg/L) + IAA (0.1 mg/L) respectively for hypocotyl (45 mm) and leaf (40.50 mm) explants. This parameter was achieved for cotyledons (13.32 and 12.5 mm) on MS medium supplemented with BAP (3 and 2) mg/L + IAA (0.1 mg/L), respectively. The increasing of BAP concentration up to 3 (mg/L) causes shoot length to continue developing, but it fell down in the presence of BAP (4 mg/L) due to the toxic effect of growth regulators accumulation. Root formation took place within 10–14 days after culturing on the rooting media. Best root induction (100%) was observed on MS medium supplemented with IAA (0.1 and 0.2 mg/L). All rooted shoots acclimated in phytotron and then cultivated in the greenhouse.  相似文献   
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153.

Asparagus officinalis is the most economically important species of asparagus worldwide. Commercial cultivars of asparagus are susceptible to some biotic and abiotic stresses. Drought stress is one of the most common stresses in agricultural crops cultivation. The main purpose of the current study was to compare Iranian asparagus accessions drought tolerance rate with that of ‘Mary Washington’ commercial cultivar and introducing superior accessions in terms of dry resistance rate. A factorial experiment was laid out based on a completely randomized design with three replications. The factors were a) asparagus accession in 10 levels including nine wild accessions of Iranian asparagus and ‘Mary Washington’ commercial cultivar (as control) and b) drought stress in four levels including 0 (as control), 5, 10 and 15% (w/v polyethylene glycol). Results showed that highest values of percentage and speed of seed germination and lengths of radicle and plumule were recorded in Gazanak accession. The lowest values of radicle length were recorded in Chalaki and Shiraz accessions (6.19 and 8.01?mm, respectively). Calli of ‘Mary Washington’ cultivar under highest applied level of drought stress showed the lowest value of relative growth rate (11.53?mg/day). Cluster analysis based on assessed characteristics under different applied levels of drought stress, divided Iranian asparagus accessions into four groups at Euclidean distance of 2.0. In conclusion, obtained results showed that Iranian asparagus accessions especially Gazanak accession could be a good candidate to apply in asparagus breeding programs with aim of producing asparagus dry tolerant cultivars.

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154.
Characterization and extraction of plant secondary metabolites are important in agriculture, pharmaceutical, and food industry. In this regard, the applied analytical methods are mostly costly and time-consuming; therefore, choosing a suitable approach is essential for optimum results and economic suitability. One of the recently considered methods used to characterize new types of materials is MIPs. Among the various applications of MIPs is the identification and separation of various plant-derived compounds, such as secondary metabolites, chemical residues, and pesticides. The present review describes the application of MIPs as a tool in medicinal plant material analysis, focusing on plant secondary metabolism. Key Words: Molecularly imprinted polymers, Plants medicinal, Secondary metabolism  相似文献   
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Background:CTX is a rare congenital lipid-storage disorder, leading to a progressive multisystem disease. CTX with autosomal recessive inheritance is caused by a defect in the CYP27A1 gene. Chronic diarrhea, tendon xanthomas, neurologic impairment, and bilateral cataracts are common symptoms of the disease. Methods:Three affected siblings with an initial diagnosis of non-syndromic intellectual disability were recruited for further molecular investigations. To identify the possible genetic cause(s), WES was performed on the proband. Sanger sequencing was applied to confirm the final variant. The clinical and molecular genetic features of the three siblings from the new CTX family and other patients with the same mutations, as previously reported, were analyzed. The CYP27A1 gene was also studied for the number of pathogenic variants and their location. Results:We found a homozygous splicing mutation, NM_000784: exon6: c.1184+1G>A, in CYP27A1 gene, which was confirmed by Sanger sequencing. Among the detected pathogenic variants, the splice site mutation had the highest prevalence, and the mutations were mostly found in exon 4. Conclusion:This study is the first to report the c.1184+1G>A mutation in Iran. Our findings highlight the other feature of the disease, which is the lack of relationship between phenotype and genotype. Due to nonspecific symptoms and delay in diagnosis, CYP27A1 genetic analysis should be the definitive method for CTX diagnosis. Key Words: Cerebrotendinous xanthomatosis, CYP27A1, Intellectual disability, Iran, Whole exome sequencing  相似文献   
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