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251.
Fourteen microsatellite markers were used to describe genetic diversity in a sample of 128 common bean (Phaseolus vulgaris L.) accessions cultivated within the territory of Slovenia and its nearby regions between 1800 and 2000. The accessions were
grouped into three periods: period I comprising accessions from the beginning of the 19th century, while the other two periods
included accessions from the middle (period II) and the end of the 20th century (period III). Seven control accessions of
known Mesoamerican and Andean origin were also included in the study. A total of 130 alleles were generated. Allelic richness,
in terms of number of alleles per locus, was 6.07 for period I, 6.71 for period II, and 6.07 for period III. In the UPGMA
dendrogram, all studied accessions were intermixed in three main clusters, indicating that the diversity in the time periods
overlapped. Two clusters consisted of accessions of Andean and Mesoamerican origin, while the third represents additional
variation, which existed in this area already 200 years ago. The analysis of molecular variance showed that a great part of
genetic diversity has been preserved till today, confirming the results of cluster analysis. The calculation of number of
alleles per locus revealed no significant quantitative change in genetic diversity over the last 200 years of common bean
cultivation. However, the calculation of genetic distances indicated slight qualitative shifts in genetic diversity of common
bean germplasm over time, while the calculations of allelic frequency variation and polymorphic information content revealed
recent decline of some alleles’ frequencies. These findings should stress the need for establishing an appropriate strategy
of genetic resources management.
The text was submitted by the authors in English. 相似文献
252.
253.
Abscisic acid is required for somatic embryo initiation through mediating spatial auxin response in Arabidopsis 总被引:1,自引:0,他引:1
Abscisic acid (ABA) regulates many aspects of plant development, including somatic embryo (SE) initiation. However, mechanisms of ABA functions on SE initiation have remained to be investigated. In this study, we examined the endogenous ABA contents of calli in Arabidopsis during the SE inductive process. We further found that the capacity for SE initiation was strongly impaired by treatment of fluridone, a potent inhibitor of ABA biosynthesis, as well as by mutation of ABA biosynthetic gene ABA2, suggesting that ABA is required for SE initiation. Furthermore, treatment of fluridone inhibited local auxin biosynthesis and auxin polar transport in the embryonic calli, resulting in the disturbance of auxin response pattern and the decreased regeneration frequency of SEs. However, application of exogenous ABA in the medium almost recovered patterns of auxin response and SE initiation. Thus, the results suggest that ABA functions on SE initiation through mediating both auxin biosynthesis and polar transport for establishment of auxin response pattern in callus. Our study provides new information for understanding mechanisms of SE initiation. 相似文献
254.
255.
A white-rot basidiomycete Ganoderma spp. has long been used as a medicinal mushroom in Asia, and it has an array of pharmacological properties for immunomodulatory
activity. There have been many reports about the bioactive components and their pharmacological properties. In order to analyze
the current status of Ganoderma products, the detailed process of cultivation of Ganoderma spp. and development of their products are restated in this review article. These include the breeding, cultivating, extracting
bioactive component, and processing Ganoderma products, etc. This article will expand people’s common knowledge on Ganoderma, and provide a beneficial reference for research and industrial production. 相似文献
256.
Flip‐flop organization in the chloroplast genome of Capsosiphon fulvescens (Ulvophyceae,Chlorophyta)
Dongseok Kim JunMo Lee Ji Won Choi Ji Hyun Yang Il‐Ki Hwang Hwan Su Yoon 《Journal of phycology》2019,55(1):214-223
To better understand organelle genome evolution of the ulvophycean green alga Capsosiphon fulvescens, we sequenced and characterized its complete chloroplast genome. The circular chloroplast genome was 111,561 bp in length with 31.3% GC content that contained 108 genes including 77 protein‐coding genes, two copies of rRNA operons, and 27 tRNAs. In this analysis, we found the two types of isoform, called heteroplasmy, were likely caused by a flip‐flop organization. The flip‐flop mechanism may have caused structural variation and gene conversion in the chloroplast genome of C. fulvescens. In a phylogenetic analysis based on all available ulvophycean chloroplast genome data, including a new C. fulvescens genome, we found three major conflicting signals for C. fulvescens and its sister taxon Pseudoneochloris marina within 70 individual genes: (i) monophyly with Ulotrichales, (ii) monophyly with Ulvales, and (iii) monophyly with the clade of Ulotrichales and Ulvales. Although the 70‐gene concatenated phylogeny supported monophyly with Ulvales for both species, these complex phylogenetic signals of individual genes need further investigations using a data‐rich approach (i.e., organelle genome data) from broader taxon sampling. 相似文献
257.
Junjie U Guo Yijing Su Chun Zhong Guo-li Ming Hongjun Song 《Cell cycle (Georgetown, Tex.)》2011,10(16):2662-2668
Cytosine methylation is the major epigenetic modification of metazoan DNA. Although there is strong evidence that active DNA demethylation occurs in animal cells, the molecular details of this process are unknown. The recent discovery of the TET protein family (TET1–3) 5-methylcytosine hydroxylases has provided a new entry point to reveal the identity of the long-sought DNA demethylase. Here, we review the recent progress in understanding the function of TET proteins and 5-hydroxymethylcytosine (5hmC) through various biochemical and genomic approaches, the current evidence for a role of 5hmC as an early intermediate in active DNA demethylation and the potential functions of TET proteins and 5hmC beyond active DNA demethylation. We also discuss how future studies can extend our knowledge of this novel epigenetic modification.Key words: TET1, 5-hydroxymethylcytosine, active DNA demethylation, epigenetic, DNA methylation, hippocampus, electroconvulsive stimulation, Gadd45b, BER 相似文献
258.
259.
Wen‐Jing Chen Sheng Zhang Wei‐Guang Zhang Jun Fan Xia Yin Sheng‐Run Zheng Wen‐Cui Su Zhi Zhang Tao Hong 《Chirality》2012,24(10):804-809
Quartz crystal microbalance (QCM) biosensor was used for the chiral recognition of five pairs of enantiomers by using goat serum albumin (GSA) and rabbit serum albumin (RbSA) as chiral selectors. Serum albumin (SA) was immobilized on the QCM through the self‐assembled monolayer technique, and the surface concentration of GSA and RbSA were 8.8 × 10?12 mol cm?2 and 1.2 × 10?11 mol cm?2, respectively. The QCM biosensors showed excellent sensitivity and selectivity. Meanwhile, the chiral recognition of SA sensors was quite species dependent. There were differences between GSA and RbSA sensors in the ability and the preference of chiral recognition. To R,S‐1,2,3,4‐tetrahydro‐1‐naphthylamine (R,S‐1‐TNA), R,S‐1‐(4‐methoxyphenyl)ethylamine (R,S‐4‐MPEA), and R,S‐1‐(3‐methoxyphenyl)ethylamine (R,S‐3‐MPEA), the preference of the stereoselective SA‐drug binding of the two kinds of SA sensors were consistent. However, to R,S‐2‐octanol (R, S‐2‐OT) and R,S‐methyl lactate (R,S‐MEL), the two kinds of SA sensors had opposite chiral recognition preference. Moreover, the interactions of SA and the five pairs of enantiomers have been further investigated through ultraviolet (UV) and fluorescent (FL) spectra. The UV/FL results were in accordance with the consequence of QCM. Chirality 24:804–809, 2012. © 2012 Wiley Periodicals, Inc. 相似文献
260.
High-throughput sequencing of hair follicle development-related micrornas in cashmere goat at various fetal periods 总被引:1,自引:0,他引:1
Yang Liu Lele Wang Xiaoyan Li Wenjing Han Kun Yang Honghao Wang Yanjun Zhang Rui Su Zhihong Liu Ruijun Wang Zhiying Wang Yanhong Zhao Zhixin Wang Jinquan Li 《Saudi Journal of Biological Sciences》2018,25(7):1494-1508
Inner Mongolia cashmere goat marks a precious gerplasm genetic resource due to its excellent cashmere traits. Therefore, it is of crucial importance to investigate the cashmere development mechanism of cashmere goat and to search for the important cashmere growth-related candidate genes. Fetal skin samples at 10 different periods of cashmere goat were collected in this research. Moreover, high-throughput sequencing was conducted on RNA samples from side skin of cashmere goat fetuses collected at three critical periods of skin hair follicle initiation, growth and development (namely, 45, 55 and 65?days) after balanced mix in line with the previous research results. Meanwhile, 3 samples at corresponding periods were used as the biological duplications. Data regarding microRNA and mRNA expression in skin and hair follicles of cashmere goats at various fetal periods were obtained using the high-throughput sequencing method. The results indicated that microRNAs in the oar-let-7 and oar-miR-200 families in 55?days and 66?days of pregnancy samples had been notably up-regulated relative to those in 45?days of pregnancy samples. This revealed that they might be the critical microRNAs in hair follicle development. 相似文献