Annona Glabra

Bitki adı: Annona Glabra
Bilimsel adı: Annona glabra
Cins: Annona
Familya: Annonaceae

Genel Bilgiler


Bilimsel Araştırmalar

Silver nanoparticles are one of the most extensively studied nanomaterials due to their high stability and low chemical reactivity in comparison to other metals. They are commonly synthesized using toxic chemical reducing agents which reduce metal ions into uncharged nanoparticles. However, in the last few decades, several efforts were made to develop green synthesis methods to avoid the use of hazardous materials. The natural biomolecules found in plants such as proteins/enzymes, amino acids, polysaccharides, alkaloids, alcoholic compounds, and vitamins are responsible for the formation of silver nanoparticles. The green synthesis of silver nanoparticles is an eco-friendly approach, which should be further explored for the potential of different plants to synthesize nanoparticles. In the present review we describe the green synthesis of nanoparticles using plants, bacteria, and fungi and the role of plant metabolites in the synthesis process. Moreover, the present review also describes some applications of silver nanoparticles in different aspects such as antimicrobial, biomedicine, mosquito control, environment and wastewater treatment, agricultural, food safety, and food packaging.

Makaleyi görüntüle
Cancer is a heterogeneous disease and one of the major issues of health concern, especially for the public health system globally. Nature is a source of anticancer drugs with abundant pool of diverse chemicals and pharmacologically active compounds. In recent decade, some natural products and synthetic analogs have been investigated for the cancer treatment. This article presents the utilization of natural products as a source of antitumor drugs.

Makaleyi görüntüle
α-Synuclein (α-syn) is a presynaptic protein that regulates the release of neurotransmitters from synaptic vesicles in the brain. α-Syn aggregates, including Lewy bodies, are features of both sporadic and familial forms of Parkinson's disease (PD). These aggregates undergo several key stages of fibrillation, oligomerization, and aggregation. Therapeutic benefits of drugs decline with disease progression and offer only symptomatic treatment. Novel therapeutic strategies are required which can either prevent or delay the progression of the disease. The link between α-syn and the etiopathogenesis and progression of PD are well-established in the literature. Studies indicate that α-syn is an important therapeutic target and inhibition of α-syn aggregation, oligomerization, and fibrillation are an important disease modification strategy. However, recent studies have shown that plant extracts and phytochemicals have neuroprotective effects on α-syn oligomerization and fibrillation by targeting different key stages of its formation. Although many reviews on the antioxidant-mediated, neuroprotective effect of plant extracts and phytochemicals on PD symptoms have been well-highlighted, the antioxidant mechanisms show limited success for translation to clinical studies. The identification of specific plant extracts and phytochemicals that target α-syn aggregation will provide selective molecules to develop new drugs for PD. The present review provides an overview of plant extracts and phytochemicals that target α-syn in PD and summarizes the observed effects and the underlying mechanisms. Furthermore, we provide a synopsis of current experimental models and techniques used to evaluate plant extracts and phytochemicals. Plant extracts and phytochemicals were found to inhibit the aggregation or fibril formation of oligomers. These also appear to direct α-syn oligomer formation into its unstructured form or promote non-toxic pathways and suggested to be valuable drug candidates for PD and related synucleinopathy. Current evidences from in vitro studies require confirmation in the in vivo studies. Further studies are needed to ascertain their potential effects and safety in preclinical studies for pharmaceutical/nutritional development of these phytochemicals or dietary inclusion of the plant extracts in PD treatment.

Makaleyi görüntüle
Forest trees are the dominant species in many parts of the world and predicting how they might respond to climate change is a vital global concern. Trees are capable of long-distance gene flow, which can promote adaptive evolution in novel environments by increasing genetic variation for fitness. It is unclear, however, if this can compensate for maladaptive effects of gene flow and for the long-generation times of trees. We critically review data on the extent of long-distance gene flow and summarise theory that allows us to predict evolutionary responses of trees to climate change. Estimates of long-distance gene flow based both on direct observations and on genetic methods provide evidence that genes can move over spatial scales larger than habitat shifts predicted under climate change within one generation. Both theoretical and empirical data suggest that the positive effects of gene flow on adaptation may dominate in many instances. The balance of positive to negative consequences of gene flow may, however, differ for leading edge, core and rear sections of forest distributions. We propose future experimental and theoretical research that would better integrate dispersal biology with evolutionary quantitative genetics and improve predictions of tree responses to climate change.

Makaleyi görüntüle
Annonaceae are a pantropically distributed family found predominantly in rainforests, so they are megathermal taxa, whereas Rhamnaceae are a cosmopolitan family that tend to be found in xeric regions and may be classified as mesothermal. Phylogenetic analyses of these families are presented based on rbcL and trnL-F plastid DNA sequences. Likelihood ratio tests revealed rate heterogeneity in both phylogenetic trees and they were therefore made ultrametric using non-parametric rate smoothing and penalized likelihood. Divergence times were then estimated using fossil calibration points. The historical biogeography of these families that are species rich in different biomes is discussed and compared with other published reconstructions. Rhamnaceae and most lineages within Annonaceae are too young to have had their distribution patterns influenced by break-up of previously connected Gondwanan landmasses. Contrasts in the degree of geographical structure between these two families may be explained by differences in age and dispersal capability. In both groups, long-distance dispersal appears to have played a more significant role in establishing modern patterns than had previously been assumed. Both families also contain examples of recent diversification of species-rich lineages. An understanding of the processes responsible for shaping the distribution patterns of these families has contributed to our understanding of the historical assembly of the biomes that they occupy.

Makaleyi görüntüle

Duke Ethnobotany - Tamamlayıcı Kullanımlar

Ülke: Curacao

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Ülke: Curacao

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Ülke: Dominican Republic

Duke USEAGE: F

Taxon: Annona glabra

Referans: Liogier

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: F

Taxon: Annona glabra

Referans: Martinez

Kaynak: James A. Duke

Ülke: Brazil

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Ülke: Cuba

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Ülke: Dominican Republic

Duke USEAGE: F

Taxon: Annona glabra

Referans: Liogier

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: F

Taxon: Annona glabra

Referans: Liogier

Kaynak: James A. Duke

Ülke: Brazil

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: F

Taxon: Annona glabra

Referans: Standley

Kaynak: James A. Duke

Ülke: Cuba

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Ülke: Curacao

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: F

Taxon: Annona glabra

Referans: Martinez

Kaynak: James A. Duke

Ülke: Cuba

Duke USEAGE: F

Taxon: Annona glabra

Referans: Eb22: 93

Kaynak: James A. Duke

Kaynaklar ve Görseller

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