scholarly journals Resistance of Tetranychus uraticae Koch to Some Compounds in Cotton Fields and Biochemical Resistance Mechanisms

Author(s):  
Madeha El-Dewy
2004 ◽  
Vol 60 (10) ◽  
pp. 1001-1006 ◽  
Author(s):  
Young-Joon Kim ◽  
Si-Hyeock Lee ◽  
Si-Woo Lee ◽  
Young-Joon Ahn

2018 ◽  
Vol 19 (4) ◽  
pp. 1441-1450 ◽  
Author(s):  
LOLA ADRES YANTI ◽  
ACHMAD ACHMAD ◽  
NURUL KHUMAIDA

Yanti LA, Achmad, Khumaida N. 2018. Resistance mechanisms of white jabon seedlings (Anthocephalus cadamba) againstBotryodiplodia theobromae causing dieback disease. Biodiversitas 19: 1441-1450. Anthocephalus cadamba (Roxb.) Miq. seedlings arethe most preferred plant for the nursery as they serve a lot of benefits and can be used as shading trees, reforestation, plywood, pulp,paper, and traditional medicines. Further, those benefits can increase the economic value of this plant. The main problem in the nurseryof forestry plants is pest and disease attacks, one of which is dieback disease. The dieback disease is caused by Botryodiplodiatheobromae Pat. that may lead death of the host plant. Every plant has its resistance mechanism toward pathogen attacks. This researchaimed: (1) to study B. theobromae attack through wounded and non-wounded stem infection methods on white jabon seedlings; (2) tostudy the resistance mechanisms of white jabon seedlings both structural and biochemical resistance against B. theobromae. This studyemployed a factorial treatment design laid out in a completely randomized design. The structural resistance was determined by studyingthe microscopic appearance of the white jabon seedlings’ stem by using a scanning electron microscope. Meanwhile, the biochemicalresistance was determined by characterizing the chemical compounds of white jabon seedlings' stem using phytochemistry analysis. Theresult showed that the disease incidence of the control (inoculated without pathogen isolate) and the inoculated (inoculated withpathogen isolate) seedlings were, respectively, 0% and 100% (with wounded stem) and 0% and 30% (non-wounded). The diseaseseverity of control and inoculated seedlings were 0% and 62% (with wounded stem) and 0% and 12% (non-wounded stem),respectively. The incubation period of wounded and non-wounded stems on inoculated seedlings (inoculated with pathogen isolate) wasone day after inoculation with the numeric values (disease scores) of 4 and 2, respectively. White jabon seedlings had necrotic resistanceas structural resistance mechanism against the pathogen attack. White jabon seedlings also contained secondary metabolites such asalkaloids, flavonoid, phenyl hydroquinone, tannin, saponin, and steroids. The biochemical resistance of white jabon seedling afterpathogen attacks was shown by the increase of accumulated phenolic compounds such as flavonoid and tannin.


Fruits ◽  
2009 ◽  
Vol 64 (5) ◽  
pp. 295-303 ◽  
Author(s):  
Hang Ye ◽  
Wen-jun Wang ◽  
Guo-jie Liu ◽  
Li-xin Zhu ◽  
Ke-gong Jia

JMS SKIMS ◽  
2020 ◽  
Vol 23 (1) ◽  
pp. 48-49
Author(s):  
Javaid Ahmad Bhat ◽  
Shariq Rashid Masoodi

Apropos to the article by Dr Bali, titled “Mupirocin resistance in clinical isolates of methicillin-sensitive and resistant Staphylococcus aureus in a tertiary care centre of North India” (1), the authors have raised important issue of emerging antimicrobial resistance (AMR). Antimicrobial resistance is an increasingly serious threat to global public health that requires action across all government sectors and society. As per WHO, AMR lurks the effective prevention and management of an ever-increasing spectrum of infections caused by bacteria, parasites, fungi and viruses. Novel resistance mechanisms are emerging and spreading globally, threatening the man’s ability to treat common infectious diseases.


2019 ◽  
Author(s):  
Daniel Sun ◽  
Soumya Poddar ◽  
Roy D. Pan ◽  
Juno Van Valkenburgh ◽  
Ethan Rosser ◽  
...  

The lead compound, an ⍺-N-heterocyclic carboxaldehyde thiosemicarbazone <b>HCT-13</b>, was highly potent against a panel of pancreatic, small cell lung carcinoma, and prostate cancer models, with IC<sub>90</sub> values in the low-to-mid nanomolar range.<b> </b>We show that the cytotoxicity of <b>HCT-13</b> is copper-dependent, that it acts as a copper ionophore, induces production of reactive oxygen species (ROS), and promotes mitochondrial dysfunction and S-phase arrest. Lastly, DNA damage response/replication stress response (DDR/RSR) pathways, specifically Ataxia-Telangiectasia Mutated (ATM) and Rad3-related protein kinase (ATR), were identified as actionable adaptive resistance mechanisms following <b>HCT-13 </b>treatment. Taken together, <b>HCT-13 </b>is potent against solid tumor models and warrants <i>in vivo</i> evaluation against aggressive tumor models, either as a single agent or as part of a combination therapy.


2019 ◽  
Author(s):  
Bram Frohock ◽  
Jessica M. Gilbertie ◽  
Jennifer C. Daiker ◽  
Lauren V. Schnabel ◽  
Joshua Pierce

<div>The failure of frontline antibiotics in the clinic is one of the most serious threats to human health and requires a multitude of novel therapeutics and innovative treatment approaches to curtail the growing crisis. In addition to traditional resistance mechanisms resulting in the lack of efficacy of many antibiotics, most chronic and recurring infections are further made tolerant to antibiotic action by the presence of biofilms. Herein, we report an expanded set of 5-benzylidene-4-oxazolidinones that are able to inhibit the formation of Staphylococcus aureus biofilms, disperse preformed biofilms and in combination with common antibiotics are able to significantly reduce the bacterial load in a robust collagen-matrix model of biofilm infection.</div>


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