[PDF] Top 20 Herbicide effects on plant disease. - Portal Embrapa
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Herbicide effects on plant disease. - Portal Embrapa
... of plant diseases by herbicides. In a survey of the effects of twelve herbicides (bentazon, acifluorfen, chlorimuron, fluazifop, diclofop, sethoxydim, imazaquin, metribuzin, oryzalin, thidiazuron, ... See full document
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Effects of glyphosate-resistant crop cultivation on soil and water quality - Portal Embrapa
... the shikimate pathway by inhibiting the enzyme 5-enolpyruvyl- shikimate-3-phosphate synthase (EPSPS). This results in reduced aromatic amino acids and deregulation of the pathway. The latter effect causes massive flow of ... See full document
9
The effects of moisture and temperature on the degradation of sulfentrazone. - Portal Embrapa
... available on the biotransformation of this compound in Brazilian soils, which is an important aspect to be exploited due to the characteristics of the herbicide and its contamination potential (Agro fit, ... See full document
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Bacillus-based biological control of plant diseases. - Portal Embrapa
... seedling disease) caused by Rhizoctonia solani (Asaka & Shoda, ...mold disease caused by Botrytis ...effective disease control provided by treatment of fruits with cLPs-enriched extracts and by ... See full document
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Carbon dioxide enrichment effects on the decomposition of sugarcane residues. - Portal Embrapa
... micro-organisms on plant litter and it is strongly influenced by environmental conditions (Cotrufo et ...studies on interactions of climate change with soil carbon stocks, organic matter ... See full document
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Impact of plant domestication on rhizosphere microbiome assembly and functions. - Portal Embrapa
... rely on their rhizosphere microbiome for functions and traits related to plant growth, development and health (Berendsen et ...of plant genetic resistance against belowground pathogens and that ... See full document
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Estimation of herbicide bioconcentration in sugarcane (Saccharum officinarum L.). - Portal Embrapa
... sugarcane herbicide bioconcentration relies on several assumptions: degradation in the soil and its metabolism and dilution in the plant are described by first order kinetic equation; the ... See full document
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Anais... - Portal Embrapa
... controlling plant pathogens is through the use of resistant varieties; nevertheless many problems have been asso- ciated with the use of resistance, expecially where specific monogenic re- sistences have been ... See full document
126
Glyphosate on shikimic acid on Urochloa plantaginea. - Portal Embrapa
... glicina) herbicide was the milestone of a new age in control of weeds (HELAnDER et ...determining plant exposure to this herbicide, has been used as a quick and accurate way to identify resistant ... See full document
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Land use and seasonal effects on the soil microbiome of a Brazilian dry forest. - Portal Embrapa
... The most striking functional difference between microbial communities from CEF soils of was detected in Virulence, Disease and Defense, followed by Carbohydrates subsystem (SEED level 1, Supplementary Figure S3). ... See full document
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Effects of sublethal and realistic concentrations of the commercial herbicide atrazine in Pacu (Piaractus mesopotamicus): long-term exposure and recovery assays. - Portal Embrapa
... biological effects of cATZ seem more ...this herbicide [16-19]. Nevertheless, works on renal and hepatic recovery after long-term exposure to ATZ are scarce, being conducted mainly in common carp ... See full document
13
Effects of agriculture on ground water in a recharge area of Guarany Aquifer in Brazil. - Portal Embrapa
... The region of Ribeirão Preto City located in São Paulo State, southeastern Brazil, is an important and highly mechanized sugar cane producing area. It is also an important recharge area of the Guarany aquifer, which ... See full document
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Research approaches, adaptation strategies, and knowledge gaps concerning the impacts of climate change on plant diseases. - Portal Embrapa
... for plant resistance to phytopathogens (Kunz et ...to plant, cultivar, and study site (Paul & Gwynn- Jones, ...the effects of UV-B radiation on Nicotiana longiflora ...represented ... See full document
20
Climate change and plant disease. - Portal Embrapa
... the effects of tem- perature change and enhanced UV-B ...effect on the leaf wetting ...in disease severity and in the area bellow the disease progress curve, because higher risk of epidemics ... See full document
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Selection of microorganisms degrading S-Metolachlor herbicide. - Portal Embrapa
... side effects of this situation include an intense and abusive utilization of these chemicals, creating many kinds of problems (Fay et ...impact on the environment is clear, but measuring its effects ... See full document
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Potential environmental impacts of herbicide-resistant crops. - Portal Embrapa
... t effects o f HRCs and th e ir m a n a g e m e n t in c lu d e changes in soil m ic ro b ia l ac tiv ity d u e to d ire c t effects o f th e h e rb icid e s used w ith th e HRC, d iffe re n ce s in th e a m ... See full document
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Effects of different osmolarities on bacterial biofilm formation. - Portal Embrapa
... As discussed earlier, the formation of exopolysaccha- rides (EPS) provides cellular protection against adverse en- vironmental conditions and also contributes to biofilm formation (Chang et al., 2007; Wai et al., 1998). ... See full document
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Global change and plant diseases. - Portal Embrapa
... Effects of climatic change on the cycle of pathogen-host relationships The classic disease triangle illustrates one of the paradigms of Plant Pathology, which establishes t[r] ... See full document
18
Effect of salinity on soil microorganisms. - Portal Embrapa
... that on a long-term basis there is a decrease in the genetic diversity of fungi as a result of ...stress. On the other hand, Killham (1994) mentioned that the filamentous fungi are highly tolerant of hydric ... See full document
23
Plant Leaf Disease Detection based on Unsupervised Learning
... 3DWLO 6DQMD\ % 'XGKDQH 70 SURSRVHG D PHWKRG WKDW ZRUNV LQ WZR VWDJHV )HDWXUH ([WUDFWLRQ DQG )HDWXUH 0DWFKLQJ,QIHDWXUHH[WUDFWLRQWKHIHDWXUHYHFWRUVIURPLPDJHVDUHH[WUDFWHGDQGVWRUHGLQIHDWXUHG[r] ... See full document
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