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From the plot, it is clear that the grain resistance decreases with rise in temperature and indicates negative temperature co-efficient of resistance like a semiconductor.
Both grain (R g) and grain boundary (R gb) decreases with rise in temperature indicating the negative temperature co-efficient of resistance (NTCR) behavior for all the samples.
The grain and grain boundary resistance decreases with rise in temperature for all the concentration and exhibits a typical negative temperature co-efficient of resistance (NTCR) behavior.
It also supports the negative temperature co-efficient of resistance type behavior of the materials since the grain capacitance (C g) is inversely proportional to the grain resistance (R g).
In a previous study [45], a Cre-lox setting was established that allowed the efficient removal of resistance genes from the genomes of Staphylococcus carnosus and Staphylococcus aureus.
Efficient introgression of resistance genes (Bph1, bph2, Bph3, Bph14, Bph15, Bph18, Bph20, and Bph21) into elite rice cultivars by marker-assisted selection together with strategic deployment of these genes can be an important approach to develop stable resistance to BPH and sustain rice production in the tropical and temperate rice growing regions.
The 2 phenomena are not mutually exclusive and can be associated in the emergence and more efficient spread of resistance.
Therefore knowledge of these costs can help plant breeders to better understand evolutionary change in the pathogen and to develop more efficient strategies of resistance management.
We observed that PI3K/mTOR inhibition increases autophagic rate, which constitutes an efficient mechanism of resistance by inducing growth arrest and survival.
Interestingly, IM7.8.1 (which also cross-reacts with human CD44), rather than mAbs recognizing the HA-binding site, is the most efficient inducer of resistance to arthritis in experimental animal models [ 11, 62].
Notably, these data can be used by breeders to identify both target loci as well as small RNA sequence requirements for fast and efficient migration of resistance locus A to organism B using the emerging techniques of genome editing in case restricted taxonomic R-gene functionality doesn't apply.
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