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In contrast, majority of varieties released in India are hard and have null mutation in pinA. There are some exceptions where some hard wheats in India do not exhibit either null mutation in pinA or glycine to serine change in pinB. There might be some additional mutations that are to be characterised in elucidating the molecular basis of hardness for usage in genetic engineering.
In this method, experimental conditions do not need to be altered depending on mutation sites, and it should be the alternative method for mutation screening.
In this article, we propose a new mutation technique called, directed mutation following the concept of induced mutation in biological systems.
The results also give concrete suggestions on how to improve mutation analysis and reveal some inherent limitations.
Our analysis also illustrates how the mutation rate may affect population differentiation, as different mutation rates result in different levels of homoplasy at microsatellite loci.
Molecular mutation breeding will significantly increase both the efficiency and efficacy of mutation techniques in crop breeding.
The recent development of dominator mutants and minimal mutation analysis lets us analyze selective mutation without the noise introduced by the redundancy inherent in traditional mutation.
Due to its efficiency and flexibility, the Major mutation framework is suitable for the application of mutation analysis in research and practice.
Patna requires a more effective harnessing of the private sector augmented with reliable diagnostic investigations and a focus on quality.
The mutation is a silent mutation that might have consequences in the creation of a new splice site.