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For this, high-throughput molecular marker technologies are needed.
Rapid advances in molecular marker technologies are revolutionizing the ways in which resistance can be manipulated in breeding programmes.
Current polymerase chain reaction (PCR -based marker technologies are not PCR -basede in termarkerconsumable and labour costechnologiesarelicationot
Molecular marker technologies are undergoing a transition from largely serial assays measuring DNA fragment sizes to hybridization-based technologies with high multiplexing levels.
However, continuing advances in molecular marker technologies are revolutionizing the ability to rapidly and reliably manipulate resistances of all types – major gene, adult plant and quantitative resistance loci singly or multiply into individual host lines.
While SNP markers have a promising future in plant breeding applications, and may augment or displace SSR based marker systems, SNP based markers and associated technologies are in their infancy in most crops, including pigeonpea, while SSR marker technologies are better established for wide spread use in molecular breeding.
Similar(54)
Until recently, marker technologies were unable to deal effectively with the very large sample numbers contained in such collections.
It is therefore appropriate that new developments in marker technology are both explored and thoroughly evaluated against the current state of the art.
Several genetic linkage maps based on various markers technologies are now available for perennial ryegrass [ 1- 9].
The passive marker technology is intuitive and enables the surgeon to use his or her own instruments at any time as a pointing device, thus avoiding further costs for specially designed surgical equipment.
In peanut, marker technology is relatively young and only recently have genetic maps been published [ 13- 15].
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