One-step creation of CMS lines using a BoCENH3-based haploid induction system in Brassica crop. [PDF]
Han F +5 more
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Efficient haploid induction via egg cell expression of dandelion PARTHENOGENESIS in foxtail millet (Setaria italica). [PDF]
Huang Y +9 more
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Extension of the in vivo haploid induction system from diploid maize to hexaploid wheat. [PDF]
Liu C +15 more
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Allelic variation and haplotype diversity of <i>Matrilineal</i> (<i>MTL</i>) gene governing in vivo maternal haploid induction in maize. [PDF]
Dutta S +9 more
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Potential gene editing targets for developing haploid inducer stocks in rice and wheat with high haploid induction frequency. [PDF]
Goyal L +6 more
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Prediction of matrilineal specific patatin-like protein governing in-vivo maternal haploid induction in maize using support vector machine and di-peptide composition. [PDF]
Dutta S +9 more
europepmc +1 more source
Centromere histone H3- and phospholipase-mediated haploid induction in plants. [PDF]
Wang S, Jin W, Wang K.
europepmc +1 more source
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Haploid Induction and Genome Instability
Trends in Genetics, 2019The advent of affordable, large-scale DNA sequencing methods, coupled with advanced computing power, is empowering a detailed analysis of the structure and function of chromosomes. Genomic instability, involving chromosome number and structure changes, has been documented in multiple systems.
Ek Han Tan, Luca Comai
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Genetic Analysis of Maternal Haploid Inducibility for In Vivo Haploid Induction in Maize
Doubled haploid (DH) technology based on in vivo haploid induction has gradually become the key technology in modern maize breeding. The ability of maternal germplasm to be induced into haploids, inducibility, varies among genotypes. To dissect the genetic basis of maternal haploid inducibility (MHI), an F2 population derived from inbred lines B73 and ...
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Cenh3: An Emerging Player in Haploid Induction Technology [PDF]
True-breeding lines are required for the development and production of crop varieties. In a classical breeding approach these lines are obtained through inbreeding, and often 7-9 generations of inbreeding is performed to achieve the desired level of homozygosity, over a period of several years. In contrast, the chromosomes of haploids can be doubled to
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