haploid inducer line can be transferred (DH) technology can not only shorten the breeding process but also increase genetic gain. Haploid induction and subsequent genome doubling are the two main steps required for DH technology. Haploids have been generated through the culture of immature male and female gametophytes, and through inter- and intraspecific via chromosome elimination. Here, we focus on haploidization via chromosome elimination, especially the recent advances in centromere-mediated haploidization. Once haploids have been induced, genome doubling is needed to produce DH lines. This study has proposed a new strategy to improve haploid genome doubling by combing haploids and minichromosome technology. With the progress in haploid...
The implementation of modern inducer lines in maize breeding can substantially decrease the time req...
The present study was carried out to develop doubled haploid lines using in-vivo maternal haploid in...
The ability to produce doubled haploid plants has found broad application in fundamental and applied...
The creation of homozygous parental lines for hybrid development is one of the key components of com...
Doubled haploid (DH) technology has changed the maize-breeding landscape in recent years. Traditiona...
International audienceDoubled haploid (DH) technology produces strictly homozygous fertile plant tha...
The discovery of haploids in higher plants led to the use of doubled haploid (DH) technology in plan...
Emerging threats of climate change require the rapid development of improved varieties with a higher...
Haploid genome doubling is a key limiting step of haploid breeding in maize. Spontaneous restoration...
Based on previous studies this review presents about double haploid technology and its role in crop ...
Doubled haploid (DH) lines are used in maize breeding to accelerate the breeding cycle and create ho...
The doubled haploid technology is now an integral component of modern maizebreeding programs. In thi...
Doubled haploids (DHs) are powerful tools to reduce the time and costs needed to produce pure lines ...
Non-Peer ReviewedDoubled haploidy methodology is commonly used in many agronomically important crops...
Maize breeding lines developed using doubled haploids produced through in vivo induction of maternal...
The implementation of modern inducer lines in maize breeding can substantially decrease the time req...
The present study was carried out to develop doubled haploid lines using in-vivo maternal haploid in...
The ability to produce doubled haploid plants has found broad application in fundamental and applied...
The creation of homozygous parental lines for hybrid development is one of the key components of com...
Doubled haploid (DH) technology has changed the maize-breeding landscape in recent years. Traditiona...
International audienceDoubled haploid (DH) technology produces strictly homozygous fertile plant tha...
The discovery of haploids in higher plants led to the use of doubled haploid (DH) technology in plan...
Emerging threats of climate change require the rapid development of improved varieties with a higher...
Haploid genome doubling is a key limiting step of haploid breeding in maize. Spontaneous restoration...
Based on previous studies this review presents about double haploid technology and its role in crop ...
Doubled haploid (DH) lines are used in maize breeding to accelerate the breeding cycle and create ho...
The doubled haploid technology is now an integral component of modern maizebreeding programs. In thi...
Doubled haploids (DHs) are powerful tools to reduce the time and costs needed to produce pure lines ...
Non-Peer ReviewedDoubled haploidy methodology is commonly used in many agronomically important crops...
Maize breeding lines developed using doubled haploids produced through in vivo induction of maternal...
The implementation of modern inducer lines in maize breeding can substantially decrease the time req...
The present study was carried out to develop doubled haploid lines using in-vivo maternal haploid in...
The ability to produce doubled haploid plants has found broad application in fundamental and applied...