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A Molecular Marker of Maize Chromosome 9 Anthesis Qtl Locus and Its Application

A molecular marker, flowering stage technology, applied in the determination/inspection of microorganisms, biochemical equipment and methods, DNA/RNA fragments, etc., can solve the problems of many repetitive sequences, large numbers, and difficult cloning, and achieve high selection efficiency. , Select the effect of clear target and simple identification method

Active Publication Date: 2021-12-03
JIANGSU ACAD OF AGRI SCI
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AI Technical Summary

Problems solved by technology

Compared with Arabidopsis and rice, on the one hand, the maize genome is larger, with more repetitive sequences, and the genome structure is more complex; Susceptible to environmental influences, cloning is difficult
In addition, limited by the type of mapping population, the type of markers used, the accuracy of the genetic linkage map, and environmental control, there is no consistent result for the QTL analysis of maize flowering period.

Method used

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  • A Molecular Marker of Maize Chromosome 9 Anthesis Qtl Locus and Its Application
  • A Molecular Marker of Maize Chromosome 9 Anthesis Qtl Locus and Its Application

Examples

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Embodiment Construction

[0025] If not specified in the following examples, all follow conventional experimental conditions, such as Sambrook et al. Molecular cloning experiment manual (Sambrook J & Russell DW, Molecular cloning: a laboratory manual, 2001), or according to the conditions suggested by the manufacturer's instructions and software instructions.

[0026] 1. BC1RIL genetic segregation and mapping population construction

[0027] On the basis of the previous germplasm resource screening research, it is clear that Zao 49 has early maturity and excellent comprehensive traits, and can be used as a parent for excavating and utilizing excellent traits such as flowering. After crossing Zao 49 with Su 95-1, backcross with Su 95-1 once. Afterwards, 7 consecutive generations of self-addition were carried out in Nanjing, Jiangsu and Sanya, Hainan by single-grain transmission method, and the BC1RIL genetic segregation and mapping population was successfully constructed, which included 340 families in ...

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Abstract

The invention relates to the field of biotechnology, and discloses a molecular marker of a QTL locus in the flowering stage of the No. 9 chromosome of maize and an application thereof. The molecular marker consists of two pairs of PCR primers JAAS4374 and JAAS4375. The present invention uses a BC1RIL population as a material, through a series of processes such as genomics analysis, molecular marker development, phenotype identification, QTL analysis, etc., to identify a maize flowering stage between the InDel markers JAAS4374 and JAAS4375 on the No. 9 chromosome of maize QTL loci. This locus can explain 10.4% of the phenotypic variation at the silking stage and 3.4% of the phenotypic variation at the pollination stage. The analysis showed that the marker can be used in the prediction and selection of maize flowering period.

Description

technical field [0001] The invention relates to the field of biotechnology, in particular to a molecular marker of a QTL locus in the flowering stage of the No. 9 chromosome of maize and an application thereof. Background technique [0002] Corn is one of the three most important crops in the world, and it is also the main three-way crop of grain, economics and feed in my country. Before 2010, the sown area and total output both ranked second. In 2014, the sown area of ​​corn in my country reached 36.2 million hectares. Since then, it has become the largest food crop in my country and occupies a very important position in China's agricultural production and national economic development. [0003] In recent years, due to factors such as land transfer, large-scale operation, and urbanization construction, as well as the transfer of young and middle-aged laborers from rural areas to cities, corn production management has been extensive and backward, with low returns. Many rea...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C12Q1/6895C12N15/11
CPCC12Q1/6895C12Q2600/13C12Q2600/156
Inventor 孟庆长赵涵陈艳萍周玲袁建华张美景郑飞赵文明孔令杰刘瑞响王森崔亚坤
Owner JIANGSU ACAD OF AGRI SCI
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