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Ma HongXiang

Recommended Ph.D.Supervisor Recommended MA Supervisor

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Supervisor of Doctorate Candidates

Master Tutor

Name (English):Ma HongXiang

Name (Pinyin):MA HONGXIANG

E-Mail:

School/Department:农学院

Education Level:With Certificate of Graduation for Doctorate Study

Business Address:文汇路校区农学楼26-123

Gender:Male

Contact Information:0514-87977840 18994112397

Degree:Doctoral Degree in Agriculture

Professional Title:正高级

Status:Employed

Academic Titles:Distinguished Professor

Alma Mater:Nanjing Agricultural University

Discipline:
Crop Genetics and Breeding

Academic Honor:
2013 elected:Top talent
2013 elected:Province tu gong
2014 elected:The national million talents project
2014 elected:Awarded the Title of National Expert with Remarkable Contributions
2014 elected:Participant of the New Century National Talents Project (State Level)
2016 elected:The government post

Honors and Titles:
2014-12-31 elected:百千万人才国家级人选/突出贡献中青年专家
2016-12-30 elected:国务院政府特殊津贴
2014-12-01 elected:全国优秀科技工作者
2013-10-01 elected:江苏省333高层次人才培养工程第二层次培养对象
2012-11-16 elected:江苏省有突出贡献中青年专家
2014-11-05 elected:江苏省六大人才高峰高层次人才(A类项目)
2012-03-01 elected:江苏省粮食生产突出贡献农业科技人员
2024-01-05 elected:扬州市“绿扬金凤计划”领军人才

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Quantitative trait loci for Fusarium head blight resistance in wheat cultivars Yangmai 158 and Zhengmai 9023

Date:2021-07-29 clicks:

DOI number:10.1016/j.cj.2020.05.007

Journal:The Crop Journal

Key Words:wheat; Fusarium head blight; QTL

Abstract:Fusarium head blight (FHB) is one of the prevalent fungal diseases of wheat worldwide. Exploring new FHB resistance quantitative trait loci (QTL) in adapted wheat cultivars is a critical step for breeding new FHB-resistant cultivars. In this study, we developed a population of 236 F5:7 recombinant inbred lines (RILs) using two popular Chinese wheat cultivars, Yangmai 158 and Zhengmai 9023, with moderate FHB resistance to identify the QTL for FHB type II resistance. This population was evaluated for percentage of symptomatic spikelets per spike (PSS) using single floret injection in repeated greenhouse experiments. Mean PSSs were 33.2% for Yangmai 158 and 30.3% for Zhengmai 9023. A genetic linkage map of 1002 single nucleotide polymorphisms (SNPs) generated by genotyping-by-sequencing (GBS) was constructed for the RIL population. Six QTL were identified for FHB resistance, and three of them were repeatable in the both experiments. Zhengmai 9023 contributed the resistance allele at one repeatable QTL, designated as Qfhb.7D, whereas Yangmai 158 contributed the resistance alleles at the other two repeatable QTL, Qfhb.3AL and Qfhb.2DS. The additional QTL, Qfhb.4AS was significant in the mean PSS, and Qfhb.2DL and Qfhb.7AS were significant in only one experiment. Replacement of each allele individually at the three repeatable QTL significantly changed PSSs. Qfhb.3AL, Qfhb.2DS, and Qfhb.7D explained 8.35% to 9.89%, 5.13% to 7.43%, and 6.15% to 9.32% of the phenotypic variations, respectively. The three repeatable QTL contributed by the two parents were additive and stacking the resistance alleles from all the three repeatable QTL showed the highest level of resistance in the current RIL population. Ten SNPs in the QTL regions of Qfhb.3AL, Qfhb.2DS, and Qfhb.7D were converted into KBioscience competitive allele-specific PCR (KASP) assays. One KASP marker for Qfhb.3AL was validated in a panel of wheat cultivars from China. Some of these KASP markers could be useful for marker-assisted selection to stack these QTL..

Indexed by:SCI

Discipline:Agricultural science

First-Level Discipline:Crop Science

Document Type:SCI

Volume:9

Issue:1

Page Number:143-153

Translation or Not:no

Date of Publication:2021-02-01

Included Journals:SCI

Pre One:宁麦9号/扬麦158重组自交系群体产量性状的遗传解析 Next One:TaUGT6, a novel UGP-Glycosyltransferase gene enhances the resistance to FHB and DON accumulation in wheat