Characterization of correlation between grain moisture and ear rot resistance in maize by QTL meta-analysis

被引:0
作者
Kui Xiang
Lana M. Reid
Zhi-Ming Zhang
Xiao-Yang Zhu
Guang-Tang Pan
机构
[1] Sichuan Agricultural University,Maize Research Institute
[2] Agricultural & Agri-Food Canada,Eastern Cereal and Oilseed Research Centre
来源
Euphytica | 2012年 / 183卷
关键词
Grain moisture; Ear rot; QTL; Meta-analysis;
D O I
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中图分类号
学科分类号
摘要
Ear rot (ER) in maize is a prevalent disease worldwide which reduces yield and grain quality. Grain moisture content (GM) is an important factor which impacts the fungal development of ER species. Our purpose was to identify the genomic regions of maize in the control of GM and ER resistance, and the correlations between two traits. A meta-analysis was carried out using 241 quantitative trait loci (QTL) from 29 studies to propose meta-QTL (MQTL) on a high-density genetic linkage map (IBM 2 neighbors 2008). For GM content, 44 MQTL were identified on all chromosomes except for chromosome 9, while 29 MQTL were found for ER resistance, mainly located on chromosomes 3, 6 and 7. Moreover, 14 overlapping domains for GM MQTL and ER MQTL were observed on chromosomes 2, 3, 6 and 7, mainly focused on five active regions (bins 2.08–2.09, 3.04, 3.06, 6.04–6.06 and 7.03–7.03). There were 13 genes in the overlapping domain which could be divided into five classes: stress-related gene, photosystem-related gene, architecture-related gene, dynamic-related gene and seminal-related gene. It was possibly that the five-class genes were simultaneously related with GM and ER.
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页码:185 / 195
页数:10
相关论文
共 208 条
[21]  
Smith OS(1977)Effect of corn genotypes on ear rot infection by Mycologia 69 328-448
[22]  
Grant D(2002)Fumonisins concentrations in maize as affected by physico-chemical, environmental and agronomical conditions Theor Appl Genet 105 440-272
[23]  
Fincher R(1963)Mold development in ears of corn from tasseling to harvest Trans ASAE 6 268-1968
[24]  
Busboom KN(2009)Improvement of hybrid yield by advanced backcross QTL analysis in elite maize Crop Sci 49 1955-488
[25]  
White DG(2009)Corn harvesting performance at various dates Mol Breed 23 473-1112
[26]  
Capelle V(1979)Meta-analysis of QTL associated with Fusarium head blight resistance in wheat J Agric Food Chem 27 1108-216
[27]  
Remoué C(1982)Revealing the genetic architecture of FHB resistance in hexaploid wheat ( Can J Plant Pathol 4 210-403
[28]  
Moreau L(1998) L.) by QTL meta-analysis Genetics 149 383-105
[29]  
Reyss A(2004)Incidence of Theor Appl Genet 110 92-196
[30]  
Mahé A(2001) species and the mycotoxins, deoxynivalenol and zearalenone, in corn produced in esophageal caner areas in Transkei Agrociencia 35 181-298