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Mapping versatile QTL for soybean downy mildew resistance

机译:用于大豆柔软霉菌抵抗的多功能QTL

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Key messageThree versatile QTL for soybean downy mildew resistance in Japan were detected using five RIL populations and confirmed using recombinant fixed pairs or a backcrossed line.AbstractDowny mildew reduces soybean seed quality and size. It is a problem in Japan, where 90% of soybean grown is used as food. In the USA, 33 downy mildew races have been reported, but race differentiation in Japan is unclear. To identify quantitative trait loci (QTL) for downy mildew resistance effective in the Kanto and Tohoku regions, we performed QTL analysis using five populations of recombinant inbred lines (RILs) originated from Natto-shoryu'xTachinagaha' (NT), Natto-shoryu'xSuzumaru', Satonohohoemi'xFukuibuki' (SF), Kinusayaka'xCOL/Akita/2009/TARC/1,' and YR-82'xHarosoy' over a 4-year period (2014-2017). We evaluated spontaneously developed symptoms of the RILs and applied 112-233 polymorphic markers to each population. Out of 31 QTL detected, we found five on chromosome 3 in three populations and another five on chromosome 7 in three populations. Other QTL were detected in one population, nine of them in different years. In the NT population, two QTL were detected in a 3.0-Mb region on chromosome 7 and in an 8.1-Mb region on chromosome 18 by evaluating nine recombinant fixed pairs in both Kanto and Tohoku regions. In the SF population, a QTL on chromosome 8 was detected in both regions. This QTL was introduced into the Satonohohoemi' background by backcrossing, and its effect was confirmed in both regions. In summary, two QTL on chromosomes 7 and 18 from the NT population and one QTL on chromosome 8 from the SF population were confirmed to be effective in both Tohoku and Kanto regions.
机译:主要的MessageThree多功能QTL用于日本的大豆霜霉病抵抗力,使用五个RIL种群检测到,并使用重组固定对或后交线路确认.Abstractdowny Mildew降低大豆种子质量和尺寸。这是日本的一个问题,其中90%的大豆生长用作食物。在美国,报告了33场霜霉病赛道,但日本的种族差异不明确。为了识别用于柔软的霉菌抵抗力的定量特质基因座(QTL)在Kanto和Tohoku地区有效地进行了QTL分析,使用来自Natto-Shoryu'Xtachinaha'(NT),Natto-Shoryu'的重组自交系(Rils)进行QTL分析Xsuzumaru',Satonohohoemi'xfukuibuki'(SF),Kinusayaka''Xcol / Akita / 2009 / Tarc / 1,'和Yr-82'Xharosoy'(2014-2017)。我们评估了rils的自发性发展症状,并将112-233多态性标记物应用于每种人群。在31种QTL中检测到,我们在三个种群中发现了五种染色体3,并在三个群体中的染色体7上另外五个。在一个人口中检测到其他QTL,在不同的几年中九。在NT群体中,通过在KANTO和TOHOKU地区评估九个重组固定对,在染色体7的3.0mb区域中检测在3.0mb区域中的3.0mb区域中的QT1。在SF群体中,在两个地区检测到染色体8上的QTL。通过回复,将该QTL引入了Satonohohoemi'背景,其效果在两个地区确认。总之,来自NT群体的染色体7和18上的两个QTL和SF群体的染色体8上的一个QTL在Tohoku和Kanto地区有效。

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  • 作者单位

    Natl Agr &

    Food Res Org NARO Inst Crop Sci Soybean &

    Field Crop Appl Genom Res Unit 2-1-2 Kannondai Tsukuba Ibaraki 3058518 Japan;

    Natl Agr &

    Food Res Org NARO Inst Crop Sci Soybean &

    Field Crop Appl Genom Res Unit 2-1-2 Kannondai Tsukuba Ibaraki 3058518 Japan;

    Natl Agr &

    Food Res Org NARO Inst Crop Sci Soybean &

    Field Crop Appl Genom Res Unit 2-1-2 Kannondai Tsukuba Ibaraki 3058518 Japan;

    Natl Agr &

    Food Res Org NARO Tohoku Agr Res Ctr Soybean Breeding Grp 297 Uenodai Akita 0192112 Japan;

    Natl Agr &

    Food Res Org NARO Tohoku Agr Res Ctr Soybean Breeding Grp 297 Uenodai Akita 0192112 Japan;

    Natl Agr &

    Food Res Org NARO Tohoku Agr Res Ctr Soybean Breeding Grp 297 Uenodai Akita 0192112 Japan;

    Natl Agr &

    Food Res Org NARO Inst Crop Sci Soybean Breeding Grp 2-1-2 Kannondai Tsukuba Ibaraki 3058518 Japan;

    Ibaraki Agr Ctr Plant Biotechnol Inst 3402 Kamikunii Mito Ibaraki 3114203 Japan;

    Ibaraki Agr Ctr Plant Biotechnol Inst 3402 Kamikunii Mito Ibaraki 3114203 Japan;

    Ibaraki Agr Ctr Plant Biotechnol Inst 3402 Kamikunii Mito Ibaraki 3114203 Japan;

    Ibaraki Agr Ctr Plant Biotechnol Inst 3402 Kamikunii Mito Ibaraki 3114203 Japan;

    Snow Brand Seed Co Ltd Hokkaido Res Farm 1066-5 Horonai Yubari Hokkaido 0691464 Japan;

    Snow Brand Seed Co Ltd Chiba Res Farm Inage Ku 634 Naganumahara Chiba Chiba 2630001 Japan;

    Natl Agr &

    Food Res Org NARO Inst Crop Sci Div Basic Res 2-1-2 Kannondai Tsukuba Ibaraki 3058518 Japan;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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