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New Waxy allele wx-Reina found in Chinese waxy maize

机译:新的蜡状等位基因WX-Reina在中国蜡玉米中发现

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摘要

Waxy gene mutations cause the stickiness of maize grains. China is rich in waxy maize landraces and is considered to be the origin of waxy maize. At present, the Waxy alleles found in Chinese waxy maize include wx-D7, wx-D10, wx-Cin4, and wx-124, of which wx-Cin4 and wx-124 are characterized as transposon insertion mutations. The Yunnan area has the most abundant Chinese waxy maize; however, there are still a large number of waxy maize landraces with unknown Waxy alleles. In this study, 20 waxy maize landraces from Yunnan Province of China were used as research materials for waxy gene analysis, and a new Waxy allele was detected. Molecularly, this allele is characterized by an5.4-Kb retrotransposon Reina inserted in the tenth intron of the Waxy gene, and we named this allele wx-Reina. Reina is a member of the long terminal repeat (LTR) retrotransposon family. This Reina transposon has the same LTR sequence at both ends, so this mutation is a newly formed mutation. Through reverse transcription PCR (RT-PCR) analysis, we found that Reina insertion results in the deletion of exons 10 and 11 in the transcript of wx-Reina, so its original gene function is lost. The discovery of wx-Reina further enriches the knowledge of types of waxy alleles in Chinese waxy maize. Combined with our previous studies, we believe that transposon activity is one of the main driving forces for the formation of Waxy gene alleles in Chinese waxy maize.
机译:蜡质基因突变导致玉米晶粒的粘性。中国富含糯玉米实地,被认为是蜡质玉米的起源。目前,中国蜡状玉米中发现的蜡质等位基因包括WX-D7,WX-D10,WX-CIN4和WX-124,其中WX-CIN4和WX-124的特征在于转座子插入突变。云南地区拥有丰富的中国蜡玉米;然而,仍有大量糯玉米实地性,具有未知的蜡质等位基因。在本研究中,来自中国云南省的20名蜡玉米地球体力被用作蜡质基因分析的研究材料,并检测到一种新的蜡质等位基因。分子量,这种等位基因的特征在于AN5.4-KB Retrotransposon Reina插入蜡质基因的第十个内含子,并且我们将此等位基因WX-Reina命名。 Reina是Long终端重复(LTR)Retrotransposon家族的成员。该reina转座子在两端具有相同的LTR序列,因此该突变是新形成的突变。通过逆转录PCR(RT-PCR)分析,我们发现reina插入导致Wx-reina的转录物中的外显子10和11缺失,因此其原始基因功能丢失。 WX-REINA的发现进一步丰富了中国蜡玉米中糯等位基因类型的知识。结合我们以前的研究,我们认为转座子活性是在中国蜡质玉米中形成蜡质基因等位基因的主要驱动力之一。

著录项

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  • 作者单位

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

    Yunnan Acad Agr Sci Biotechnol &

    Germplasm Resources Inst Kunming 650205 Yunnan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业生物学;
  • 关键词

    Chinese waxy maize; Waxy allele; Transposon; Reina; Yunnan;

    机译:中国蜡玉米;蜡质等位基因;转座子;雷纳;云南;

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