Identification and genetic analysis of EMS-mutagenized wheat mutants conferring lesion-mimic premature aging.

IF 2.9 Q2 Biochemistry, Genetics and Molecular Biology
Weiwei Kong, Liming Wang, Pei Cao, Xingfeng Li, Jingjing Ji, Puhui Dong, Xuefang Yan, Chunping Wang, Honggang Wang, Jiaqiang Sun
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Abstract

Background: Lesion-mimic and premature aging (lmpa) mutant lmpa1 was identified from the ethyl methane sulfonate (EMS) mutant library in the bread wheat variety Keda 527 (KD527) background. To reveal the genetic basis of lmpa1 mutant, phenotypic observations and analyses of chlorophyll content and photosynthesis were carried out in lmpa1, KD527 and their F1 and F2 derivatives. Further, bulked segregation analysis (BSA) in combination with a 660 K SNP array were conducted on the F2 segregation population of lmpa1/Chinese spring (CS) to locate the lmpa1 gene.

Results: Most agronomic traits of lmpa1 were similar to those of KD527 before lesion-like spots appeared. Genetic analysis indicated that the F1 plants from the crossing of lmpa1 and KD527 exhibited the lmpa phenotype and the F2 progenies showed a segregation of normal (wild type, WT) and lmpa, with the ratios of lmpa: WT = 124:36(χ2 = 1.008 < =3.841), indicating that lmpa is a dominant mutation. The combination of BSA and the SNP array analysis of CS, lmpa1 and lmpa1/CS F2 WT pool (50 plants) and lmpa pool (50 plants) showed that polymorphic SNPs were enriched on chromosome 5A, within a region of 30-40 Mb, indicating that the wheat premature aging gene Lmpa1 was probably located on the short arm of chromosome 5A.

Conclusions: EMS-mutagenized mutant lmpa1 deriving from elite wheat line KD527 conferred lmpa. Lmpa phenotype of lmpa1 mutant is controlled by a single dominant allele designated as Lmpa1, which affected wheat growth and development and reduced the thousand grain weight (tgw) of single plant in wheat. The gene Lmpa1 was tentatively located within the region of 30-40 Mb near to the short arm of chromosome 5A.

Abstract Image

Abstract Image

Abstract Image

鉴定和遗传分析 EMS 诱变的小麦突变体,这些突变体具有病变模拟早衰。
背景:从甲烷磺酸乙酯(EMS)突变体库中发现了面包小麦品种Keda 527(KD527)背景下的病变拟态和早衰(lmpa)突变体lmpa1。为了揭示 lmpa1 突变体的遗传基础,对 lmpa1、KD527 及其 F1 和 F2 衍生物进行了叶绿素含量和光合作用的表型观察和分析。此外,还结合 660 K SNP 阵列对 lmpa1/Chinese spring(CS)的 F2 分离群体进行了大量分离分析(BSA),以确定 lmpa1 基因的位置:结果:在出现病斑之前,lmpa1的大多数农艺性状与KD527相似。遗传分析表明,lmpa1和KD527杂交的F1植株表现出lmpa表型,F2后代表现出正常(野生型,WT)和lmpa的分离,lmpa:WT = 124:36(χ2 = 1.008 2 WT基因库(50株)和lmpa基因库(50株)显示,多态性SNP富集在5A染色体上30-40 Mb的区域内,表明小麦早衰基因Lmpa1可能位于5A染色体的短臂上:结论:小麦精英品系 KD527 的 EMS 诱变突变体 lmpa1 具有早衰表型。lmpa1突变体的lmpa表型由一个名为Lmpa1的单显性等位基因控制,它影响小麦的生长发育,降低小麦单株千粒重(tgw)。Lmpa1 基因初步定位于 5A 染色体短臂附近 30-40 Mb 的区域。
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来源期刊
BMC Genetics
BMC Genetics 生物-遗传学
CiteScore
4.30
自引率
0.00%
发文量
77
审稿时长
4-8 weeks
期刊介绍: BMC Genetics is an open access, peer-reviewed journal that considers articles on all aspects of inheritance and variation in individuals and among populations.
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