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首页> 外文期刊>BMC Plant Biology >Phylogeny and maternal donors of Elytrigia Desv. sensu lato (Triticeae; Poaceae) inferred from nuclear internal-transcribed spacer and trn L-F sequences
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Phylogeny and maternal donors of Elytrigia Desv. sensu lato (Triticeae; Poaceae) inferred from nuclear internal-transcribed spacer and trn L-F sequences

机译:Elytrigia Desv的系统发育和母体供体。从核内转录间隔区和trn L-F序列推断出sensu lato(特里提科;禾本科)

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Elytrigia Desv. is a genus with a varied array of morphology, cytology, ecology, and distribution in Triticeae. Classification and systematic position of Elytrigia remain controversial. We used nuclear internal-transcribed spacer (nrITS) sequences and chloroplast trnL-F region to study the relationships of phylogenetic and maternal genome donor of Elytrigia Desv. sensu lato. (1) E, F, P, St, and W genomes bear close relationship with one another and are distant from H and Ns genomes. Ee and Eb are homoeologous. (2) In ESt genome species, E genome is the origin of diploid Elytrigia species with E genome, St genome is the origin of Pseudoroegneria. (3) Diploid species Et. elongata were differentiated. (4) Et. stipifolia and Et. varnensis sequences are diverse based on nrITS data. (5) Et. lolioides contains St and H genomes and belongs to Elymus s. l. (6) E genome diploid species in Elytrigia serve as maternal donors of E genome for Et. nodosa (PI547344), Et. farcta, Et. pontica, Et. pycnantha, Et. scirpea, and Et. scythica. At least two species act as maternal donor of allopolyploids (ESt and EStP genomes). Our results suggested that Elytrigia s. l. species contain different genomes, which should be divided into different genera. However, the genomes of Elytrigia species had close relationships with one another. Diploid species were differentiated, because of introgression and different geographical sources. The results also suggested that the same species and the same genomes of different species have different maternal donor. Further study of molecular biology and cytology could facilitate the evaluation of our results of phylogenetic in a more specific and accurate way.
机译:Elytrigia设计小麦属(Triticeae)是一种属,在小麦,小麦,小麦,小麦,小麦,小麦,小麦和小麦中具有不同的形态,细胞学,生态学和分布。 Elytrigia的分类和系统位置仍存在争议。我们使用核内转录间隔区(nrITS)序列和叶绿体trnL-F区来研究Elytrigia Desv的系统发育和母体基因组供体之间的关系。森苏拉托。 (1)E,F,P,St和W基因组彼此之间有着密切的关系,并且远离H和Ns基因组。 Ee和Eb是同源的。 (2)在ESt基因组种中,E基因组是具有E基因组的二倍体棘果病种的起源,St基因组是假单胞菌属的起源。 (3)二倍体物种伸长被分化。 (4)等stipifolia和Et。基于nrITS数据,varnensis序列是多种多样的。 (5)等lolioides包含St和H基因组,属于Elymus。 l。 (6)Elytrigia中的E基因组二倍体物种是Et的E基因组的母体供体。 Nodosa(PI547344),等法尔克塔蓬蒂卡等pycnantha等scirpea,等等。腐霉菌。至少两个物种充当异源多倍体(ESt和EStP基因组)的母体供体。我们的结果表明Elytrigia s。 l。物种包含不同的基因组,应将其分为不同的属。然而,Elytrigia物种的基因组彼此之间有着密切的关系。由于渗入和不同的地理来源,二倍体物种得以区分。结果还表明,相同物种和不同物种的相同基因组具有不同的母体供体。对分子生物学和细胞学的进一步研究可能有助于以更具体和准确的方式评估我们的系统发育结果。

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