首页> 外文期刊>Systematic Botany >Phylogenetic relationships in the Salicornioideae/Suaedoideae/Salsoloideae s.l. (Chenopodiaceae) Clade and a clarification of the phylogenetic position of Bienertia and Alexandra using multiple DNA sequence datasets
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Phylogenetic relationships in the Salicornioideae/Suaedoideae/Salsoloideae s.l. (Chenopodiaceae) Clade and a clarification of the phylogenetic position of Bienertia and Alexandra using multiple DNA sequence datasets

机译:Salicornioideae / Suaedoideae / Salsoloideae s.l.中的亲缘关系。 (藜科)进化枝和Bienertia和Alexandra的系统发生位置的阐明使用多个DNA序列数据集

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The Chenopodiaceae includes taxa with both C-3 and C-4 photosynthesis with diverse kinds of Kranz anatomy and single-celled C-4 species without Kranz anatomy; thus, it is of key importance for understanding evolution of C-4 photosynthesis. All of the C-4 genera except Atriplex, which belongs to Chenopodioideae, are in the Salicornioideae/Suaedoideae/Salsoloideae s.l. (including Camphorosmeae and Sclerolaeneae) clade. Our study focused on the relationships of the main lineages within this clade with an emphasis on the placement of the single cell functioning C-4 genus Bienertia using maximum parsimony, maximum likelihood, and Bayesian inference phylogenetic analyses of the nuclear ribosomal ITS and five chloroplast DNA regions (atpB-rbcL, matK, psbB-psbH, rbcL, and trnL-trnF). Further we provide a detailed phylogeny of Alexandra and Suaeda based on ITS, atpB-rbcL, and psbB-psbH. Our molecular data provide strong statistical support for the monophyly of: (1) a Salicornioideae/Suaedoideae/Salsoloideae s.l. clade; (2) a Salicornioideae/Suaedoideae clade; (3) the subfamilies Salicornioideae, Suaedoideae (including Bienertia) and Salsoloideae s.l.; (4) the tribes Suaedeae, Salsoleae, and Camphorosmeae; (5) the Salicornieae if Halopeplideae is included; and (6) Suaeda if Alexandra is included. Alexandra lehmannii is therefore reclassified as Suaeda lehmannii and a new section of Suaeda is created, section Alexandra. There are four independent origins of C-4 photosynthesis within the Suaedoideae including two parallel origins of Kranz C-4 anatomy (in Suaeda sections Salsina s.l. and Schoberia) and two independent origins of C-4 systems without Kranz anatomy (in Bienertia and in Suaeda section Borszczowia).
机译:藜科包括具有C-3和C-4光合作用的类群,具有各种各样的Kranz解剖结构和没有Cells的单细胞C-4物种。因此,对于理解C-4光合作用的发展至关重要。除了属于藜科的藜属的三叶草外,所有的C-4属都在Salicornioideae / Suaedoideae / Salsoloideae s.l中。 (包括樟脑科和巩膜纲)进化枝。我们的研究着眼于此进化枝中主要谱系的关系,重点是利用核仁智能核糖体ITS和五个叶绿体DNA的最大简约性,最大似然性和贝叶斯推断系统发育分析,确定了具有单细胞功能的C-4属Bienertia。区域(atpB-rbcL,matK,psbB-psbH,rbcL和trnL-trnF)。此外,我们基于ITS,atpB-rbcL和psbB-psbH提供了Alexandra和Suaeda的详细系统发育信息。我们的分子数据为以下方面的单系提供了有力的统计支持:(1)ali科/苏亚科/萨氏科。进化枝(2)ali科/苏亚科; (3)ali科,Su科(包括Bienertia)和Sal科的亚科; (4)苏丹科,莎草科和樟脑科; (5)Salicornieae,如果包含Halopeplideae; (6)Suaeda(如果包括Alexandra)。亚历山德拉·莱曼尼因此被重新归类为Suaeda lehmannii,并创建了Suaeda的新部分,即Alexandra部分。 Suaedoideae中有4个独立的C-4光合作用起源,包括Kranz C-4解剖学的两个平行起源(在Suaeda剖面Salsina sl和Schoberia中)和没有Kranz解剖学的C-4系统的两个独立起源(在Bienertia和Suaeda中)部分Borszczowia)。

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