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首页> 外文期刊>HortScience >Diversity Analysis of Arabidopsis thaliana (L.) Heynh Ecotypes for Glucosinolates in Shoots and Seeds
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Diversity Analysis of Arabidopsis thaliana (L.) Heynh Ecotypes for Glucosinolates in Shoots and Seeds

机译:拟南芥生态型芽和种子中芥子油苷的多样性分析

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Glucosinolates (CS) are important secondary plant metabolites present in several plant species, including Arabidopsis thaliana (L.) Heynh. Although genotypic differences among a limited number of samples from a limited geographical range have been reported, there have been few studies exploring the variation from a wider genetic base. The objective of this study was to explore the genetic variation for GS in A. thaliana collected throughout the world. We screened 58 A. thaliana ecotypes collected from the geographic area of lat. 15 degrees N to lat. 59 degrees N and long. 137 degrees E to long. 123 degrees W. Elevation in these areas ranged from sea level to over 480 m. We believe that this study has covered a large geographical region and captured most of the available genetic variation in A. thaliana for GS. There was no geographical trend in A. thaliana shoot or seed tissue for GS concentration. Total shoot GS ranged from 1.1 to 52.8 mu mol.g(-1) dry weight (DW), averaging 9.3 mu Lmol.g(-1) DW among all ecotypes. Total seed GS ranged from 1.6 to 41.8 mu mol.g(-1) DW with an average of 16.8 mu mol.g(-1) DW among all ecotypes. Low and high GS-accumulating A. thaliana ecotypes identified in this study may provide a basis for further genetic analysis for GS metabolism. Information provided may also prove useful for improving concentrations of nutritionally beneficial GS in vegetable Brassicas.
机译:芥子油苷(CS)是存在于几种植物物种中的重要次生植物代谢产物,包括拟南芥(L.)Heynh。尽管已经报道了在有限地理范围内的有限数量样本之间的基因型差异,但很少有研究从更广泛的遗传基础上探讨变异。这项研究的目的是探索全世界收集的拟南芥中GS的遗传变异。我们筛选了从拉特地理区域收集的58种拟南芥生态型。北纬15度。 N度和北纬59度。东经137度。海拔123度。这些区域的海拔范围从海平面到480 m以上。我们相信这项研究已覆盖了一个较大的地理区域,并捕获了拟南芥中GS的大部分可用遗传变异。 GS浓度在拟南芥芽或种子组织中没有地理趋势。总枝GS的干重(DW)为1.1至52.8μmol.g(-1),在所有生态型中平均为9.3μLmol.g(-1)DW。在所有生态型中,总种子GS的范围为1.6至41.8 mol.g(-1)DW,平均为16.8 mol.g(-1)DW。在这项研究中确定的低和高GS积累拟南芥生态型可能为GS代谢的进一步遗传分析提供基础。所提供的信息也可能被证明有助于提高蔬菜芸苔中营养有益的GS的浓度。

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