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Specificity of expression of TaCKX family genes in developing plants of wheat and their co-operation within and among organs

机译:TaCKX家族基因在小麦发育植物中的表达特异性及其在器官内和器官间的合作

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摘要

Multigene families of CKX genes encode cytokinin oxidase/dehydrogenase proteins (CKX), which regulate cytokinin content in organs of developing plants. It has already been documented that some of them play important roles in plant productivity. The presented research is the first step of comprehensive characterization of the bread wheat TaCKX gene family with the goal to select genes determining yield-related traits. The specificity of expression patterns of fifteen formerly annotated members of the TaCKX family was tested in different organs during wheat development. Based on this, the genes were assigned to four groups: TaCKX10, TaCKX5 and TaCKX4, highly specific to leaves; TaCKX3, TaCKX6 and TaCKX11, expressed in various levels through all the organs tested; TaCKX1, TaCKX2.3, TaCKX2.2, TaCKX2.1, TaCKX2.4 and TaCKX2.5 specific to developing spikes and inflorescences; TaCKX9, TaCKX8 and TaCKX7, highly specific to roots. Amplification products of tested genes were mapped to the chromosomes of the A, B or D genome using T. aestivum Ensembl Plants. Based on analysis of TaCKX transcripts as well as encoded amino acids in T. aestivum and Hordeum vulgare the number of CKX genes in wheat was limited to 11 and new numbering of selected TaCKX genes was proposed. Moreover, we found that there were developmental differences in expression of TaCKX in the first and the second spike and expression of some of the genes was daily time dependent. A very high and significant correlation was found between expression levels of TaCKX7 and TaCKX9, genes specific to seedling roots, TaCKX1, TaCKX2.1 and TaCKX2.2, specific to developing spikes, and the group of TaCKX3, 4, 5, 6, 10 and 11, highly expressed in leaves and other organs. The genes also co-operated among organs and were included in two groups representing younger or maturating stages of developing plants. The first group was represented by seedling roots, leaves from 4-week old plants, inflorescences and 0 DAP spikes; the second by developing spikes, 0 DAP, 7 DAP and 14 DAP. The key genes which might determine yield-related traits are indicated and their possible roles in breeding strategies are discussed.
机译:CKX基因的多基因家族编码细胞分裂素氧化酶/脱氢酶蛋白(CKX),调节发育中植物器官中细胞分裂素的含量。已有文献证明其中一些在植物生产力中起重要作用。提出的研究是面包小麦TaCKX基因家族全面表征的第一步,其目的是选择决定产量相关性状的基因。在小麦发育过程中,在不同器官中测试了TaCKX家族15个先前注释成员的表达模式的特异性。基于此,将基因分为四组:对叶片高度特异的TaCKX10,TaCKX5和TaCKX4。 TaCKX3,TaCKX6和TaCKX11,在所有测试的器官中以不同的水平表达; TaCKX1,TaCKX2.3,TaCKX2.2,TaCKX2.1, TaCKX2 4 TaCKX2 5 特定形成穗状花序和花序; TaCKX9 TaCKX8 TaCKX7 根特有。使用 T 将测试基因的扩增产物定位到A,B或D基因组的染色体上。 aestivum 合奏植物。基于 TaCKX 转录本和 T 中编码氨基酸的分析。 aestivum Hordeum vulgare 小麦中 CKX 基因的数量限制为11,并且选择的 TaCKX 基因新编号被提出。此外,我们发现 TaCKX 的表达在第一个和第二个峰值中存在发育差异,并且某些基因的表达每天都与时间有关。发现 TaCKX7 TaCKX9 的表达水平,苗根特有基因, TaCKX1 TaCKX2 < / em>。 1 TaCKX2 2 (特定于发育中的尖峰),以及 TaCKX3 ,< em> 4 5 6 10 11 ,在叶子和其他植物中高度表达器官。这些基因还在器官之间合作,被分为代表发育中植物的年轻或成熟阶段的两组。第一组以幼苗的根,4周龄植物的叶片,花序和0个DAP峰值为代表。第二个是通过产生尖峰0 DAP,7 DAP和14 DAP。指出了可能决定产量相关性状的关键基因,并讨论了它们在育种策略中的可能作用。

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