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Ploidy and Hybridity Effects on Growth Vigor and Gene Expression in Arabidopsis thaliana Hybrids and Their Parents

机译:拟南芥杂种及其亲本的倍性和杂种对生长活力和基因表达的影响

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摘要

Both ploidy and hybridity affect cell size and growth vigor in plants and animals, but the relative effects of genome dosage and hybridization on biomass, fitness, and gene expression changes have not been systematically examined. Here we performed the first comparative analysis of seed, cell, and flower sizes, starch and chlorophyll content, biomass, and gene expression changes in diploid, triploid, and tetraploid hybrids and their respective parents in three Arabidopsis thaliana ecotypes: Columbia, C24, and Landsberg erecta (Ler). Ploidy affects many morphological and fitness traits, including stomatal size, flower size, and seed weight, whereas hybridization between the ecotypes leads to altered expression of central circadian clock genes and increased starch and chlorophyll content, biomass, and seed weight. However, varying ploidy levels has subtle effects on biomass, circadian clock gene expression, and chlorophyll and starch content. Interestingly, biomass, starch content, and seed weight are significantly different between the reciprocal hybrids at all ploidy levels tested, with the lowest and highest levels found in the reciprocal triploid hybrids, suggesting parent-of-origin effects on biomass, starch content, and seed weight. These findings provide new insights into molecular events of polyploidy and heterosis, as well as complex agronomic traits that are important to biomass and seed production in hybrid and polyploid crops.
机译:倍性和杂交都影响植物和动物的细胞大小和生长活力,但是基因组剂量和杂交对生物量,适应性和基因表达变化的相对影响尚未得到系统地研究。在这里,我们对三种拟南芥生态型:哥伦比亚,C24和三叶草的二倍体,三倍体和四倍体杂种及其各自的亲本的种子,细胞和花朵大小,淀粉和叶绿素含量,生物量以及基因表达变化进行了首次比较分析。 Landsberg erecta(Ler)。倍性会影响许多形态和适应性状,包括气孔大小,花朵大小和种子重量,而生态型之间的杂交会导致中央昼夜节律基因的表达发生变化,并增加淀粉和叶绿素含量,生物量和种子重量。但是,不同的倍性水平对生物量,昼夜节律时钟基因表达以及叶绿素和淀粉含量具有微妙的影响。有趣的是,在所有测试的倍性水平上,互惠杂种之间的生物量,淀粉含量和种子重量均存在显着差异,在互易三倍体杂种中发现的最低和最高水平,表明原产地对生物量,淀粉含量和种子重量。这些发现为多倍体和杂种优势的分子事件以及复杂的农艺性状提供了新的见解,这对杂种和多倍体作物的生物量和种子生产至关重要。

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