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Chromosomal plasticity: Mitigating the impacts of herbivory

机译:染色体可塑性:减轻食草动物的影响

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Endoreduplication, the replication of the genome without mitosis, leads to endopolyploidy, an increase in cellular chromosome number. Although endoreduplication is widespread among angiosperms and other groups of eukaryotes, the degree to which this process is plastic under varying environmental conditions and its potential adaptive significance are not known. Here, using flow cytometry, we measured plasticity in chromosome number following the removal of apical dominance (simulating natural herbivory) in two ecotypes of Arabidopsis thaliana: Columbia and Landsberg erecta. We report that endopolyploidy of clipped Columbia plants was significantly different than unclipped controls following the removal of apical dominance and regrowth, and that cellular ploidy is positively associated with attributes of fitness (biomass, flower, fruit, and seed production). In contrast, clipped Landsberg erecta showed no significant differences in endopolyploidy and a decrease in seed production compared to unclipped controls; representing a significant genotype × environment interaction between ecotypes. Altering ploidy via endoreduplication adds a previously unknown way in which plants may be able to cope with environmental stress: enhancing regrowth rates and fitness following plant damage.
机译:核内复制(无核分裂的基因组复制)导致内多倍体,细胞染色体数目增加。尽管核复制在被子植物和其他真核生物群体中很普遍,但是在各种环境条件下该过程的可塑性程度及其潜在的适应性意义尚不清楚。在这里,使用流式细胞仪,我们在两种拟南芥生态型:哥伦比亚和兰斯伯格直立植物中除去顶端优势(模拟天然草食动物)后,测量了染色体数目的可塑性。我们报道,修剪后的哥伦比亚植物的内多倍体与未修剪的对照在根尖和再生长的去除后显着不同,并且细胞倍性与适应性(生物量,花,果实和种子的产生)成正相关。相比之下,与未修剪的对照相比,修剪的Landsberg erecta在多倍体内无显着差异,种子产量没有下降。代表了重要的基因型×生态型之间的环境相互作用。通过核内复制来改变倍性,增加了一种以前未知的方法,使植物能够应对环境胁迫:提高植物受损后的再生速率和适应性。

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