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拟南芥莲座叶面积的自然变异揭示了参与植物发育的新基因。

Natural variation in Arabidopsis thaliana rosette area unveils new genes involved in plant development.

机构信息

Instituto de Biología Integrativa de Sistemas (I2SysBio), CSIC-Universitat de València, Parc Cientific UV, Catedrático Agustín Escardino 9, Paterna, 46980, Valencia, Spain.

Department of Biotechnology and Systems Biology, National Institute of Biology, Večna pot 111, 1000, Ljubljana, Slovenia.

出版信息

Sci Rep. 2020 Oct 19;10(1):17600. doi: 10.1038/s41598-020-74723-4.

Abstract

Growth is a complex trait influenced by multiple genes that act at different moments during the development of an organism. This makes it difficult to spot its underlying genetic mechanisms. Since plant growth is intimately related to the effective leaf surface area (ELSA), identifying genes controlling this trait will shed light on our understanding of plant growth. To find new genes with a significant contribution to plant growth, here we used the natural variation in Arabidopsis thaliana to perform a genome-wide association study of ELSA. To do this, the projected rosette area of 710 worldwide distributed natural accessions was measured and analyzed using the genome-wide efficient mixed model association algorithm. From this analysis, ten genes were identified having SNPs with a significant association with ELSA. To validate the implication of these genes into A. thaliana growth, six of them were further studied by phenotyping knock-out mutant plants. It was observed that rem1.2, orc1a, ppd1, and mcm4 mutants showed different degrees of reduction in rosette size, thus confirming the role of these genes in plant growth. Our study identified genes already known to be involved in plant growth but also assigned this role, for the first time, to other genes.

摘要

生长是一个复杂的性状,受多个基因的影响,这些基因在生物体发育的不同时期发挥作用。这使得识别其潜在的遗传机制变得困难。由于植物的生长与有效叶面积(ELSA)密切相关,因此鉴定控制该性状的基因将有助于我们理解植物的生长。为了找到对植物生长有显著贡献的新基因,我们利用拟南芥的自然变异,对 ELSA 进行了全基因组关联研究。为此,我们测量了 710 个分布在世界各地的自然群体的拟南芥拟南芥 projected rosette area,并使用全基因组有效混合模型关联算法进行了分析。通过这项分析,鉴定出了 10 个与 ELSA 显著相关的基因,这些基因都带有 SNP。为了验证这些基因在拟南芥生长中的作用,我们进一步研究了其中的 6 个 knock-out 突变体植物的表型。结果表明,rem1.2、orc1a、ppd1 和 mcm4 突变体的莲座叶大小呈现不同程度的减小,从而证实了这些基因在植物生长中的作用。我们的研究鉴定了已经知道参与植物生长的基因,但也首次将其他基因的作用分配给了这些基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e639/7788084/eb3a3534c18f/41598_2020_74723_Fig1_HTML.jpg

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