School of Life Sciences and School of Advanced Agricultural Sciences, State Key Laboratory of Protein and Plant Gene Research, Peking-Tsinghua Center for Life Sciences, Peking University, Beijing, 100871, China.
New Phytol. 2019 Apr;222(2):895-906. doi: 10.1111/nph.15642. Epub 2019 Feb 2.
Organ size in plants is controlled by the interaction between genotype and the environment. Seed size, an important agronomic trait, largely determines yield and is an important focus of research. However, the genetic components underpinning natural variation of seed size in undomesticated species remain largely unidentified. Here we report a genome-wide association study (GWAS) of seed size in Arabidopsis thaliana, which identified 38 significantly associated loci, including one locus associated with CYCB1;4. Natural variations in CYCB1;4, which encodes a cyclin protein involved in the cell cycle, significantly influence seed size in A. thaliana. Transgenic plants with enhanced CYCB1;4 expression show normal development, exhibit increased seed size as a result of an accelerated cell cycle progression, and tend to produce higher yields. By contrast, cycb1;4 mutants have smaller seeds, and the effect is especially pronounced in a large-seed accession. The temporal and spatial expression pattern of CYCB1;4 suggests that this gene may function in both maternal tissues and zygotic tissues to coordinate the final size of seeds. Taken together, our results provide genetic insights into natural variation in seed size in Arabidopsis. Moreover, CYCB1;4 homologs in other crops could have great potential as targets for efforts aimed at yield improvement.
植物器官大小由基因型与环境的相互作用控制。种子大小是一个重要的农艺性状,在很大程度上决定了产量,是研究的一个重要焦点。然而,野生种中种子大小自然变异的遗传成分在很大程度上仍未被识别。在这里,我们报道了拟南芥种子大小的全基因组关联研究(GWAS),鉴定出 38 个与种子大小显著相关的位点,其中包括一个与 CYCB1;4 相关的位点。编码细胞周期中 cyclin 蛋白的 CYCB1;4 的自然变异显著影响拟南芥种子大小。过表达 CYCB1;4 的转基因植物表现出正常的发育,由于细胞周期进程加快,种子大小增加,并倾向于产生更高的产量。相比之下,cycb1;4 突变体的种子较小,而且这种效应在大种子品系中尤为明显。CYCB1;4 的时空表达模式表明,该基因可能在母体组织和合子组织中都发挥作用,以协调种子的最终大小。总之,我们的研究结果为拟南芥种子大小的自然变异提供了遗传见解。此外,其他作物中的 CYCB1;4 同源物作为提高产量的目标具有很大的潜力。