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能否利用基因编辑技术诱导有性植物的无融合生殖?

Can We Use Gene-Editing to Induce Apomixis in Sexual Plants?

机构信息

Simons Center for Quantitative Biology, Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724, USA.

Department of Systematics, Biodiversity and Evolution of Plants, Albrecht-von-Haller Institute for Plant Sciences, University of Goettingen, Untere Karspuele 2, 37073 Goettingen, Germany.

出版信息

Genes (Basel). 2020 Jul 12;11(7):781. doi: 10.3390/genes11070781.

Abstract

Apomixis, the asexual formation of seeds, is a potentially valuable agricultural trait. Inducing apomixis in sexual crop plants would, for example, allow breeders to fix heterosis in hybrid seeds and rapidly generate doubled haploid crop lines. Molecular models explain the emergence of functional apomixis, i.e., apomeiosis + parthenogenesis + endosperm development, as resulting from a combination of genetic or epigenetic changes that coordinate altered molecular and developmental steps to form clonal seeds. Apomixis-like features and synthetic clonal seeds have been induced with limited success in the sexual plants rice and maize by using gene editing to mutate genes related to meiosis and fertility or via egg-cell specific expression of embryogenesis genes. Inducing functional apomixis and increasing the penetrance of apomictic seed production will be important for commercial deployment of the trait. Optimizing the induction of apomixis with gene editing strategies that use known targets as well as identifying alternative targets will be possible by better understanding natural genetic variation in apomictic species. With the growing availability of genomic data and precise gene editing tools, we are making substantial progress towards engineering apomictic crops.

摘要

无融合生殖是一种无性形成种子的现象,具有潜在的农业应用价值。例如,在有性作物中诱导无融合生殖可以使育种者固定杂种优势于杂交种子中,并快速生成双单倍体作物品系。分子模型解释了功能性无融合生殖(即无减数分裂配子生殖+孤雌生殖+胚乳发育)的出现,是由于遗传或表观遗传变化的组合,协调改变的分子和发育步骤以形成克隆种子。通过基因编辑突变与减数分裂和育性相关的基因,或通过胚胎发生基因在卵母细胞中的特异性表达,在有性植物水稻和玉米中已有限地诱导出类似无融合生殖的特征和合成克隆种子。诱导功能性无融合生殖并增加无融合生殖种子产生的穿透率对于该性状的商业应用非常重要。通过更好地了解无融合生殖物种中的自然遗传变异,优化使用已知靶标和鉴定替代靶标的基因编辑策略来诱导无融合生殖将成为可能。随着基因组数据和精确基因编辑工具的日益普及,我们在工程无融合生殖作物方面取得了实质性进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91b5/7397034/34833ff56d42/genes-11-00781-g002.jpg

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