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节节麦的杀配子基因:小麦-节节麦远缘杂交中的分离畸变基因

Gametocidal genes of Aegilops: segregation distorters in wheat-Aegilops wide hybridization.

作者信息

Niranjana M

机构信息

Indian Agricultural Research Institute, New Delhi, India.

出版信息

Genome. 2017 Aug;60(8):639-647. doi: 10.1139/gen-2017-0023. Epub 2017 Jun 27.

Abstract

Aegilops is a genus belonging to the family Poaceace, which have played an indispensible role in the evolution of bread wheat and continues to do so by transferring genes by wide hybridization. Being the secondary gene pool of wheat, gene transfer from Aegilops poses difficulties and segregation distortion is common. Gametocidal genes are the most well characterized class of segregation distorters reported in interspecific crosses of wheat with Aegilops. These "selfish" genetic elements ensure their preferential transmission to progeny at the cost of gametes lacking them without providing any phenotypic benefits to the plant, thereby causing a proportional reduction in fertility. Gametocidal genes (Gc) have been reported in different species of Aegilops belonging to the sections Aegilops (Ae. geniculata and Ae. triuncialis), Cylindropyrum (Ae. caudata and Ae. cylindrica), and Sitopsis (Ae. longissima, Ae. sharonensis, and Ae. speltoides). Gametocidal activity is mostly confined to 2, 3, and 4 homeologous groups of C, S, S, S, and M genomes. Removal of such genes is necessary for successful alien gene introgression and can be achieved by mutagenesis or allosyndetic pairing. However, there are some instances where Gc genes are constructively utilized for development of deletion stocks in wheat, improving genetic variability and chromosome engineering.

摘要

山羊草属是禾本科的一个属,在普通小麦的进化过程中发挥了不可或缺的作用,并且通过远缘杂交转移基因的方式仍在发挥作用。作为小麦的二级基因库,从山羊草属转移基因存在困难,分离畸变很常见。杀配子基因是在小麦与山羊草属的种间杂交中报道的最具特征的一类分离畸变基因。这些“自私”的遗传元件确保它们以缺乏这些基因的配子为代价优先传递给后代,而不给植物提供任何表型益处,从而导致育性成比例降低。已在山羊草属不同物种中报道了杀配子基因(Gc),这些物种属于山羊草组(节节麦和波斯小麦)、圆柱山羊草组(尾状山羊草和圆柱山羊草)和拟斯卑尔脱山羊草组(长穗山羊草、沙伦山羊草和斯卑尔脱山羊草)。杀配子活性大多局限于C、S、S、S和M基因组的第2、3和4同源群。去除这些基因对于成功导入外源基因是必要的,并且可以通过诱变或异源配对来实现。然而,在一些情况下,Gc基因被建设性地用于小麦缺失系的培育,提高遗传变异性和染色体工程。

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