CIRAD, UMR Développement et Amélioration des Plantes, TA-A 96/03, 34398, Montpellier, France.
Theor Appl Genet. 2010 Aug;121(4):769-87. doi: 10.1007/s00122-010-1348-z. Epub 2010 May 8.
Asr (ABA, stress, ripening) genes represent a small gene family potentially involved in drought tolerance in several plant species. To analyze their interest for rice breeding for water-limited environments, this gene family was characterized further. Genomic organization of the gene family reveals six members located on four different chromosomes and with the same exon-intron structure. The maintenance of six members of the Asr gene family, which are the result of combination between tandem duplication and whole genome duplication, and their differential regulation under water stress, involves probably some sub-functionalization. The polymorphism of four members was studied in a worldwide collection of 204 accessions of Oryza sativa L. and 14 accessions of wild relatives (O. rufipogon and O. nivara). The nucleotide diversity of the Asr genes was globally low, but contrasted for the different genes, leading to different shapes of haplotype networks. Statistical tests for neutrality were used and compared to their distribution in a set of 111 reference genes spread across the genome, derived from another published study. Asr3 diversity exhibited a pattern concordant with a balancing selection at the species level and with a directional selection in the tropical japonica sub-group. This study provides a thorough description of the organization of the Asr family, and the nucleotide and haplotype diversity of four Asr in Oryza sativa species. Asr3 stood out as the best potential candidate. The polymorphism detected here represents a first step towards an association study between genetic polymorphisms of this gene family and variation in drought tolerance traits.
Asr(ABA、应激、成熟)基因代表了一个小的基因家族,可能参与了几种植物的耐旱性。为了分析它们在水稻水分限制环境下的育种潜力,进一步对该基因家族进行了特征描述。基因家族的基因组组织揭示了位于四个不同染色体上的六个成员,它们具有相同的外显子-内含子结构。Asr 基因家族的六个成员的维持,是串联重复和全基因组重复结合的结果,以及它们在水分胁迫下的差异调节,可能涉及一些亚功能化。在来自全球的 204 个 Oryza sativa L. 品种和 14 个野生近缘种(O. rufipogon 和 O. nivara)的一个集合中研究了四个成员的多态性。Asr 基因的核苷酸多样性总体较低,但不同基因之间存在差异,导致单倍型网络的形状不同。使用中性统计检验并将其与另一个已发表的研究中从基因组中衍生的 111 个参考基因的分布进行了比较。Asr3 的多样性表现出与物种水平平衡选择一致的模式,以及热带粳稻亚群的定向选择。本研究提供了 Asr 家族组织以及 Oryza sativa 物种中四个 Asr 基因的核苷酸和单倍型多样性的全面描述。Asr3 脱颖而出成为最佳候选基因。这里检测到的多态性代表了该基因家族的遗传多态性与耐旱性性状变异之间的关联研究的第一步。