Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires Argentina.
Genet Mol Biol. 2009 Apr;32(2):312-9. doi: 10.1590/S1415-47572009005000029. Epub 2009 Jun 1.
Bromus setifolius var. pictus (Hook) Skottsb., B. setifolius var. setifolius Presl. and B.setifolius var. brevifolius Ness are three native Patagonian taxa in the section Pnigma Dumort of the genus Bromus L. AFLP and RAPD analysis, in conjunction with genetic distance measurements and statistical techniques, revealed variation within this group and indicated that B. setifolius var. brevifolius was closely related to B. setifolius var. pictus, with both taxa being more distantly related to B. setifolius var. setifolius. Cytogenetic analysis confirmed the chromosomal number of B. setifolius var. pictus (2n = 70) and B. setifolius var. setifolius (2n = 28) and showed for the first time that B. setifolius var. brevifolius had 2n = 70. The combination of molecular genetic and cytogenetic evidence supported a species status for two of the three taxa and suggested hypotheses for the evolutionary origin of these complex taxa. Species status was also indicated for B. setifolius var. setifolius. Based on these findings, we suggest that B. setifolius var. pictus be referred to as B. pictus Hook var. pictus, and B. setifolius var brevifolius as B. pictus Hook var brevifolius. The correlation between AFLP diversity and variation in ecological parameters suggested that this marker system could be used to assess breeding progress and to monitor the domestication of Patagonian Bromus species for agronomic use.
雀麦组的三种特有种——宽叶雀麦变种宽叶型(Hook)Skottsb.、宽叶雀麦变种画笔型(Presl)和短芒雀麦变种短芒型是分布在巴塔哥尼亚地区的野生植物。通过 AFLP 和 RAPD 分析、遗传距离测量和统计技术,发现该组内存在变异,并表明短芒雀麦变种短芒型与宽叶雀麦变种画笔型密切相关,而这两个变种与宽叶雀麦变种宽叶型的亲缘关系较远。细胞遗传学分析证实了宽叶雀麦变种画笔型(2n = 70)和宽叶雀麦变种宽叶型(2n = 28)的染色体数目,并首次表明短芒雀麦变种短芒型的染色体数目为 2n = 70。分子遗传和细胞遗传学证据的结合支持了这三个分类群中的两个具有物种地位,并提出了这些复杂分类群的进化起源假说。宽叶雀麦变种宽叶型也具有物种地位。基于这些发现,我们建议将宽叶雀麦变种画笔型称为画笔型宽叶雀麦(B. pictus Hook var. pictus),短芒雀麦变种短芒型称为画笔型短芒雀麦(B. pictus Hook var. brevifolius)。AFLP 多样性与生态参数变化之间的相关性表明,该标记系统可用于评估育种进展,并监测巴塔哥尼亚雀麦属物种的驯化用于农业用途。