Laboratory of Molecular Breeding, Arid Land Research Center, Tottori University , 1390 Hamasaka, Tottori 680-0001, Japan.
Breed Sci. 2011 Dec;61(4):347-57. doi: 10.1270/jsbbs.61.347. Epub 2011 Dec 15.
Few genes are available to develop drought-tolerant bread wheat (Triticum aestivum L.) cultivars. One way to enhance bread wheat's genetic diversity would be to take advantage of the diversity of wild species by creating synthetic hexaploid wheat (SW) with the genomic constitution of bread wheat. In this study, we compared the expression of traits encoded at different ploidy levels and evaluated the applicability of Aegilops tauschii drought-related traits using 33 Ae. tauschii accessions along with their corresponding SW lines under well-watered and drought conditions. We found wide variation in Ae. tauschii, and even wider variation in the SW lines. Some SW lines were more drought-tolerant than the standard cultivar Cham 6. Aegilops tauschii from some regions gave better performing SW lines. The traits of Ae. tauschii were not significantly correlated with their corresponding SW lines, indicating that the traits expressed in wild diploid relatives of wheat may not predict the traits that will be expressed in SW lines derived from them. We suggest that, regardless of the adaptability and performance of the Ae. tauschii under drought, production of SW could probably result in genotypes with enhanced trait expression due to gene interactions, and that the traits of the synthetic should be evaluated in hexaploid level.
培育耐旱性强的普通小麦(Triticum aestivum L.)品种的相关基因十分有限。增加普通小麦遗传多样性的一种方法是,通过创造基因组组成与普通小麦相同的合成六倍体小麦(SW),利用野生种的多样性。本研究比较了不同倍性水平上编码性状的表达,并在充分供水和干旱条件下,使用 33 份节节麦(Aegilops tauschii)材料及其对应的 SW 系,评估了节节麦与干旱相关的性状的适用性。我们发现节节麦的变异范围很广,SW 系的变异范围甚至更广。一些 SW 系比对照品种 Cham 6 更耐旱。来自某些地区的节节麦为 SW 系提供了更好的表现。节节麦的性状与其对应的 SW 系之间没有显著相关性,这表明小麦野生二倍体近缘种表达的性状可能无法预测从其衍生而来的 SW 系中表达的性状。我们建议,无论在干旱条件下节节麦的适应性和表现如何,由于基因互作,SW 的产生可能会导致表型增强的基因型,并且应该在六倍体水平上评估合成种的性状。