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有机酸转运基因的等位基因与小麦在田间酸性土壤条件下的抗性高度相关。

Alleles of organic acid transporter genes are highly correlated with wheat resistance to acidic soil in field conditions.

机构信息

Embrapa Trigo, Rodovia BR 285 km 294, Passo Fundo, RS, 99050-970, Brazil.

Universidade de Passo Fundo, Rodovia BR 285, Passo Fundo, RS, 99052-900, Brazil.

出版信息

Theor Appl Genet. 2016 Jul;129(7):1317-1331. doi: 10.1007/s00122-016-2705-3. Epub 2016 Mar 23.

Abstract

TaALMT1 and TaMATE1B promoter alleles are highly correlated with wheat growth in acidic soil with a high concentration of toxic aluminium. The aluminium (Al(3+)) resistance of 338 wheat genotypes with different geographic origins was correlated with morphological traits and TaALMT1 and TaMATE1B alleles. Both of these genes encode malate and citrate transporters associated with Al(3+) resistance mechanisms in wheat. Based on comparisons with the sensitive and resistant controls, the relative root growth was evaluated in hydroponic experiments and the plant performance was visually accessed in the field. The correlation between Al(3+) tolerance in the hydroponic and field tests was moderate (r = 0.56, P < 0.001). Higher selection pressure was observed in the field because a smaller number of genotypes was classified as resistant. The combination between the six TaALMT1 alleles and the two TaMATE1B promoters allowed the identification of 11 haplotypes that showed a high (r = 0.71, P < 0.001) correlation with Al(3+) resistance in the field, with the TaALMT1 alleles accounting for most of the correlation. The Brazilian wheat genotypes presented the best performance in soil, including eight cultivars with promoters usually associated with Al(3+) resistance and another six genotypes classified as moderately resistant but containing alleles usually associated with Al(3+) sensitivity. Although an increase in favourable alleles was observed over the past few decades, the average Al(3+) resistance in the field was not significantly different from that of older cultivars. The ease identification of the TaALMT1 and TaMATE1B alleles and their higher association with Al(3+) resistance along with the best genotypes identified here may be used for wheat-breeding programmes interested in increasing wheat Al(3+) resistance.

摘要

TaALMT1 和 TaMATE1B 启动子等位基因与高浓度毒性铝的酸性土壤中小麦生长高度相关。来自不同地理起源的 338 种小麦基因型的铝(Al(3+))抗性与形态特征以及 TaALMT1 和 TaMATE1B 等位基因相关。这两个基因编码与小麦 Al(3+)抗性机制相关的苹果酸和柠檬酸转运蛋白。根据与敏感和抗性对照的比较,在水培实验中评估相对根生长,在田间通过目测评估植物表现。水培和田间试验中 Al(3+)耐受性的相关性为中度(r = 0.56,P < 0.001)。在田间观察到更高的选择压力,因为只有较少的基因型被归类为抗性。这六个 TaALMT1 等位基因和两个 TaMATE1B 启动子的组合允许鉴定出 11 个单倍型,它们与田间 Al(3+)抗性高度相关(r = 0.71,P < 0.001),其中 TaALMT1 等位基因占大部分相关性。巴西小麦基因型在土壤中表现出最佳性能,包括 8 个具有通常与 Al(3+)抗性相关的启动子的品种和另外 6 个被归类为中度抗性但含有通常与 Al(3+)敏感性相关的等位基因的基因型。尽管在过去几十年中观察到有利等位基因的增加,但田间平均 Al(3+)抗性与较老品种没有显著差异。TaALMT1 和 TaMATE1B 等位基因的易于识别及其与 Al(3+)抗性的更高相关性以及这里确定的最佳基因型可能用于有兴趣提高小麦 Al(3+)抗性的小麦育种计划。

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