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首页> 外文期刊>American Journal of Potato Research >The incidence and effect on total tuber carotenoids of a recessive zeaxanthin epoxidase allele (Zep1) in yellow-fleshed potatoes.
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The incidence and effect on total tuber carotenoids of a recessive zeaxanthin epoxidase allele (Zep1) in yellow-fleshed potatoes.

机译:黄肉马铃薯中一种隐性玉米黄质环氧化酶等位基因( Zep1 )的发生率及其对总块茎类胡萝卜素的影响。

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摘要

Zeaxanthin epoxidase (Zep) is one of at least two genes important for the incidence and amount of carotenoids in yellow-fleshed potato. The recessive allele of the gene encoding zeaxanthin epoxidase (Zep1) has previously been shown to inhibit the conversion of the xanthophyll zeaxanthin to other, more polar carotenoids. We examined the effect of the dosage of Zep1 on total carotenoids in yellow-fleshed tetraploid potato germplasm. The dosage of heterozygous individuals was determined using high-resolution DNA melting. We also surveyed a wide range of germplasm available in the USDA-ARS potato breeding program in Washington for the presence and dosage of Zep1. Genotypes with zero, one, or two copies of Zep1 had statistically similar levels of total tuber carotenoids. Triplex individuals showed a small but significant increase in total carotenoids over the previous three classes. In turn, individuals that were homozygous for Zep1 had much higher levels of total carotenoids than all other dosage classes. This suggests that a slight dosage effect is present, but that the effect of Zep1 is indeed largely recessive. A significant amount of variation in total carotenoids was observed within all Zep1 dosage classes, reinforcing the evidence that additional loci are important for high total carotenoids in potato. Our survey of breeding germplasm supported earlier research that Zep1 is uncommon in tetraploid potato germplasm. The use of high-resolution DNA melting again allowed us to identify the dosage of Zep1 in heterozygous individuals. This is important for breeding high-carotenoid potatoes at the tetraploid level, since recovery of homozygous Zep1 individuals is very rare. Identification of agronomically desirable parents with two or more copies of Zep1 would allow for higher recovery of homozygous Zep1 progeny, permitting additional selection for other desirable traits.
机译:玉米黄质环氧酶( Zep )是至少两个对黄肉马铃薯中类胡萝卜素的发生率和数量重要的基因之一。先前已显示出编码玉米黄质环氧化酶( Zep1 )的基因的隐性等位基因可抑制叶黄素玉米黄质向其他极性更大的类胡萝卜素的转化。我们检查了 Zep1 的剂量对黄肉四倍体马铃薯种质中总类胡萝卜素的影响。使用高分辨率DNA熔解确定杂合个体的剂量。我们还针对华盛顿州USDA-ARS马铃薯育种计划中的 Zep1 的存在和剂量进行了广泛的种质调查。 Zep1 的拷贝数为零,一或两个的基因型在块茎类胡萝卜素中的统计水平相似。三类个体的总类胡萝卜素含量比前三类有所增加。反过来,与 Zep1 纯合的个体的总类胡萝卜素水平要比所有其他剂量类别高得多。这表明存在轻微的剂量效应,但是 Zep1 的效应确实在很大程度上是隐性的。在所有 Zep1 剂量类别中,总类胡萝卜素的变化都很大,这进一步证明了额外的基因座对马铃薯中总类胡萝卜素的含量高很重要。我们对育种种质的调查支持了先前的研究,即 Zep1 在四倍体马铃薯种质中并不常见。高分辨率DNA熔解的使用再次使我们能够确定杂合子个体中 Zep1 的剂量。这对于在四倍体水平上繁殖高类胡萝卜素土豆非常重要,因为纯合子 Zep1 的恢复非常罕见。鉴定具有两个或两个以上 Zep1 副本的农学上理想的亲本可以提高纯合子 Zep1 后代的回收率,从而可以选择其他理想的性状。

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