首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A missense mutation in the VHYNP motif of a DELLA protein causes a semi-dwarf mutant phenotype in Brassica napus
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A missense mutation in the VHYNP motif of a DELLA protein causes a semi-dwarf mutant phenotype in Brassica napus

机译:DELLA蛋白的VHYNP基序中的错义突变会导致甘蓝型油菜出现半矮突变型

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Although dwarf genes have been widely used to improve lodging resistance and enhance harvest index in cereal crops, lodging is still a serious problem in rapeseed (Brassica napus) production. A semi-dwarf B. napus mutant, ds-1, was identified through EMS mutagenesis of a microspore-cultured DH line. The mutant had a significant reduction in height due to a lower first branch position and shorter internodes when compared with wild-type cultivars. This dwarfism was inherited as a single semi-dominant gene, ds-1. DS-1 locus was mapped to chromosome A6, and co-segregated with a microsatellite marker BnEMS1125 derived from the gene BnRGA. BnRGA encodes a DELLA protein that functions as a GA signaling repressor. The expression of a mutant BnRGA allele from ds-1, Bnrga-ds, caused dwarf phenotypes in Arabidopsis. Comparative sequencing of RGA open-reading frames (ORFs) of ds-1 and wild-type cultivars revealed a single proline (P)-to-leucine (L) substitution that may lead to a gain-of-function mutation in GA signaling. The expression of the Arabidopsis homolog, Atrga-ds, bearing this site-directed mutation also rendered dwarf phenotypes in Arabidopsis, which demonstrated that the P-to-L mutation in the VHYNP motif of Bnrga-ds is responsible for the dwarfism. A yeast two-hybrid assay confirmed that this mutation inhibited the interaction between Bnrga-ds/Atrga-ds and the GA receptor, AtGID1A, in the presence of GA(3), suggesting that the conserved proline residue in the VHYNP motif of DELLA protein directly participates in DELLA-GID1 interaction. Identification and characterization of the dwarf gene ds-1 will facilitate its utilization in improving lodging resistance in Brassica breeding.
机译:尽管矮化基因已被广泛用于改善谷物作物的抗倒伏性并提高收成指数,但倒伏仍然是油菜籽(甘蓝型油菜)生产中的一个严重问题。通过对小孢子培养的DH系进行EMS诱变,鉴定了半矮芽孢杆菌(B. napus)突变体ds-1。与野生型品种相比,该突变体的高度显着降低,这是因为其较低的第一分支位置和较短的节间。这种侏儒症是作为单个半优势基因ds-1遗传的。将DS-1位点定位到A6染色体,并与衍生自基因BnRGA的微卫星标记BnEMS1125共分离。 BnRGA编码充当GA信号传导阻遏物的DELLA蛋白。来自ds-1,Bnrga-ds的突变BnRGA等位基因的表达引起拟南芥中的矮表型。 ds-1和野生型品种的RGA开放阅读框(ORF)的比较测序揭示了脯氨酸(P)到亮氨酸(L)的单个取代,这可能导致GA信号传导中的功能获得突变。带有该定点突变的拟南芥同源物Atrga-ds的表达也使拟南芥中出现了矮表型,这表明Bnrga-ds VHYNP基序中的P-to-L突变是造成侏儒症的原因。酵母双杂交检测证实,该突变抑制了GA(3)存在下Bnrga-ds / Atrga-ds与GA受体AtGID1A之间的相互作用,这表明DELLA蛋白的VHYNP基序中的保守脯氨酸残基直接参与DELLA-GID1交互。矮基因ds-1的鉴定和鉴定将有助于其在提高甘蓝型油菜育种抗倒伏性方面的应用。

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