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Mutations in the tobacco mosaic virus 30-kD protein gene overcome Tm-2 resistance in tomato.

机译:烟草花叶病毒30-kD蛋白基因中的突变克服了番茄对Tm-2的抗性。

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摘要

A resistance-breaking strain of tobacco mosaic virus (TMV), Ltb1, is able to multiply in tomatoes with the Tm-2 gene, unlike its parent strain, L. Nucleotide sequence analysis of Ltb1 RNA revealed two amino acid changes in the 30-kD protein: from Cys68 to Phe and from Glu133 to Lys (from L to Ltb1). Strains with these two changes generated in vitro multiplied in tomatoes with the Tm-2 gene and induced essentially the same symptoms as those caused by Ltb1. Strains with either one of the two changes did not overcome the resistance as efficiently as Ltb1, although increased levels of multiplication were observed compared with the L strain. Results showed that both mutations are involved in the resistance-breaking property of Ltb1. Sequence analysis indicated that another resistance-breaking strain and its parent strain had two amino acid changes in the 30-kD protein: from Glu52 to Lys and from Glu133 to Lys. The fact that the amino acid changes occurred in or near the well conserved regions in the 30-kD protein suggests that the mechanism of Tm-2 resistance may be closely related to the fundamental function of the 30-kD protein, presumably in cell-to-cell movement.
机译:烟草花叶病毒(TMV)的抗药性菌株Ltb1能够在番茄中繁殖带有Tm-2基因的菌株,这与其母本菌株L不同。Ltb1RNA的核苷酸序列分析表明,在30- kD蛋白:从Cys68到Phe,从Glu133到Lys(从L到Ltb1)。具有这两个变化的菌株在体外产生,在带有Tm-2基因的番茄中繁殖,并诱导出与Ltb1引起的症状基本相同的症状。尽管与L菌株相比观察到了增加的繁殖水平,但具有两种变化之一的菌株不能像Ltb1一样有效地克服抗性。结果表明,这两个突变都与Ltb1的抗性断裂特性有关。序列分析表明,另一种抗性断裂菌株及其亲本菌株在30 kD蛋白中有两个氨基酸变化:从Glu52到Lys和从Glu133到Lys。氨基酸变化发生在30-kD蛋白的保守区域内或附近,这一事实表明Tm-2耐药机制可能与30-kD蛋白的基本功能密切相关,大概是在细胞内细胞运动。

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