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Characterization of Mutations in Barley fch2 Encoding Chlorophyllide a Oxygenase

机译:大麦fch2编码叶绿素加氧酶突变的表征。

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摘要

The barley (Hordeum vulgare L.) mutants fch2 and clo-f2 comprise an allelic group of 14 Chl b-deficient lines. The genetic map position of fch2 corresponds to the physical map position of the gene encoding chlorophyllide a oxygenase. This enzyme converts chlorophyllide a to chlorophyllide b and it is essential for Chl b biosynthesis. The fch2 and clo-f2 barley lines were shown to be mutated in the gene for chlorophyllide a oxygenase. A five-base insertion was found in fch2 and base deletions in clo-f2.101, clo-f2.105, clo-f2.2800 and clo-f2.3613. In clo-f2.105 and clo-f2.108, nonsense base exchanges were discovered. All of these mutations led to a premature stop of translation and none of the mutants formed Chl b. The mutant clo-f2.2807 was transcript deficient and formed no Chl b. Missense mutations in clo-f2.102 (leading to the amino acid exchange D495N) and clo-f2.103 (G280D) resulted in a total lack of Chl b, whereas in the missense mutants clo-f2.107 (P419L), clo-f2.109 (A94T), clo-f2.122 (C320Y), clo-f2.123 (A94T), clo-f2.133 (A376V) and clo-f2.181 (L373F) intermediate contents of Chl b were determined. The missense mutations affect conserved residues, and their effect on chlorophyllide a oxygenase is discussed. The mutations in clo-f2.102, clo-f2.103, clo-f2.133 and clo-f2.181 may influence electron transfer as illustrated in the active site of a structural model protein. The changes in clo-f2.107, clo-f2.109, clo-f2.122 and clo-f2.123 may lead to Chlb deficiency by interfering with the regulation of chlorophyllide a oxygenase. The correlation of mutations and phenotypes strongly supports that the barley locus fch2 encodes chlorophyllide a oxygenase.
机译:大麦(Hordeum vulgare L.)突变体fch2和clo-f2包含14个Chl b缺陷型品系的等位基因组。 fch2的遗传图谱位置对应于编码叶绿素加氧酶的基因的物理图谱位置。该酶将叶绿素a转化为叶绿素b,对于Chl b生物合成至关重要。结果表明,fch2和clo-f2大麦系在叶绿素加氧酶基因中发生了突变。在fch2中发现了5个碱基的插入,在clo-f2.101,clo-f2.105,clo-f2.2800和clo-f2.3613中发现了碱基缺失。在clo-f2.105和clo-f2.108中,发现了无意义的碱基交换。所有这些突变导致翻译的过早停止,并且没有一个突变体形成Chlb。突变体clo-f2.2807是转录缺陷的,没有形成Chlb。 clo-f2.102(导致氨基酸交换D495N)和clo-f2.103(G280D)中的错义突变导致Chlb的完全缺乏,而在missense突变体clo-f2.107(P419L)中,clo确定了Chlb的中间含量-f2.109(A94T),clo-f2.122(C320Y),clo-f2.123(A94T),clo-f2.133(A376V)和clo-f2.181(L373F) 。错义突变影响保守的残基,并讨论了它们对叶绿素氧化酶的作用。 clo-f2.102,clo-f2.103,clo-f2.133和clo-f2.181中的突变可能会影响电子转移,如结构模型蛋白的活性位点所示。 clo-f2.107,clo-f2.109,clo-f2.122和clo-f2.123的变化可能会通过干扰叶绿素加氧酶的调节而导致Chlb缺乏。突变与表型的相关性强烈支持大麦基因座fch2编码叶绿素加氧酶。

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