首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Chlorophyll breakdown during pepper fruit ripening in the chlorophyll retainer mutation is impaired at the homolog of the senescence-inducible stay-green gene.
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Chlorophyll breakdown during pepper fruit ripening in the chlorophyll retainer mutation is impaired at the homolog of the senescence-inducible stay-green gene.

机译:叶绿素保持子突变的辣椒果实成熟过程中的叶绿素分解在衰老诱导的保持绿色基因的同源物中受损。

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摘要

The pepper chlorophyll retainer (cl) mutation is characterized by inhibition of chlorophyll degradation during fruit ripening. Ripe fruit of cl pepper containing chlorophyll and red carotenoids is brown, while ripe fruit containing chlorophyll and yellow carotenoids is green. In addition to the inhibitory effect during fruit ripening caused by cl, we show that chlorophyll degradation is inhibited during natural and dark-induced leaf senescence. Therefore, the cl mutation has the characteristics of the stay-green (sgr) mutants described in many other species. Upon the recent discovery of the SGR gene in various plant species, we isolated pepper SGR (CaSGR) and found that it genetically cosegregates with cl in a BC1 mapping population. Furthermore, sequencing the wild-type and mutant alleles revealed an amino-acid substitution of tryptophan (aromatic amino acid) to arginine (basic amino acid) at position 114 in the protein sequence. The single-nucleotide polymorphism (SNP) that differentiates the wild-type and mutant alleles was exploited to develop a PCR marker useful for marker-assisted selection. Expression of CaSGR as measured by semiquantitative RT-PCR was mostly induced upon fruit ripening and to a lesser extent upon leaf senescence. Taking together, our genetic, sequence and expression data all indicate that CaSGR is a candidate for controlling the cl mutation in pepper.
机译:胡椒的叶绿素固位体(cl)突变的特征在于抑制果实成熟期间的叶绿素降解。含有叶绿素和红色类胡萝卜素的cl胡椒的成熟果实为棕色,而含有叶绿素和黄色类胡萝卜素的成熟果实为绿色。除了由cl引起的果实成熟过程中的抑制作用外,我们还表明在自然和黑暗诱导的叶片衰老过程中,叶绿素降解受到抑制。因此,c1突变具有许多其他物种中描述的保持绿色(sgr)突变体的特征。在最近在各种植物物种中发现SGR基因后,我们分离了辣椒SGR(CaSGR),发现它在BC1定位种群中与cl遗传共分离。此外,对野生型和突变型等位基因进行测序显示,在蛋白质序列的114位上,色氨酸(芳香族氨基酸)被氨基酸取代为精氨酸(碱性氨基酸)。利用区分野生型和突变等位基因的单核苷酸多态性(SNP)来开发可用于标记辅助选择的PCR标记。通过半定量RT-PCR测定的CaSGR表达主要在果实成熟时诱导,而在叶片衰老时则较少。综上所述,我们的遗传,序列和表达数据均表明CaSGR是控制辣椒cl突变的候选基因。

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