首页> 外文OA文献 >Null Mutation of the MdACS3 Gene, Coding for a Ripening-Specific 1-Aminocyclopropane-1-Carboxylate Synthase, Leads to Long Shelf Life in Apple Fruit1[W][OA]
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Null Mutation of the MdACS3 Gene, Coding for a Ripening-Specific 1-Aminocyclopropane-1-Carboxylate Synthase, Leads to Long Shelf Life in Apple Fruit1[W][OA]

机译:MdACS3基因的空突变编码一个成熟的1-氨基环丙烷-1-羧酸合酶,可延长苹果果实的保质期[W] [OA]

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摘要

Expression of MdACS1, coding for 1-aminocyclopropane-1-carboxylate synthase (ACS), parallels the level of ethylene production in ripening apple (Malus domestica) fruit. Here we show that expression of another ripening-specific ACS gene (MdACS3) precedes the initiation of MdACS1 expression by approximately 3 weeks; MdACS3 expression then gradually decreases as MdACS1 expression increases. Because MdACS3 expression continues in ripening fruit treated with 1-methylcyclopropene, its transcription appears to be regulated by a negative feedback mechanism. Three genes in the MdACS3 family (a, b, and c) were isolated from a genomic library, but two of them (MdACS3b and MdACS3c) possess a 333-bp transposon-like insertion in their 5′ flanking region that may prevent transcription of these genes during ripening. A single nucleotide polymorphism in the coding region of MdACS3a results in an amino acid substitution (glycine-289 → valine) in the active site that inactivates the enzyme. Furthermore, another null allele of MdACS3a, Mdacs3a, showing no ability to be transcribed, was found by DNA sequencing. Apple cultivars homozygous or heterozygous for both null allelotypes showed no or very low expression of ripening-related genes and maintained fruit firmness. These results suggest that MdACS3a plays a crucial role in regulation of fruit ripening in apple, and is a possible determinant of ethylene production and shelf life in apple fruit.
机译:编码1-氨基环丙烷-1-羧酸合酶(ACS)的MdACS1的表达与成熟苹果(Malus domestica)果实中的乙烯产量水平平行。在这里,我们显示另一个成熟特异性ACS基因(MdACS3)的表达在MdACS1表达的启动之前大约3周。然后,MdACS3表达随着MdACS1表达的增加而逐渐降低。由于MdACS3的表达在用1-甲基环丙烯处理的成熟果实中继续存在,因此其转录似乎受到负反馈机制的调节。从基因组文库中分离了MdACS3家族的三个基因(a,b和c),但是其中两个基因(MdACS3b和MdACS3c)在其5'侧翼区域具有333 bp的转座子样插入,可能会阻止转录。这些基因在成熟过程中。 MdACS3a编码区中的单核苷酸多态性会导致使酶失活的活性位点发生氨基酸取代(甘氨酸289→缬氨酸)。此外,通过DNA测序发现了MdACS3a的另一个无效等位基因Mdacs3a,其没有被转录的能力。两个无效等位基因型的纯合子或杂合子苹果品种均未显示或极少显示与成熟相关的基因,并保持了果实的硬度。这些结果表明,MdACS3a在调节苹果果实成熟中起着至关重要的作用,并且可能是决定苹果果实中乙烯产量和货架期的因素。

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