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Semi-dominant effects of a novel ripening inhibitor ( rin ) locus allele on tomato fruit ripening

机译:一种新型成熟抑制剂(rin)基因座等位基因对番茄果实成熟的半导性效应

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The tomato ( Solanum lycopersicum ) ripening inhibitor ( rin ) mutation completely represses fruit ripening, as rin fruits fail to express ripening-associated genes and remain green and firm. Moreover, heterozygous rin fruits ( rin /+) ripen normally but have extended shelf life, an important consideration for this perishable fruit crop; therefore, heterozygous rin has been widely used to breed varieties that produce red tomatoes with improved shelf life. We previously used CRISPR/Cas9 to produce novel alleles at the rin locus. The wild-type allele RIN encodes a MADS-box transcription factor and the novel allele, named as rinG2 , generates an early stop codon, resulting in C-terminal truncation of the transcription factor. Like rin fruits, rinG2 fruits exhibit extended shelf life, but unlike rin fruits, which remain yellow-green even after long-term storage, rinG2 fruits turn orange due to ripening-associated carotenoid production. Here, to explore the potential of the rinG2 mutation for breeding, we characterized the effects of rinG2 in the heterozygous state ( rinG2/+ ) compared to the effects of rin /+. The softening of rinG2/+ fruits was delayed compared to the wild type but to a lesser degree than rin/+ fruits. Lycopene and β-carotene levels in rinG2/+ fruits were similar to those of the wild type, whereas rin/+ fruits accumulated half the amount of β-carotene compared to the wild type. The rinG2/+ fruits produced lower levels of ethylene than wild-type and rin/+ fruits. Expression analysis revealed that in rinG2/+ fruits, the rinG2 mutation (like rin ) partially inhibited the expression of ripening-associated genes. The small differences in the inhibitory effects of rinG2 vs. rin coincided with small differences in phenotypes, such as ethylene production, softening, and carotenoid accumulation. Therefore, rinG2 represents a promising genetic resource for developing tomato cultivars with extended shelf life.
机译:番茄(Solanum Lycopersicum)成熟抑制剂(rin)突变完全抑制果实成熟,因为载体果实未表达熟化相关的基因并保持绿色和坚固。此外,杂合载体果实(rin / +)正常成熟,但具有延长的保质期,这是对这种易腐果实作物的重要考虑因素;因此,杂合子载体已被广泛用于品种生产红色西红柿的品种,具有改善的保质期。我们以前使用CRICPR / CAS9在RIN LOCU中生产新的等位基因。野生型等位基因RIN编码疯箱转录因子和名为Ring2的新型等位基因,产生早期停止密码子,导致转录因子的C末端截短。像r水果一样,戒指2果实表现出延长的保质期,但与rin水果不同,即使在长期储存后保持黄绿色,ring2水果由于成熟相关的类胡萝卜素生产而转动橙色。这里,为了探讨Ring2突变的培育突变,与rin / +的效果相比,我们表征了Ring2在杂合状态(环2 / +)中的影响。与野生型相比,环2 / +水果的软化延迟,但比rin / +果实较小程度。环2 / +水果中的番茄红素和β-胡萝卜素水平与野生型相似,而Rin / +果实与野生型相比累积了β-胡萝卜素的一半。 Ring2 / +果实产生的乙烯水平低于野生型和载体/ +果实。表达分析显示,在环2 / +果实中,环2突变(如rin)部分抑制熟化相关基因的表达。 Ring2与rin的抑制作用的小差异与表型的小差异,例如乙烯生产,软化和类胡萝卜素积累。因此,Ring2表示具有延长保质期的番茄品种的有希望的遗传资源。

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