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首页> 外文期刊>The Horticulture Journal >Inheritance of Non-pungency in 'No.3341' (Capsicum chinense)
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Inheritance of Non-pungency in 'No.3341' (Capsicum chinense)

机译:“ 3341号”(辣椒)非辛辣性的继承

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摘要

An understanding of the genetic mechanism underlying capsaicinoid biosynthesis is important for breeding both pungent and non-pungent peppers. Although Capsicum is one of the earliest domesticated plant genera, only mutations in acyltransferase (Pun1) and putative aminotransferase (p-AMT) have been reported as genetic causes of loss of pungency. 'No.3341' (C. chinense) from Bolivia is a non-pungent cultivar. To determine the reasons underlying the non-pungency of 'No.3341', its expression levels and deduced amino acid sequences of Pun1 and p-AMT were analyzed. In 'No.3341', the expression levels and deduced amino acid sequences of both genes were normal compared with those of the pungent cultivar 'Habanero'. Inheritance of the non-pungency was analyzed in F-1 and F-2 populations obtained by crossing 'No.3341' with 'Habanero'. The segregation ratio indicated that the non-pungency of 'No.3341' is controlled by a single recessive gene. Moreover, since F1 populations obtained by crossing 'No.3341' with a non-pungent pepper, 'NMCA30036' harboring a mutation in Pun1, or with 'No.2' and 'No.80' harboring mutations in p-AMT, were all pungent, Pun1 and p-AMT could not account for the non-pungency of 'No.3341'. It appears that a novel genetic mechanism is responsible for the loss of pungency in 'No.3341'.
机译:了解辣椒素生物合成基础的遗传机制对于刺激性胡椒和非刺激性胡椒的育种很重要。尽管辣椒是最早驯化的植物属之一,但据报道只有酰基转移酶(Pun1)和推定的氨基转移酶(p-AMT)突变是造成刺激性丧失的遗传原因。来自玻利维亚的'No.3341'(C. chinense)是一种非刺激性品种。为了确定“ No.3341”无刺激性的原因,分析了其表达水平以及Pun1和p-AMT的推导氨基酸序列。在'No.3341'中,与刺激性品种'Habanero'相比,两个基因的表达水平和推导的氨基酸序列均正常。通过将“ No.3341”与“ Habanero”杂交获得的F-1和F-2群体分析了非辛辣性的遗传。分离比率表明,“ No.3341”的非刺激性受单个隐性基因控制。此外,由于F1群体是通过将'3341号'与非刺激性胡椒杂交而获得的,因此'PnA1中带有突变的'NMCA30036'或p-AMT中具有突变的'No.2'和'No.80'是所有刺激性,Pun1和p-AMT都无法解释“ 3341号”的非刺激性。似乎新的遗传机制导致了“ No.3341”中辣味的丧失。

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