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A tomato heat-tolerant mutant shows improved pollen fertility and fruit-setting under long-term ambient high temperature

机译:番茄耐热突变体显示出改善的花粉生育能力和长期环境高温下的果实

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摘要

Heat stress (HS) is a major problem of tomato production worldwide, as it reduces fruit setting due to the adverse effects on pollen development and fertility. In this study, we isolated heat-tolerant (HT) mutants providing improved fruit-setting under long-term ambient high temperature by testing over 4000 lines from the Micro-Tom tomato mutant collection. The HT mutants were categorized into two types, namely those that produced parthenocarpic fruit, and those that produced fruit with seeds. Among the HT mutants, HT7 plants produced fruit with seeds, had a higher fruit number and seeded-fruit yield, and the total pollen number and viability were much higher under HS conditions than those of the WT under both control and HS conditions. HT7 also succeeded at fertilization even under HS conditions due to higher pollen viability than the WT. In addition, HS-related genes, such as SIHsfA1b3 and Hsp101, were more highly expressed in HT7 than in WT. These results suggest that HT7 could be a valuable genetic resource for elucidating heat tolerance mechanisms and a breeding material for improving heat-tolerant fruit-setting in tomato.
机译:热应力(HS)是全球番茄生产的主要问题,因为它由于对花粉发育和生育的不利影响而降低了果实环境。在该研究中,通过从微米番茄突变突变体收集测试超过4000条线,隔离耐热(HT)突变体在长期环境高温下提供改善的果实。将HT突变体分为两种类型,即那些产生占性果实的那些,以及用种子产生果实的那些。在HT突变体中,HT7植物产生了种子的果实,具有较高的果实数和种子果实产量,并且在HS条件下的总花粉数和活力远远高于对照和HS条件下的WT。即使在HS条件下,HT7也成功地取得了施肥,这是由于Pollen活力高于WT。另外,HS相关基因,例如SiHSFA1B3和HSP101,在HT7中比wt更高度表达。这些结果表明,HT7可以是阐明耐热机制的有价值的遗传资源和用于改善番茄中耐热果实的育种材料。

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