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Gene expression analysis and SNP/InDel discovery to investigate yield heterosis of two rubber tree F1 hybrids

机译:基因表达分析和SNP / InDel发现以研究两个橡胶树F1杂种的产量杂种优势

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As an important industrial material, natural rubber is mainly harvested from the rubber tree. Rubber tree breeding is inefficient, expensive and time-consuming, whereas marker-assisted selection is a feasible method for early selection of high-yield hybrids. We thus sequenced and analyzed the transcriptomes of two parent rubber trees (RRIM 600 and PR 107) and their most productive hybrids (RY 7-33-97 and RY 7-20-59) to understand their gene expression patterns and genetic variations including single nucleotide polymorphisms (SNPs) and small insertions/deletions (InDels). We discovered 31,000 genetic variations in 112,702 assembled unigenes. Our results showed that the higher yield in F1 hybrids was positively associated with their higher genome heterozygosity, which was further confirmed by genotyping 10 SNPs in 20 other varieties. We also showed that RY 7-33-97 and RY 7-20-59 were genetically closer to RRIM 600 and PR 107, respectively, in agreement with both their phenotypic similarities and gene expression profiles. After identifying ethylene- and jasmonic acid-responsive genes at the transcription level, we compared and analyzed the genetic variations underlying rubber biosynthesis and the jasmonic acid and ethylene pathways in detail. Our results suggest that genome-wide genetic variations play a substantive role in maintaining rubber tree heterosis.
机译:天然橡胶作为重要的工业原料,主要是从橡胶树中收获的。橡胶树育种效率低下,昂贵且费时,而标记辅助选择是早期选择高产杂种的可行方法。因此,我们对两个亲本橡胶树(RRIM 600和PR 107)及其最有生产力的杂种(RY 7-33-97和RY 7-20-59)的转录组进行了测序和分析,以了解其基因表达模式和遗传变异,包括单个核苷酸多态性(SNP)和小的插入/缺失(InDels)。我们在112,702个组装的单基因中发现了超过31,000个遗传变异。我们的结果表明,F1杂种的较高产量与它们较高的基因组杂合度呈正相关,这通过对其他20个变种中的10个SNP进行基因分型进一步得到证实。我们还显示,RY 7-33-97和RY 7-20-59在遗传上分别更接近RRIM 600和PR 107,这与它们的表型相似性和基因表达谱都相符。在转录水平上鉴定乙烯和茉莉酸响应基因后,我们比较并分析了橡胶生物合成以及茉莉酸和乙烯途径的详细遗传变异。我们的结果表明,全基因组遗传变异在维持橡胶树杂种优势中起着实质性作用。

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