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Molecular breeding of water lily: engineering cold stress tolerance into tropical water lily

机译:睡莲分子育种:将耐寒性工程化为热带睡莲

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Water lilies (order Nymphaeales) are rich in both economic and cultural values. They grow into aquatic herbs, and are divided into two ecological types: tropical and hardy. Although tropical water lilies have more ornamental and medicinal values compared to the hardy water lily, the study and utilization of tropical water lilies in both landscaping and pharmaceutical use is greatly hindered due to their limited planting area. Tropical water lilies cannot survive the winter in areas beyond 24.3°N latitude. Here, the transgenic pipeline through the pollen-tube pathway was generated for water lily for the first time. To improve cold stress tolerance of tropical water lilies, a gene encoding choline oxidase (CodA) driven by a cold stress-inducible promoter was transformed into a tropical water lily through the pollen-tube transformation. Six independent transgenic lines were tested for survival rate during two winter seasons from 2015 to 2017 in Hangzhou (30.3°N latitude). PCR and southern blot detection revealed that the CodA gene had been integrated into the genome. Reverse transcription PCR showed that CodA gene was induced after cold stress treatment, and further quantitative real-time PCR revealed different expressions among six 4 lines and line 3 had the highest expression. Multiple physiological experiments showed that after cold stress treatment, both the conductivity and malondialdehyde (MDA) levels from transgenic plants were significantly lower than those of non-transgenic plants, whereas the content of betaine and the activity of superoxide dismutase, catalase, and peroxidase were higher than those from non-transgenic plants. These results suggest that expression of exogenous CodA gene significantly improved the cold stress tolerance of tropical water lilies through a wide range of physiological alterations. Our results currently expanded a six-latitude cultivating area of the tropical water lilies. These results not only illuminate the bright future for water lily breeding but will also facilitate the functional genomic studies.
机译:睡莲(睡莲)具有丰富的经济和文化价值。它们长成水生草本植物,分为两种生态类型:热带和强壮。尽管与强壮的睡莲相比,热带睡莲具有更多的观赏和药用价值,但由于种植面积有限,极大地阻碍了热带睡莲在园林绿化和药物用途方面的研究和利用。在北纬24.3度以上的地区,热带睡莲无法在冬季生存。在这里,第一次通过花粉管途径的转基因管道产生了睡莲。为了提高热带睡莲的耐冷胁迫性,通过花粉管转化将由冷胁迫诱导型启动子驱动的编码胆碱氧化酶(CodA)的基因转化为热带睡莲。在2015年至2017年的两个冬季(杭州北纬30.3°),测试了六个独立的转基因品系的存活率。 PCR和Southern blot检测表明CodA基因已整合到基因组中。逆转录PCR显示冷胁迫处理后诱导了CodA基因,进一步的实时定量PCR显示6个4系之间的表达不同,而3系中的表达最高。多项生理实验表明,冷胁迫处理后,转基因植物的电导率和丙二醛(MDA)水平均显着低于非转基因植物,而甜菜碱的含量以及超氧化物歧化酶,过氧化氢酶和过氧化物酶的活性均低于非转基因植物。高于非转基因植物。这些结果表明,通过广泛的生理变化,外源CodA基因的表达显着提高了热带睡莲的耐冷胁迫能力。我们的研究结果目前扩展了热带睡莲的六纬度种植面积。这些结果不仅阐明了睡莲育种的光明前景,而且还将促进功能基因组学研究。

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