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The sweet potato sporamin promoter confers high-level phytase expression and improves organic phosphorus acquisition and tuber yield of transgenic potato

机译:甘薯sporamin启动子赋予高水平植酸酶表达并提高转基因马铃薯的有机磷获取量和块茎产量

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摘要

The sweet potato sporamin promoter was used to control the expression in transgenic potato of the E. coli appA gene, which encodes a bifunctional enzyme exhibiting both acid phosphatase and phytase activities. The sporamin promoter was highly active in leaves, stems and different size tubers of transgenic potato, with levels of phytase expression ranging from 3.8 to 7.4% of total soluble proteins. Phytase expression levels in transgenic potato tubers were stable over several cycles of propagation. Field tests showed that tuber size, number and yield increased in transgenic potato. Improved phosphorus (P) acquisition when phytate was provided as a sole P source and enhanced microtuber formation in cultured transgenic potato seedlings when phytate was provided as an additional P source were observed, which may account for the increase in leaf chloroplast accumulation (important for photosynthesis) and tuber yield of field-grown transgenic potato supplemented with organic fertilizers. Animal feeding tests indicated that the potato-produced phytase supplement was as effective as a commercially available microbial phytase in increasing the availability of phytate-P to weanling pigs. This study demonstrates that the sporamin promoter can effectively direct high-level recombinant protein expression in potato tubers. Moreover, overexpression of phytase in transgenic potato not only offers an ideal feed additive for improving phytate-P digestibility in monogastric animals but also improves tuber yield, enhances P acquisition from organic fertilizers, and has a potential for phytoremediation.
机译:甘薯sporamin启动子用于控制大肠杆菌appA基因在转基因马铃薯中的表达,该基因编码具有酸性磷酸酶和植酸酶活性的双功能酶。 Sporamin启动子在转基因马铃薯的叶,茎和不同大小的块茎中具有很高的活性,其植酸酶表达水平为总可溶性蛋白的3.8%至7.4%。转基因马铃薯块茎中植酸酶的表达水平在几个繁殖周期内保持稳定。田间试验表明,转基因马铃薯的块茎大小,数量和产量增加。当以植酸盐作为唯一的P源时改善了磷的吸收,而以植酸作为另外的P源时在培养的转基因马铃薯幼苗中提高了马铃薯的块茎形成,这可能解释了叶绿体积累的增加(对于光合作用很重要) )和添加有机肥料的田间种植转基因马铃薯的块茎产量。动物饲养试验表明,马铃薯生产的植酸酶补充剂在增加断奶仔猪植酸酶P的利用率方面与市售的微生物植酸酶一样有效。这项研究表明,sporamin启动子可以有效指导马铃薯块茎中的高水平重组蛋白表达。此外,转基因马铃薯中植酸酶的过表达不仅为提高单胃动物中植酸磷的消化率提供了理想的饲料添加剂,而且还提高了块茎产量,增强了从有机肥料中获取磷的可能性,并具有植物修复的潜力。

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