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田间种植的表达燕麦基因的转基因富油小麦籽粒和面粉组分的特性分析

Characterisation of Grains and Flour Fractions from Field Grown Transgenic Oil-Accumulating Wheat Expressing Oat .

作者信息

Snell Per, Wilkinson Mark, Taylor Gavin J, Hall Stephen, Sharma Shrikant, Sirijovski Nick, Hansson Mats, Shewry Peter R, Hofvander Per, Grimberg Åsa

机构信息

Department of Plant Breeding, Swedish University of Agricultural Sciences, 23456 Alnarp, Sweden.

DLF Beet Seed AB, 26191 Landskrona, Sweden.

出版信息

Plants (Basel). 2022 Mar 26;11(7):889. doi: 10.3390/plants11070889.

Abstract

Wheat ( L.) is one of the major staple crops in the world and is used to prepare a range of foods. The development of new varieties with wider variation in grain composition could broaden their use. We characterized grains and flours from oil-accumulating transgenic wheat expressing the oat ( L.) endosperm () grown under field conditions. Lipid and starch accumulation was determined in developing caryopses of -wheat and X-ray microtomography was used to study grain morphology. The developing caryopses of -wheat grains had increased triacylglycerol content and decreased starch content compared to the control. Mature -wheat grains also had reduced weight, were wrinkled and had a shrunken endosperm and X-ray tomography revealed that the proportion of endosperm was decreased while that of the aleurone was increased. Grains were milled to produce two white flours and one bran fraction. Mineral and lipid analyses showed that the flour fractions from the wheat were contaminated with bran, due to the effects of the changed morphology on milling. This study gives a detailed analysis of grains from field grown transgenic wheat that expresses a gene that plays a central regulatory role in carbon allocation and significantly affects grain composition.

摘要

小麦(L.)是世界主要粮食作物之一,可用于制作多种食品。培育谷物成分差异更大的新品种可以扩大其用途。我们对在田间条件下生长的表达燕麦(L.)胚乳()的富油转基因小麦的籽粒和面粉进行了表征。测定了转基因小麦发育中的颖果中的脂质和淀粉积累情况,并使用X射线显微断层扫描技术研究了籽粒形态。与对照相比,转基因小麦发育中的颖果三酰甘油含量增加,淀粉含量降低。成熟的转基因小麦籽粒重量也减轻,有皱纹,胚乳萎缩,X射线断层扫描显示胚乳比例降低而糊粉层比例增加。将籽粒磨粉得到两种白面粉和一种麸皮组分。矿物质和脂质分析表明,由于形态变化对研磨的影响,转基因小麦的面粉组分被麸皮污染。本研究对田间种植的转基因小麦籽粒进行了详细分析,该转基因小麦表达一种在碳分配中起核心调节作用并显著影响籽粒成分的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1daa/9002947/aa085e674fd4/plants-11-00889-g001.jpg

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