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具有超雌 1 型闭花受精突变的闭花受精水稻系的农艺性状和基因 containment 能力。

Agronomic traits and gene containment capability of cleistogamous rice lines with the superwoman1-cleistogamy mutation.

机构信息

Hokuriku Research Center, NARO (National Agriculture and Food Research Organization) Agricultural Research Center , 1-2-1 Inada, Joetsu, Niigata 943-0193, Japan.

出版信息

Breed Sci. 2012 Jun;62(2):124-32. doi: 10.1270/jsbbs.62.124. Epub 2012 Jun 19.

Abstract

Pollen-mediated transgene flow is a major concern for the production of genetically modified (GM) rice. Cleistogamy is a useful tool for preventing this form of gene flow. We previously identified the cleistogamous rice mutant superwoman1-cleistogamy (spw1-cls) and determined its molecular genetic mechanism. In the present study, we cultivated spw1-cls over five years to examine effects of cleistogamy on agronomic traits. Simultaneously, we cultivated cleistogamous backcross lines created by continuous backcrossing with "Yumeaoba" (a japonica cultivar) as the recurrent parent and by application of a DNA marker. In these experimental cultivations, spw1-cls and its backcross lines showed almost equal or slightly lower, but acceptable, agronomic traits compared with each control line. We also conducted natural crossing tests in paddy fields to assess the gene containment capability of spw1-cls. In a series of field experiments, there was no natural crossing between spw1-cls (pollen donor) and pollen recipient lines, but the wild-type donor and recipient lines were crossed. Thus, the cleistogamy of the spw1-cls mutation is able to inhibit natural crossing effectively, without significant loss of commercial benefits, such as yield. We conclude that spw1-cls cleistogamy is a practical tool for gene containment in GM rice cultivation.

摘要

花粉介导的转基因流是生产转基因(GM)水稻的主要关注点。闭花受精是防止这种基因流动的有用工具。我们之前鉴定了闭花受精的水稻突变体超级女人 1-闭花受精(spw1-cls),并确定了其分子遗传机制。在本研究中,我们连续五年种植 spw1-cls,以研究闭花受精对农艺性状的影响。同时,我们种植了通过连续回交与“Yumeaoba”(粳稻品种)作为轮回亲本,并应用 DNA 标记,由 spw1-cls 构建的闭花回交系。在这些实验种植中,spw1-cls 及其回交系与各自的对照系相比,表现出几乎相等或略低但可接受的农艺性状。我们还在稻田进行了自然杂交试验,以评估 spw1-cls 的基因 containment 能力。在一系列田间试验中,spw1-cls(花粉供体)和花粉受体系之间没有自然杂交,但野生型供体和受体系发生了杂交。因此,spw1-cls 突变的闭花受精能够有效地抑制自然杂交,而不会显著损失产量等商业利益。我们得出结论,spw1-cls 的闭花受精是 GM 水稻种植中基因 containment 的实用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb91/3405965/1fb1c8e41f0b/bs-62-124f1.jpg

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