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首页> 外文期刊>Agronomy for Sustainable Development >Hybridization, fertility and herbicide resistance of hybrids between wheat and Aegilops biuncialis
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Hybridization, fertility and herbicide resistance of hybrids between wheat and Aegilops biuncialis

机译:小麦与埃及姬菇杂种的杂交,育性和抗除草剂作用。

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Genetically modified crops are now grown worldwide and their area of cultivation is increasing yearly. Although transgenic crops offer benefits, several risks have been identified associated with their cultivation. One such risk is their potential forhybridization with wild species, and weed-related species, and the possible escape and subsequent introgression of the transgenes into these species. Transgenic wheat varieties are being successfully developed and field-tested, primarily, on herbicide-tolerant wheat. If genetically modified herbicide-tolerant wheat is commercialized in the near future this may result in the escape of the inserted gene from the crop and its incorporation into closely related wild species. This fact could give a competitive advantage to the recipients. For risk assessment purposes it is necessary to determine the frequency of crop-wild transgene flow and the fertility of hybrids. Most wheat-wild hybridization studies have been conducted with the purpose of breeding withwheat acting as the female parent in crosses, but very limited information is available focused on hybrid production with wheat as the male parent. Here, we studied (1) the potential hybridization between wheat and the wild related Aegilops biuncialis,and (2) the fertility of the hybrids. Hybridization was quantified in crossing experiments over 5 years in a greenhouse using three wheat cultivars as pollen donors and emasculated plants of one A biuncialis population as pollen recipients. Hybridization was estimated as the ratio of number of seeds set to the number of flowers pollinated in percentage terms. Our results show that hybrids between wheat and A. biuncialis are formed easily, with hybridization rates ranging from 8.5 to 75%. The fertilityof the hybrids, measured as the number of seeds per spikelet (%), was also evaluated by self-pollination and by backcrossing. Most of the hybrids were self-sterile but 11 F_2 seeds were obtained from 191 A. biuncialis-v/heat hybrids. However, backcrossing seeds were found in all BC_1 combinations at average rates of 3.7% (0-19.6%) for greenhouse experiments, and 4.6% (0-28.9%) for field experiments. In subsequent generations, although few plants were available, BCiFi exhibited a certain degree of fertility, up to 3.57-% with the cultivar Chinese Spring. F_1 and BC_1 were also checked for resistance to the herbicide difenzoquat that was present in the parental wheat, while A. biuncialis was susceptible. Difenzoquat resistance was maintained in the FI hybrids and also in the derived BC_1 plants. This information on hybridization and fertility of the first A. biuncialis-wheat hybrid generations could be an initial step to assess the relative advantage of hybridization in the adaptive ability of A. biuncialis and hybrid derivatives and the impact thereof on the environment and agricultural system. This needs to be studied in depth when wheat and A. biuncialis share habitat.
机译:转基因作物目前在世界范围内种植,其种植面积逐年增加。尽管转基因作物可带来好处,但已发现与其种植相关的若干风险。其中一种风险是它们可能与野生物种和与杂草相关的物种杂交,以及转基因可能逃逸以及随后渗入这些物种。主要在耐除草剂的小麦上成功开发了转基因小麦品种并进行了田间试验。如果转基因耐除草剂的小麦在不久的将来商业化,这可能会导致插入的基因从农作物中逃逸,并掺入紧密相关的野生物种中。这个事实可以给接收者带来竞争优势。为了进行风险评估,必须确定农作物野生转基因流的频率和杂种的育性。多数小麦-野生杂交研究的目的是在杂交中以小麦作为母本进行育种,但是关于以小麦为母本的杂交生产的信息非常有限。在这里,我们研究了(1)小麦与野生相关的埃及伊蚊的潜在杂交,以及(2)杂种的育性。在3个小麦品种的花粉供体和一个A biuncialis种群的去皮植物作为花粉接受者的温室中,在5年的交叉实验中对杂交进行了定量。杂交估计为种子集数与授粉花数的百分比。我们的研究结果表明,小麦和比目鱼A. biuncialis之间的杂交很容易形成,杂交率在8.5%至75%之间。还通过自花授粉和回交评估了杂种的育性,以每个小穗的种子数(%)衡量。大多数杂种是自育的,但是从191个双歧杆菌-v /热杂种中获得了11个F_2种子。但是,在所有BC_1组合中,对于温室试验,发现回交种子的平均比率为3.7%(0-19.6%),对于田间试验,发现比率为4.6%(0-28.9%)。在随后的几代中,尽管几乎没有可用的植物,但BCiFi表现出一定程度的育性,在中国春的栽培中达到3.57%。还检查了F_1和BC_1对亲本小麦中存在的除草剂苯草灭草的抗药性,而比埃尼乌斯不敏感。 FI杂种和衍生的BC_1植物中均维持了敌草快的抗性。有关第一双双歧杆菌-小麦杂交一代的杂交和育性的信息可能是评估杂交在双双歧杆菌和杂种衍生物的适应能力及其对环境和农业系统的影响方面的相对优势的第一步。当小麦和A. biuncialis共享栖息地时,需要对此进行深入研究。

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