首页> 外文会议>Eleventh International Dryland Development Conference: Global Climate Change and its Impact on Food amp; Energy Security in the Drylands >Chromosome elimination by super-wide hybridization between wheat or oat and pearl millet:CENH3 dynamics in the hybrid embryo cells
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Chromosome elimination by super-wide hybridization between wheat or oat and pearl millet:CENH3 dynamics in the hybrid embryo cells

机译:小麦或燕麦与珍珠粟超宽杂交消除染色体:杂种胚细胞中的CENH3动力学

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Sustainable production of food is threatened by global climate change,expansion of the world population and water resource shortage.Plant breeding for the sustainable food production is performed all over the world.In wheat breeding,germplasm enhancement and development of genes to combat climate change and water shortage is required.Pearl millet(family Poaceae,sub-family Panicoideae)is a drought and salinity tolerant crop,and thus,it is important in the Africa and Indian semi-arid regions.Wheat and oat(family Poaceae,sub-family Pooideae)are important crops for human and animals.However,they do not have a strong tolerance to drought and salinity.We intended to introduce the millet tolerant genes to wheat and oat plants by super-wide cross method.First we crossed wheat and oat with pearl millet and observed the dynamics of millet chromosomes in the hybrid embryo cells seven days after pollination using the fluorescence in situ hybridization(FISH)method and immunostaining method with CENH3(centromere histone H3)antibody.In the cross between oat and pearl millet,all pearl millet chromosomes were retained,and CENH3 were located in the oat and pearl millet centromere.As a result,we could obtain true oat-pearl millet hybrids,but the hybrids showed sever necrosis.On the other hand,in the cross between wheat and pearl millet,the pearl millet chromosomes were gradually eliminated during embryogenesis.The eliminated chromosomes showed sever chromosome aberrations,such as breakage,chromosome bridge,non-disjunction and micronuclei formation.However,CENH3 were localized both on wheat and pearl millet centromere.These results indicated that the cause of the chromosome elimination in wheatpearl millet hybrids was not simply explained as a malfunction of the kinetochore binding to the spindles.The wheat and oat plants with a pearl millet chromosome may be used as breeding materials in wheat improvement for harsh environmental condition.
机译:粮食的可持续生产受到全球气候变化,世界人口扩大和水资源短缺的威胁。在全世界范围内进行可持续粮食生产的植物育种。小米(禾本科,Pan科)是一种耐旱耐盐的作物,因此,在非洲和印度的半干旱地区很重要。 o科是人类和动物的重要农作物,但是它们对干旱和盐分的耐受性不强。我们打算通过超宽杂交方法将耐谷子基因导入小麦和燕麦植物。荧光原位杂交(CISH)法和CEN免疫染色法观察珍珠小米授粉后7天杂种胚胎细胞中小米染色体的动态H3(着丝粒组蛋白H3)抗体。在燕麦和珍珠粟的杂交中,所有珍珠粟染色体都被保留下来,CENH3位于燕麦和珍珠粟着丝粒中。因此,我们可以获得真正的燕麦-珍珠小米杂种,另一方面,在小麦和小米的杂交中,小米的染色体在胚发生过程中逐渐被消除。消除的染色体显示出严重的染色体畸变,如断裂,染色体桥,不分离和然而,CENH3定位在小麦和珍珠小米着丝粒上。这些结果表明,小麦珍珠小米杂种中染色体消除的原因并不能简单地解释为动粒体与纺锤体结合的故障。小麦和燕麦植物带有珍珠小米染色体的人可以在恶劣的环境条件下用作小麦改良的育种材料。

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