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首页> 外文期刊>Breeding science >Towards breeding of rapeseed (Brassica napus) with alien cytoplasm and powdery mildew resistance from Ethiopian mustard (Brassica carinata)
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Towards breeding of rapeseed (Brassica napus) with alien cytoplasm and powdery mildew resistance from Ethiopian mustard (Brassica carinata)

机译:从埃塞俄比亚芥末(Brassica Carinata)的外星人细胞质和粉状霉菌抗性培育油菜籽(Brassica Napus)

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摘要

Powdery mildew (PM), caused by Erysiphe cruciferarum , is an epidemic of oil rapeseed ( Brassica napus L.) growing worldwide, but PM resistant germplasm is rare in this species. We screened 102 accessions of B. napus and other cruciferous species and found an Ethiopian mustard ( Brassica carinata ) cultivar ‘White flower’ immune to PM in both the field and greenhouse. Outcrossing in the female parent ‘White flower’ was promoted by using a chemical gametocide tribenuron-methyl, to obtain hybrid seeds of distant hybridization with an elite B. napus cultivar ‘Zhongshuang11’. Three true F1 hybrids with B. carinata cytoplasm were obtained without using embryo rescue, which showed complete male sterility and light yellow petals. The hybrid plants and the progenies derived from backcrossing were validated using morphological traits, seed quality, and molecular markers. Five lines in the BC1F3 generation, named ‘W7-1’, ‘W7-4’, ‘W7-6’, ‘W8-1’, and ‘W8-3’, and one BC2F2 line ‘W3PS-1’, whose young leaf was yellow green, were identified to be resistant or moderately resistant to PM. The seed quality and some morphological traits of these lines resembled the parent ‘Zhongshuang11’, indicating that the resistance gene(s) has been preliminarily introduced into B. napus .
机译:由森西十字花植物引起的白粉病(PM)是全球生长的油菜籽(Brassica Napus L.)的疫情,但PM在该物种中耐抗性种质罕见。我们筛选了B. Napus和其他十字食病种类的102种进入,并发现了一个埃塞俄比亚芥末(Brassica Carinata)品种“白花”在田间和温室中的PM往PM。通过使用化学品族聚苯乙烯呋喃 - 甲基促进了女性父母的“白花”,以获得与精英B. Nopsshuang11'的遥远杂交的杂种种子。在不使用胚胎救援的情况下获得三种真正的F1杂交种与B. carinata细胞质,显示完全雄性不育和浅黄色花瓣。使用形态特征,种子质量和分子标记验证杂交植物和源自远程的后代。 BC1F3代的五行,名为“W7-1”,“W7-4”,“W7-6”,“W8-1”和“W8-3”,以及一个BC2F2线“W3PS-1”,其幼叶是黄绿色的,被识别为耐药或抗PM。这些系列的种子质量和一些形态特征类似于父母的“中帅11”,表明抗性基因已预先将抗植物引入B. Napus。

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