首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Molecular cytogenetic identification of B genome chromosomes linked to blackleg disease resistance in Brassica napus x B. carinata interspecific hybrids
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Molecular cytogenetic identification of B genome chromosomes linked to blackleg disease resistance in Brassica napus x B. carinata interspecific hybrids

机译:甘蓝型油菜x Carcinata种间杂种与黑腿病抗性相关的B基因组染色体的分子细胞遗传学鉴定

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摘要

Provide evidence that the Brassica B genome chromosome B3 carries blackleg resistance gene, and also the B genome chromosomes were inherited several generations along with B. napus chromosomes. Blackleg disease caused by fungus Leptosphaeria maculans causes significant yield losses in Brassica napus. Brassica carinata possesses excellent resistance to this disease. To introgress blackleg resistance, crosses between B. napus cv. Westar and B. carinata were done. The interspecific-hybrids were backcrossed twice to Westar and self-pollinated three times to produce BC2S3 families. Doubled haploid lines (DH1) were produced from one blackleg resistant family. SSR markers were used to study the association between B genome chromosome(s) and blackleg resistance. The entire B3 chromosome of B. carinata was associated with blackleg resistance in DH1. A second DH population (DH2) was produced from F(1)s of resistant DH1 lines crossed to blackleg susceptible B. napus cv. Polo where resistance was found to be associated with SSR markers from the middle to bottom of the B3 and top of the B8 chromosomes. The results demonstrated that the B3 chromosome carried gene(s) for blackleg resistance. Genomic in situ hybridization (GISH) and GISH-like analysis of the DH2 lines revealed that susceptible lines, in addition to B. napus chromosomes, possessed one pair of B genome chromosomes (2n = 40), while resistant lines had either one (2n = 40) or two pairs (2n = 42) of B chromosomes. The molecular and GISH data suggested that the B chromosome in the susceptible lines was B7, while it was difficult to confirm the identity of the B chromosomes in the resistant lines. Also, B chromosomes were found to be inherited over several generations along with B. napus chromosomes.
机译:提供证据表明,甘蓝型油菜B基因组染色体B3携带黑腿病抗性基因,并且B基因组染色体与甘蓝型油菜染色体一起遗传了几代。由真菌蓝斑小球菌引起的黑腿病在甘蓝型油菜中引起明显的产量损失。芸苔对这种疾病具有极好的抵抗力。为了渗入黑腿病的抵抗力,在油菜双歧杆菌之间杂交。 Westar和B. carinata完成了。种间杂种回交两次到Westar,自花授粉三次,产生BC2S3家族。双倍单倍体系(DH1)从一个抗黑腿病的家庭生产。 SSR标记用于研究B基因组染色体与黑腿病抗性之间的关联。 Carinata B. carinata的整个B3染色体与DH1中的黑腿病抗性有关。第二个DH种群(DH2)是由抗性DH1系的F(1)杂交到易受黑腿病的油菜双歧杆菌产生的。在B3染色体的中部和底部以及B8染色体的顶部发现抗性与SSR标记相关的Polo。结果表明,B3染色体带有抗黑腿病基因。对DH2系进行基因组原位杂交(GISH)和类似GISH的分析表明,除甘蓝型油菜染色体外,易感系还拥有一对B基因组染色体(2n = 40),而抗性系则有一个(2n = 40)或两对(2n = 42)B染色体。分子和GISH数据表明,易感品系中的B染色体是B7,而难以确定抗性品系中B染色体的身份。另外,发现B染色体与B. napus染色体一起遗传了数代。

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