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菜豆宽窄杂交组合中早、晚期叶斑病抗性的遗传

Inheritance of Early and Late Ascochyta Blight Resistance in Wide Crosses of Chickpea.

机构信息

Department of Field Crops, Harran University, Sanliurfa 63100, Turkey.

Biosciences Department, Durham University, Durham DH1 3LE, UK.

出版信息

Genes (Basel). 2023 Jan 26;14(2):316. doi: 10.3390/genes14020316.

Abstract

Chickpea () is a globally important food legume but its yield is negatively impacted by the fungal pathogen Ascochyta blight () causing necrotic lesions leading to plant death. Past studies have found that Ascochyta resistance is polygenic. It is important to find new resistance genes from the wider genepool of chickpeas. This study reports the inheritance of Ascochyta blight resistance of two wide crosses between the cultivar Gokce and wild chickpea accessions of and under field conditions in Southern Turkey. Following inoculation, infection damage was scored weekly for six weeks. The families were genotyped for 60 SNPs mapped to the reference genome for quantitative locus (QTL) mapping of resistance. Family lines showed broad resistance score distributions. A late responding QTL on chromosome 7 was identified in the family and three early responding QTLs on chromosomes 2, 3, and 6 in the family. Wild alleles mostly showed reduced disease severity, while heterozygous genotypes were most diseased. Interrogation of 200k bp genomic regions of the reference CDC Frontier genome surrounding QTLs identified nine gene candidates involved in disease resistance and cell wall remodeling. This study identifies new candidate chickpea Ascochyta blight resistance QTLs of breeding potential.

摘要

鹰嘴豆()是一种全球重要的食用豆类,但它的产量受到真菌病原体豆壳球腔菌()的负面影响,导致坏死病变,导致植物死亡。过去的研究发现,豆壳球腔菌抗性是多基因的。从更广泛的鹰嘴豆基因库中寻找新的抗性基因非常重要。本研究报告了在土耳其南部田间条件下,栽培品种 Gokce 与野生鹰嘴豆品系 和 之间的两个广泛杂交种对豆壳球腔菌的抗性遗传。接种后,每周对感染损伤进行评分,共 6 周。对 60 个 SNP 进行了基因型分析,这些 SNP 被映射到参考基因组上,用于抗性的数量性状位点(QTL)作图。家系表现出广泛的抗性评分分布。在 家系中鉴定到 7 号染色体上的一个迟发响应 QTL,在 家系中鉴定到 2、3 和 6 号染色体上的三个早发响应 QTL。野生等位基因大多表现出降低的疾病严重程度,而杂合基因型则最易患病。对 QTL 周围的参考 CDC Frontier 基因组的 200k bp 基因组区域进行分析,确定了九个与疾病抗性和细胞壁重塑有关的基因候选物。本研究鉴定了具有育种潜力的新的鹰嘴豆壳球腔菌抗性 QTL。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b5f/9957483/cf45940f20fc/genes-14-00316-g001.jpg

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