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首页> 外文期刊>Australasian Plant Pathology >Hybridisation of Australian chickpea cultivars with wild Cicer spp. increases resistance to root-lesion nematodes (Pratylenchus thornei and P. neglectus).
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Hybridisation of Australian chickpea cultivars with wild Cicer spp. increases resistance to root-lesion nematodes (Pratylenchus thornei and P. neglectus).

机译:澳大利亚鹰嘴豆品种与野生 Cicer spp的杂交。增强了对根病变线虫(和 P。neglectus )的抗性。

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摘要

Australian and international chickpea (Cicer arietinum) cultivars and germplasm accessions, and wild annual Cicer spp. in the primary and secondary gene pools, were assessed in glasshouse experiments for levels of resistance to the root-lesion nematodes Pratylenchus thornei and P. neglectus. Lines were grown in replicated experiments in pasteurised soil inoculated with a pure culture of either P. thornei or P. neglectus and the population density of the nematodes in the soil plus roots after 16 weeks growth was used as a measure of resistance. Combined statistical analyses of experiments (nine for P. thornei and four for P. neglectus) were conducted and genotypes were assessed using best linear unbiased predictions. Australian and international chickpea cultivars possessed a similar range of susceptibilities through to partial resistance. Wild relatives from both the primary (C. reticulatum and C. echinospermum) and secondary (C. bijugum) gene pools of chickpea were generally more resistant than commercial chickpea cultivars to either P. thornei or P. neglectus or both. Wild relatives of chickpea have probably evolved to have resistance to endemic root-lesion nematodes whereas modern chickpea cultivars constitute a narrower gene pool with respect to nematode resistance. Resistant accessions of C. reticulatum and C. echinospermum were crossed and topcrossed with desi chickpea cultivars and resistant F4 lines were obtained. Development of commercial cultivars with the high levels of resistance to P. thornei and P. neglectus in these hybrids will be most valuable for areas of the Australian grain region and other parts of the world where alternating chickpea and wheat crops are the preferred rotation.Digital Object Identifier http://dx.doi.org/10.1007/s13313-011-0089-z
机译:澳大利亚和国际鹰嘴豆( Cicer arietinum )的品种和种质以及野生的一年生 Cicer spp。在温室实验中评估了初级和次级基因库中对根部线虫 Pratylenchus thornei 和 P的抗性水平。忽略。在重复的实验中,将品系在接种过iP的纯培养物的巴氏灭菌土壤中生长。 thornei 或 P。生长后16周,土壤和根中线虫的密度和线虫的种群密度均用作抗药性的量度。进行了组合的实验统计分析(对刺索氏疟原虫为9个,对P. neglectus试验为4个),并使用最佳线性无偏预测对基因型进行了评估。澳大利亚和国际鹰嘴豆品种在部分抗药性方面都具有相似的敏感性。鹰嘴豆的一级( C。reticulatum 和 C。echinospermum )和次级( C。bijugum )基因库的野生亲戚通常更多比商品鹰嘴豆品种对P都有抗性。 thornei 或 P。忽视或两者兼而有之。鹰嘴豆的野生近缘种可能已进化成对地方性根部病线虫具有抗性,而现代鹰嘴豆品种在线虫抗性方面构成了较窄的基因库。 C的抗性种质。网状和 C。将棘皮植物与德西鹰嘴豆品种进行杂交和顶交,获得抗性F 4 品系。具有高水平对磷抗性的商业品种的开发。 thornei 和 P。对于澳大利亚谷物地区和世界其他地区首选交替使用鹰嘴豆和小麦作物的轮作,这些杂种中的“ neglectus”将最有价值。数字对象标识符http://dx.doi.org/10.1007 / s13313-011-0089-z

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