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首页> 外文期刊>HortScience >Resistance to Gummy Stem Blight in Melon (Cucumis melo L.) Germplasm and Inheritance of Resistance from Plant Introductions 157076, 420145, and 323498
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Resistance to Gummy Stem Blight in Melon (Cucumis melo L.) Germplasm and Inheritance of Resistance from Plant Introductions 157076, 420145, and 323498

机译:甜瓜(Cucumis melo L.)种质对胶粘枯萎病的抗性及植物引种的抗性遗传157076、420145和323498

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Gummy stem blight incited by the fungus Didymella bryoniae is a major disease of melons worldwide. The objectives of the present study were to critically evaluate melon (Cucumis melo L.) germplasm for resistance to D. bryoniae and to characterize thegenetics of resistance in the resistant accessions. Two hundred sources of germplasm (plant introduction accessions, cultivars, breeding lines, landraces, and wild relatives) were screened against a single highly virulent isolate (IS25) of D. bryoniae ina plastic tunnel. The genetics of resistance to D. bryoniae was studied in three crosses between plant introductions 157076, 420145, and 323498, resistant parents that were fairly adapted (flowering, fruiting, powdery mildew tolerance) to Nanjing conditions, and plant introductions 268227, 136170, and NSL 30032 susceptible parents, respectively. Six populations of each cross (susceptible parent, resistant parent, F_(19) F_2, the two reciprocal backcrosses) were analyzed for their responses to D. bryoniae. Seedlings in both studies were inoculated with a spore suspension (5 x 10~5 spores/mL~(-1)) of D. bryoniae at the four to six true-leaf stages and assessed for leaf and stem damage at 7, 14, and 21 d postinoculation. Results of germplasm screening indicated most germplasms reported as resistant elsewhere were confirmed resistant under our conditions. However, some plant introductions identified as highly resistant elsewhere were susceptible under our conditions, the most interesting being plant introduction 482399. This plant introduction that was considered resistant was highly susceptible in our study. We also identified other sources of resistance not reported previously, for example, JF1; a wild Cucumis from the highlands of Kenya was rated highly resistant. Analysis of segregation of F_1, F_2, and backcross generations of the three crosses indicated that each of the three plant introductions carry a single dominant gene for resistance to the D. bryoniae.
机译:枯草芽孢杆菌引起的树胶茎枯萎病是全世界甜瓜的主要疾病。本研究的目的是严格评估甜瓜(Cucumis melo L.)种质对丁酸杆菌的抗性,并鉴定抗性种质的抗性遗传。在一个塑料隧道中,针对单一的强力芽孢杆菌的高毒分离株(IS25),筛选了200种种质资源(植物引种,栽培品种,育种系,地方品种和野生近缘种)。在三个杂交试验中研究了对布鲁氏菌的抗性遗传,这些杂交之间有:植物引种157076、420145和323498,对南京条件相当适应的抗性亲本(开花,结果,抗白粉病)和植物引种268227、136170和NSL 30032分别是易感父母。分析了每个杂交的六个种群(敏感亲本,抗性亲本,F_(19)F_2,两个相互回交),以了解它们对黑纹病菌的反应。两项研究中的幼苗均在4至6个真叶阶段接种了D. Bryoniae的孢子悬浮液(5 x 10〜5孢子/ mL〜(-1)),并在7、14、14评估了叶片和茎的损害接种后21天。种质筛选结果表明,在我们的条件下,其他地方报道的大多数种质均被证实具有抗性。但是,在我们的条件下,某些在其他地方被确定为高抗性的植物引种易感,最有趣的是植物引入482399。在我们的研究中,这种被认为具有抗性的植物引种高度易感。我们还确定了以前未报道的其他抗药性来源,例如,JF1。来自肯尼亚高地的野生黄瓜被评为高度抗药性。对三个杂交品种的F_1,F_2和回交世代的分离分析表明,三个植物引种中的每一个都携带有一个单一的显性基因,以抵抗Bryoniae。

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