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首页> 外文期刊>Euphytica >The mechanism of genetic control for low soil nitrogen (N) tolerance in common beans (Phaseolus vulgaris L.)
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The mechanism of genetic control for low soil nitrogen (N) tolerance in common beans (Phaseolus vulgaris L.)

机译:普通豆(Phaseolus vulgaris L.)的低土壤氮(N)耐受性的遗传控制机制。

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摘要

The study was conducted to determine the mode of inheritance and the genetic mechanisms associated with bean nitrogen use efficiency under low soil nitrogen. Eight widely grown and well adapted low soil N tolerant lines (CAL143, CIM9314-36, and AFR708) and non-tolerant varieties (E5, E8, GLP-2, CAL96, and SCAM80-CM/15) were crossed in a half diallel mating design. The parents and their F1 generations were evaluated under low soil N and moderate soil N conditions. Significant genetic differences were observed for basal root length, root dry weight, nodule numbers, leaf area and grain yield for both N conditions. Inheritance of the traits associated with better performance under low soil N was found to be under both additive fixable and non-fixable genetic effects. Genotypes that had well-developed basal root systems performed better than those with less developed basal roots. F1 hybrids from crosses between low N tolerant and non-tolerant parents performed better under nitrogen stressed conditions compared with those between susceptible parents. Hybrids involving CAL143 as one of the parents showed high levels of tolerance to low soil nitrogen conditions. Among parents, CAL143 showed the best performance for basal root length, root dry weight, nodule numbers, leaf area, and grain yield. This parent had highly significant GCA effects for the traits under both N conditions, except basal root length which was significant at Kabete and non-significant leaf area at Thika. The results show that CAL143 would be a good parent to use in a low soil N bean breeding program.
机译:该研究旨在确定低土壤氮环境下大豆氮素利用效率的遗传模式和遗传机制。将八个广泛生长且适应性良好的低土壤耐氮品系(CAL143,CIM9314-36和AFR708)和非耐性品种(E5,E8,GLP-2,CAL96和SCAM80-CM / 15)在半透析液中杂交交配设计。在低土壤氮和中等土壤氮条件下评估亲本及其F 1 世代。在两种氮条件下,基部根长,根干重,根瘤数,叶面积和籽粒产量均观察到显着的遗传差异。在低土壤氮下,与更好的性能相关的性状的遗传被发现具有可加和不加遗传作用。具有发达的基部根系的基因型表现优于具有较低的基部根部的基因型。低氮耐性和非耐性亲本间杂交的F 1 杂种在氮胁迫条件下的表现要好于易感亲本。涉及CAL143作为亲本之一的杂种表现出对低土壤氮素条件的高度耐受性。在亲本中,CAL143在基部根长,根干重,根瘤数,叶面积和籽粒产量方面表现最佳。在两个氮条件下,该亲本对这些性状均具有极显着的GCA效应,除了在Kabete显着的基部根长和在Thika的无明显叶面积的基部根长。结果表明,CAL143是低土壤N豆育种计划的良好父本。

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