首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Divergent selection in a maize population for germination at low temperature in controlled environment: study of the direct response, of the trait inheritance and of correlated responses in the field.
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Divergent selection in a maize population for germination at low temperature in controlled environment: study of the direct response, of the trait inheritance and of correlated responses in the field.

机译:在受控环境下低温发芽的玉米种群中的发散选择:田间直接响应,性状遗传和相关响应的研究。

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摘要

Improving cold tolerance in maize (Zea mays L.) is an important breeding objective, allowing early sowings which result in many agronomic advantages. Using as source the F2 population of B73 x IABO78 single cross, we previously conducted four cycles of divergent recurrent selection for high (H) and low (L) cold tolerance level, evaluated as the difference (DG) between germination at 9.5 degrees C and at 25 degrees C in the germinator. Then, we pursued the divergent selection in inbreeding from S1 to S4. This research was conducted to study (1) the direct response to selection (by testing ten S4 L and ten S4 H lines), (2) the trait inheritance (in a complete diallel scheme involving four L and four H lines), (3) the associated responses for cold tolerance in the field (at early and delayed sowings) and (4) the responses for other traits, by testing the ten L and the ten H lines at usual sowing. Selection was effective, leading to appreciable and symmetric responses for DG. Variation among crosses was mainly due to additive effects and the ability to predict hybrid DG based on parental lines DG was appreciable. Associated responses for cold tolerance traits in the field were noticeable, though the relationship between DG and these traits was not outstanding. High tolerance was also associated with early flowering, short plants, less leaves, low kernel moisture, red and thin cob, and flint kernels. These divergently selected lines can represent valuable materials for undertaking basic studies and breeding works concerning cold tolerance.
机译:提高玉米(Zea mays L.)的耐寒性是重要的育种目标,允许早期播种,从而带来许多农艺优势。使用B73 x IABO78单交的F 2 种群作为源,我们先前针对高(H)和低(L)耐寒性水平进行了四个不同的轮回选择,评估为差异(DG )在9.5摄氏度和25摄氏度的发芽机中发芽。然后,我们在从S 1 到S 4 的近交中进行发散选择。进行这项研究以研究(1)对选择的直接反应(通过测试10条S 4 L和10条S 4 H系),(2)性状遗传(在涉及4条L和4条H系的完整Diallel方案中)(3)通过测试10条L和平时播种十行。选择是有效的,导致DG产生明显且对称的响应。杂交之间的差异主要归因于加性效应,并且基于亲本DG预测杂种DG的能力是可观的。尽管DG与这些性状之间的关系并不明显,但该领域对耐寒性状的相关反应还是很明显的。高耐受性还与早花,短植,叶片少,籽粒水分低,红色和稀疏的穗轴以及fl石籽粒有关。这些不同选择的品系可代表进行耐寒性基础研究和育种工作的有价值的材料。

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