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Developing temperate inbreds using tropical maize germplasm: Rationale, results, conclusions.

机译:利用热带玉米种质开发温带近交系:原理,结果,结论。

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Use of exotic germplasm in U.S. maize (Zea mays L.) hybrids increased almost 3-fold from 1984 to 1996, but use of tropical exotic germplasm still reached only 0.3% in 1996. The focus of this paper is intensive use of tropical germplasm in temperate areas, rather than the more commonly used backcross or introgression procedure that introduces small segments of tropical germplasm into a mostly temperate background. More specifically, can largely-tropical germplasm lead to improvement in polygenic traits such as yield, in addition to being a source of disease- and insect-resistance? Yield-trial data demonstrate that at least a few largely-tropical or completely-tropical inbreds can be crossed with domestic materials to produce topcross hybrids that are competitive with commercial hybrids. Similarly, a few GEM (Germplasm Enhancement of Maize) F2S2, 50%-tropical families have topcross yields at least equivalent to those of commercial hybrids. Development of temperate-adapted, largely-tropical inbreds usually requires a slower approach to homozygosity (Stringfield, 1974) than conventional ear-to-row selfing. Early selection within a variable exotic source is not necessary for developing partly-exotic inbreds, but variance component distributions among and within lines under development suggest that selection within the variable F2 would be helpful if only a small portion of the exotic variation is desirable.
机译:从1984年至1996年,外来种质在美国玉米(Zea mays L.)杂交种中的利用增加了近3倍,但热带外来种质的利用在1996年仍然仅达到0.3%。温带地区,而不是将热带种质的小片段引入大部分温带背景的更常用的回交或渗入过程。更具体地说,除了是疾病和昆虫抗药性的来源以外,很大程度上热带的种质还能导致多基因性状如产量的提高吗?产量试验数据表明,至少可以将一些基本为热带或完全热带的近交自交系与国内材料杂交,以生产可与商业杂种竞争的顶交杂种。类似地,一些GEM(玉米种质增强)F2S2、50%的热带家庭的透交产量至少与商业杂交的产量相当。温带适应性,很大程度上是热带性近交系的发育通常需要比常规的耳朵到行自交慢的纯合性方法(Stringfield,1974)。对于发育部分外来自交系而言,在可变的外来来源中进行早期选择不是必需的,但是在发育中的品系之间和之内的方差分量分布表明,如果仅需要外来变异的一小部分,则在变量F2中进行选择将是有帮助的。

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