Misión Biológica de Galicia, CSIC, PO box 28, 36080 Pontevedra, Spain.
Theor Appl Genet. 2012 May;124(7):1183-91. doi: 10.1007/s00122-011-1778-2. Epub 2012 Jan 4.
Reciprocal recurrent selection (RRS) was proposed for simultaneously improving two populations and their cross. A modification of the classical full-sib RRS (FS-RRS) was proposed in which the performance of full-sibs and S(2) families is combined in a selection index (FS-S(2)-RRS). The Mediterranean corn borer (MCB) is the main corn borer species in the Mediterranean and adjacent areas and produces important yield losses. We started two RRS programs (FS-RRS and FS-S(2)-RRS) from the same maize population in which the selection criterion was grain yield under artificial infestation with MCB eggs. Original populations, two cycles of selection derived from them by both RRS methods, and population crosses were evaluated under MCB attack and under insecticide treatment in three different environments. The objective was to compare the efficiency of the FS-RRS and the FS-S(2)-RRS methods for improving grain yield. We found that the FS-S(2)-RRS method was successful for improving the yield of the population cross under optimum conditions (the regression coefficient over cycles was b = 0.87** Mg ha(-1) cycle(-1)) without losing yield under high pressure of MCB attack (b = 0.07). On the contrary, FS-RRS failed to improve the yield of the population cross under optimum conditions (b = 0.65) and tended to decrease the yield under high levels of MCB attack (b = -0.26). We conclude that for developing high yielding and stable varieties, FS-S(2)-RRS is more efficient than the classical FS-RRS method.
互交轮回选择(RRS)被提议用于同时改良两个群体及其杂交种。提出了经典全同胞 RRS(FS-RRS)的一种改进方法,其中全同胞和 S(2)家系的表现结合在一个选择指数(FS-S(2)-RRS)中。地中海玉米螟(MCB)是地中海和邻近地区的主要玉米螟物种,会造成重要的产量损失。我们从同一个玉米群体开始了两个 RRS 计划(FS-RRS 和 FS-S(2)-RRS),选择标准是在人工感染 MCB 卵的情况下的籽粒产量。原始群体、通过两种 RRS 方法从它们中选择的两个循环以及群体杂交种在 MCB 攻击和杀虫剂处理下在三个不同的环境中进行了评估。目的是比较 FS-RRS 和 FS-S(2)-RRS 方法在提高谷物产量方面的效率。我们发现,FS-S(2)-RRS 方法在最佳条件下成功地提高了群体杂交种的产量(循环中的回归系数为 b = 0.87**Mg ha(-1) cycle(-1)),而在 MCB 攻击的高压力下没有损失产量(b = 0.07)。相反,FS-RRS 在最佳条件下未能提高群体杂交种的产量(b = 0.65),并且倾向于在 MCB 攻击水平较高时降低产量(b = -0.26)。我们得出结论,对于开发高产量和稳定的品种,FS-S(2)-RRS 比经典的 FS-RRS 方法更有效。