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Vernalization Responses of Jointed Goatgrass (Aegilops cylindrica), Wheat, and Wheat by Jointed Goatgrass Hybrid Plants

机译:联合山羊草杂种植物对联合山羊草(Aegilops cylindrica),小麦和小麦的春化反应

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摘要

To assess the risk of gene movement between winter wheat and jointed goatgrass, information about the reproductive development of jointed goatgrass, winter wheat, and related hybrid plants is required. Seedlings from five jointed goatgrass populations, winter wheat, spring wheat, and jointed goatgrass by wheat reciprocal hybrid plants were exposed to 4, 7, or 10 C temperatures for 0, 2, 4, 5, 6, 6.5, 7, or 8 wk. Vernalized seedlings were transferred to a greenhouse set to 30/18 C dayight temperatures and 16-h photoperiod. Growth stages on all plants were recorded twice a week. All spring wheat and spring wheat related hybrid plants reproduced (as measured by the first reproductive node) in the absence of vernalization. Plants of jointed goatgrass population A-R, winter wheat, and winter wheat related hybrids were unlikely to reproduce in the absence of vernalization. Plants of jointed goatgrass populations B-W, G-S, E-S, and F-W reproduced in the absence of vernalization, and the likelihood that these plants would reproduce was different from all other plants. Plants that entered their reproductive phases together were not in synchronous development at anthesis. Plants in these studies differentially passed through the reproductive phases between the first reproductive node and anthesis. Our results demonstrate that variation in vernalization response exists among several jointed goatgrass populations, and reveal that the reproductive behavior of vernalized jointed goatgrass plants at anthesis is delayed compared to vernalized winter wheat and related hybrid plants. Hybrid plants produced between spring wheat and jointed goatgrass were vernalization insensitive. We hypothesize that hybridization between wheat and jointed goatgrass occurs as a result of cross-pollination between the younger reproductive tillers of jointed goatgrass and older reproductive tillers of wheat. The use of an early maturing wheat cultivar may exploit the difference in reproductive development and reduce the risk of hybrid production.
机译:为了评估冬小麦与节理山羊草之间基因移动的风险,需要有关节理山羊草,冬小麦和相关杂种植物生殖发育的信息。将来自小麦互易杂种植物的五个节理山羊草种群,冬小麦,春小麦和节理山羊草的幼苗暴露于4、7或10 C温度下,分别为0、2、4、5、6、6.5、7或8周。将春化的幼苗转移到设置为日夜温度为30/18 C和光周期为16小时的温室中。每周两次记录所有植物的生长阶段。在没有春化处理的情况下,所有春小麦和与春小麦相关的杂种植物都进行了繁殖(通过第一个生殖节测量)。在没有春化处理的情况下,联合山羊草种群A-R,冬小麦和与冬小麦相关的杂种的植物不太可能繁殖。在没有春化处理的情况下,联合山羊草种群B-W,G-S,E-S和F-W的植物繁殖,而这些植物繁殖的可能性与所有其他植物不同。一起进入生殖阶段的植物在开花期没有同步发展。这些研究中的植物在第一个生殖节和花期之间有差异地通过了生殖期。我们的结果表明,春化响应的变异存在于多个节理的山羊草种群中,并且揭示了与春化的冬小麦和相关杂种植物相比,春节化的节理山羊草植物在花期的生殖行为被延迟。在春小麦和节理山羊草之间产生的杂交植物对春化反应不敏感。我们假设小麦和节理山羊草之间的杂交是由于年轻的节理山羊草生殖分and与较老的小麦分till之间的异花授粉而产生的。使用早熟的小麦品种可以利用生殖发育的差异并降低杂交生产的风险。

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