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Advances in two-line hybrid rice breeding

机译:双线杂交水稻育种进展

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The discovery of environment-sensitive genic male sterility in rice led to the development of a simpler and more efficient two-line hybrid breeding system compared with the cytoplasmic male sterility or three-line system. Several elite photoperiod-sensitive (PGMS) and thermosensitive genic male sterile (TGMS) lines have been developed in China. The commercial two-line hybrids developed using these lines occupied about 330,000 ha in 1996. Multiplying PGMS and TGMS lines in a pure form requires some special handling. These methods have been developed in China. Similar methods of seed production have been adopted for both two-line and three-line hybrids.The key point is to determine the time when a PGMS or TGMS line will show complete sterility for about 1 mo at a given location. Seed yield of two-line hybrids in China is 2.25-3.0 t ha -1. Under tropical conditions, in which daylength differences are marginal, the TGMS system is considered to be more useful than the PGMS system.Genetic analysis at IRRI confirmed the monogenic recessive control of the TGMS trait. The TGMS gene of the IRRI mutant, lR32364 TGMS, was found to be nonallelic to the TGMS genes identified in China (tms1) and Japan (tms2). IRRI has developed some TGMS lines in indica rice that possess the tms2 gene; these lines are being evaluated in national agricultural systems. As expected, the TGMS system gave a higher frequency of heterotic hybrids than the CMS system. This chapter also discusses constraints and the future outlook for two-line hybrid rice breeding.
机译:在水稻中发现环境敏感的遗传性雄性不育,与细胞质雄性不育或三线系统相比,较简单,更有效的双线杂化繁殖系统的开发。在中国开发了几种精英光周期敏感(PGMS)和热敏基因雄性无菌(TGMS)系。使用这些线路开发的商业双线杂种于1996年开发了大约330,000公顷。普通形式的PGM和TGMS线乘以一些特殊的处理。这些方法已在中国开发。两行和三线杂种采用了类似的种子生产方法。关键点是确定PGM或TGMS线在给定位置显示约1Mo的完全无菌的时间。中国双线杂交种子产量为2.25-3.0 t ha -1。在热带条件下,其中日长差异是边缘的,TGMS系统被认为比PGMS系统更有用。IRRI的生物分析证实了TGMS特征的单一切除控制。发现IRRI突变体的TGMS基因LR32364 TGMS是非allialIC-到中国(TMS1)和日本(TMS2)中鉴定的TGMS基因。 IRRI在具有TMS2基因的籼稻中开发了一些TGMS线;这些系列正在在国家农业系统中进行评估。正如预期的那样,TGMS系统比CMS系统产生了较高的异解杂交频率。本章还讨论了双线杂交水稻育种的制约因素和未来观。

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