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Sterility of Thermo-Sensitive Genie Male Sterile Line, Heterosis for Grain Yield and Related Characters in F_1 Hybrid Rice (Oryza sativa L.)

机译:F_1杂交稻热敏基因雄性不育系的产量不育及杂种优势及相关性状

摘要

The thermo-sensitive genie male sterile (TGMS) T29^S line was sterile when exposed to daily mean temperatures of 24.1℃ or above during the critical stage (from 15 to 11 days before heading). It was completely sterile for both pollen and spikelet when the plant headed from June 16 to November 7 in Okinawa, because the temperature exceeded 24.1℃. The heterosis of the F_1 hybrids between the T29^S line and seven indica cultivars was examined. Most of the F_1 hybrids showed positive heterosis over the male parent for grain yield per plant and the number of spikelets per panicle, and one of them manifested heterosis for grain yield over a F_1 hybrid from a cytoplasmic male sterile (CMS) line. Dry matter accumulation per plant at the panicle initiation stage in most F_1 hybrids was higher than that in the respective male parent or mid-parent, and it was correlated with a larger number of tillers and leaf area per plant. All F_1 hybrids produced a larger number of panicles per plant than their respective male parent. Positive heterosis over the male parent for the number of filled grains per panicle, 1000-grain weight and harvest index was obtained in several F_1 hybrids. A positive correlation was found between grain yield and the dry matter accumulation per plant in F_1 hybrids. Both the larger number of panicles per plant and the larger number of spikelets per panicle were more important for the positive heterosis for grain yield in F_1 hybrids rather than the higher 1000-grain weight. Among the yield attributes, a larger number of filled grains per panicle mainly contributed to a higher grain yield of F_1 hybrids.
机译:当在关键时期(抽穗前15至11天)暴露于日平均温度为24.1℃或更高的热敏灵性不育雄性不育系(TGMS)T29 ^ S。从6月16日至11月7日,在冲绳县,由于温度超过24.1℃,因此对花粉和小穗都完全不育。研究了T29 ^ S品系与7个in稻品种F_1杂种的杂种优势。大多数F_1杂种显示出相对于雄性亲本的单株籽粒产量和每穗小穗数的正杂种优势,其中之一表现出相对于来自细胞质雄性不育(CMS)品系的F_1杂种而言的籽粒产量的杂种优势。在大多数F_1杂种的穗萌芽期,每株植物的干物质积累均高于相应的雄性亲本或中父母本,并且与每株植物的分ers数量和叶面积相关。所有F_1杂种每株植物产生的穗数均大于其各自的雄性亲本。在几个F_1杂种中,每穗实粒数,1000粒重和收获指数比雄性亲本高。在F_1杂种中,谷物产量与单株干物质积累之间存在正相关。单株穗数较大和每穗穗数较大对F_1杂种的籽粒产量正杂种优势更为重要,而不是较高的1000粒重。在产量属性中,每穗较大的填充粒数主要是导致F_1杂种的较高谷物产量。

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