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Responses of Eighteen Rice (Oryza sativa L.) Cultivars to Temperature Tested Using Two Types of Growth Chambers

机译:两种生长室对十八个水稻品种对温度的响应

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Genetic variation in the growth response to temperature is a basis for developing adaptation measures to global warming, but evaluation of cultivars for the temperature responses may depend on other environmental factors such as light. In this study, we tested the growth responses of 18 diverse rice cultivars to constant dayight temperature of 25, 28, 31 and 34oC in artificially-lit growth chambers (ALC) in Wagga Wagga (7.8 MJ m-2 d-1), and in naturally-lit chambers (NLC) in Yanco (25 and 28oC and 13.4 MJ m-2 d-1; 31 and 34oC and 11.5 MJ m-2 d-1), both in NSW, Australia. There was a significant interaction between temperature and chamber type for total shoot and panicle biomass; total shoot biomass was largest at 31oC in ALC, and at 25 and 28oC in NLC. From the average of all temperatures, the total shoot biomass declined by 29.5% in plants grown in ALC compared with those grown in NLC. Importantly, cultivar performance in ALC was similar to that in NLC at these temperatures, as evidenced by the highly significant correlation in total shoot biomass between ALC and NLC. Among 18 cultivars, IR64, IR72, N22, Vandana, Takanari and Koshihikari commonly produced a larger total shoot biomass under higher temperature conditions. Leaf area at earlier measurement date was highly correlated with the final total shoot biomass at the higher temperature more than specific leaf area.
机译:生长对温度的响应的遗传变异是制定适应全球变暖的措施的基础,但是对温度响应的品种评估可能取决于其他环境因素,例如光照。在这项研究中,我们在Wagga Wagga(7.8 MJ m-2 d-1)的人工光照生长室(ALC)中测试了18个不同水稻品种对25、28、31和34oC恒定昼/夜温度的生长响应。 ,以及澳大利亚新南威尔士州Yanco的自然采光室(25和28oC和13.4 MJ m-2 d-1; 31和34oC和11.5 MJ m-2 d-1)。总苗和穗生物量的温度和腔室类型之间存在显着的相互作用。在ALC中,总的枝条生物量最大,为31oC;在NLC中,分别为25和28oC。从所有温度的平均值来看,与NLC相比,ALC种植的植物总苗生物量下降了29.5%。重要的是,在这些温度下,ALC的品种性能与NLC相似,这可以通过ALC和NLC之间的总枝生物量高度相关性来证明。在18个品种中,IR64,IR72,N22,Vandana,Takanari和Koshihikari在较高温度条件下通常产生较大的总枝生物量。在较早的测量日期,叶面积与高温下的最终总枝生物量高度相关,比特定叶面积高。

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