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Characterization of a rice variety with high hydraulic conductance and identification of the chromosome region responsible using chromosome segment substitution lines

机译:高导水率水稻品种的鉴定和利用染色体片段代换系鉴定负责的染色体区域

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The rate of photosynthesis in paddy rice often decreases at noon on sunny days because of water stress, even under submerged conditions. Maintenance of higher rates of photosynthesis during the day might improve both yield and dry matter production in paddy rice. A high-yielding indica variety, 'Habataki', maintains a high rate of leaf photosynthesis during the daytime because of the higher hydraulic conductance from roots to leaves than in the standard japonica variety 'Sasanishiki'. This research was conducted to characterize the trait responsible for the higher hydraulic conductance in 'Habataki' and identified a chromosome region for the high hydraulic conductance.Hydraulic conductance to passive water transport and to osmotic water transport was determined for plants under intense transpiration and for plants without transpiration, respectively. The varietal difference in hydraulic conductance was examined with respect to root surface area and hydraulic conductivity (hydraulic conductance per root surface area, L-p). To identify the chromosome region responsible for higher hydraulic conductance, chromosome segment substitution lines (CSSLs) derived from a cross between 'Sasanishiki' and 'Habataki' were used.The significantly higher hydraulic conductance resulted from the larger root surface area not from L-p in 'Habataki'. A chromosome region associated with the elevated hydraulic conductance was detected between RM3916 and RM2431 on the long arm of chromosome 4. The CSSL, in which this region was substituted with the 'Habataki' chromosome segment in the 'Sasanishiki' background, had a larger root mass than 'Sasanishiki'.The trait for increasing plant hydraulic conductance and, therefore, maintaining the higher rate of leaf photosynthesis under the conditions of intense transpiration in 'Habataki' was identified, and it was estimated that there is at least one chromosome region for the trait located on chromosome 4.
机译:即使在水淹条件下,由于水分胁迫,水稻的光合作用速率通常在晴天的中午会降低。白天保持较高的光合作用速率可能会提高水稻的产量和干物质产量。高产in稻品种“ Habataki”在白天保持较高的叶片光合作用,因为从根到叶的水力传导率比标准粳稻品种“ Sasanishiki”更高。这项研究的目的是表征导致'Habataki'中较高的水力传导性状的特征,并确定了高水力传导性的染色体区域。确定了在强蒸腾作用下的植物和植物的水力对被动水传输和渗透水传输的影响。没有蒸腾作用。关于根表面积和水力传导率(每根表面积的水力传导率,L-p),检查了水力传导率的各种差异。为了鉴定负责更高水导率的染色体区域,使用了由'Sasanishiki'和'Habataki'之间的杂交得到的染色体片段替换线(CSSLs)。显着更高的水导率是由更大的根表面积导致的,而不是由Lp中的Lp引起的Habataki'。在第4号染色体的长臂上的RM3916和RM2431之间检测到一个与水力传导性升高相关的染色体区域。在该区域中,被“ Sasanishiki”背景中的“ Habataki”染色体片段取代的CSSL具有较大的根鉴定出在“ Habataki”中增加植物水力传导并因此在强烈蒸腾条件下维持较高的叶片光合作用速率的性状,据估计,至少有一个染色体区域可用于“ Sabanishiki”。位于4号染色体上的性状

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