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Enhanced Photosynthesis and Stomatal Conductance of Pima Cotton (Gossypium barbadense L.) Bred for Increased Yield

机译:增强皮马棉(Gossypium barbadense L.)的光合作用和气孔导度以提高产量

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摘要

Yield of Pima cotton (Gossypium barbadense L.) has tripled over the last 40 years with the development of new cultivars. Six genetic lines representing successive stages in the breeding process (one primitive noncultivated accession, four cultivars with release dates from 1949 to 1983, and one unreleased breeding line) were grown in a greenhouse, and their gas exchange properties were compared. Among the cultivated types, genetic advances were closely associated with increasing single-leaf photosynthetic rate (A) and stomatal conductance (gs), especially in the morning. The A and gs of the primitive line approached those of the cultivated types early in the morning, but were much lower for the rest of the day. In both morning and afternoon, A was correlated with gs across genotypes but was not correlated with leaf thickness, concentrations of chlorophyll or starch, or intercellular CO2 concentration (ci). In the oldest cultivar, the relationship of A to ci did not change between morning and afternoon. In the two most recent lines, the slopes of the A:ci curves at limiting ci exceeded that of the oldest cultivar by 25 to 50% in the morning, but the differences were much smaller in the afternoon. The maximum A of the newer lines at high ci exceeded that of the oldest cultivar only in the morning. Breeding for increasing yield has enhanced the photosynthetic capacity and stomatal conductance of Pima cotton and altered the diurnal regulation of photosynthesis.
机译:随着新品种的发展,皮马棉(Gossypium barbadense L.)的产量在过去40年中增长了两倍。在温室中种植了六个代表育种过程连续阶段的遗传系(一个原始的非栽培品系,四个品种的释放日期为1949年至1983年,一个未释放的育种系),并比较了它们的气体交换特性。在耕种类型中,遗传进步与单叶光合速率(A)和气孔导度(gs)的增加密切相关,尤其是在早晨。原始线的A和gs在清晨接近栽培类型的A和gs,但在一天的其余时间中较低。在上午和下午,A与不同基因型的gs相关,但与叶片厚度,叶绿素或淀粉浓度或细胞间CO2浓度(ci)不相关。在最古老的品种中,A与ci的关系在早晨和下午之间没有变化。在最近的两条线中,限制ci处的A:ci曲线的斜率在早上比最老品种的斜率超出了25%至50%,但在下午的差异要小得多。仅在早晨,高ci的新品系的最大A才超过最老品种的最大A。增产育种提高了比马棉的光合能力和气孔导度,改变了光合作用的昼夜调控。

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