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Leaf senescence and the profile of expanded leaf area in maize (Zea mays L.).

机译:玉米(Zea mays L.)的叶片衰老和叶面积的扩大。

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Leaf senescence is a major factor affecting light interception and dry matter accumulation during the grain-filling period. Reduced leaf senescence has been associated with maize yield genetic improvement. The objectives of this study were (i) to quantify maize senescence in terms of visual and functional symptoms in older and newer hybrids, and (ii) to examine the area-per-leaf profile in maize plants grown under a range of environments, agronomic practices and hybrids. Greater green leaf area throughout the grain-filling period in newer compared to older hybrids was the result of a greater leaf area index at silking and a delayed onset of visual leaf senescence. In addition, functional symptoms of leaf senescence (i.e., a decline in carbon exchange rate, stomatal conductance and chlorophyll fluorescence) were apparent in leaves that stayed green during later phases of the grain filling period. A bell-shape function proved to be a robust mean of quantifying the vertical leaf area distribution in maize. Variations due to year, nitrogen, plant density, hybrid, and row spacing on total leaf area could be quantified by measuring their effects on the area and position of the largest leaf. Overall, this study suggests that further advances in maize yield improvement will likely occur by combining ‘stay green’ with the maintenance of high photosynthesis through the season rather than extending green leaf area duration per se. Furthermore, the study demonstrates that the profile of area per leaf profile of maize is conservative trait that could be exploited to make more rapid and precise estimations of both leaf area and senescence.
机译:叶片衰老是影响籽粒灌浆期光拦截和干物质积累的主要因素。叶片衰老的减少与玉米产量遗传改良有关。这项研究的目的是(i)根据较旧和较新的杂交品种的视觉和功能症状量化玉米衰老,以及(ii)检查在一系列环境条件下生长的玉米植株的每叶面积分布,实践和混合动力。与较早的杂种相比,较新的杂种在整个籽粒灌浆期具有更大的绿叶面积,这是由于丝化时叶面积指数更大以及可见的叶片衰老延迟开始的结果。此外,叶片衰老的功能性症状(即碳交换速率,气孔导度和叶绿素荧光的下降)在叶片灌浆后期保持绿色的叶片中很明显。钟形函数被证明是量化玉米垂直叶面积分布的可靠手段。由于年,氮,植物密度,杂种和行距对总叶面积的影响,可以通过测量它们对最大叶面积和位置的影响来量化。总体而言,这项研究表明,通过在整个季节中结合“保持绿色”和维持高光合作用,而不是延长绿叶面积持续时间“本身”,可能会使玉米产量进一步提高。此外,研究表明,玉米每叶轮廓的面积特征是保守性状,可以利用它来对叶面积和衰老进行更快速,更精确的估计。

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