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在回交籼稻和粳稻自交系的个体发育过程中,叶片光合速率和叶肉细胞解剖结构的变化。

Leaf photosynthetic rate and mesophyll cell anatomy changes during ontogenesis in backcrossed indica × japonica rice inbred lines.

机构信息

School of Biological Science and Technology, University of Jinan, Jinan, 250022, China.

Graduate School of Agriculture, Tokyo University of Agriculture and Technology, Fuchu, Tokyo, 183-8509, Japan.

出版信息

Photosynth Res. 2017 Oct;134(1):27-38. doi: 10.1007/s11120-017-0403-x. Epub 2017 May 24.

Abstract

The high-yielding indica rice variety, 'Takanari', has the high rate of leaf photosynthesis compared with the commercial japonica varieties. Among backcrossed inbred lines from a cross between 'Takanari' and a japonica variety, 'Koshihikari', two lines, BTK-a and BTK-b, showed approximately 20% higher photosynthetic rate than that of 'Takanari' for a flag leaf at full heading. This is a highest recorded rate of rice leaf photosynthesis. Here, the timing and cause of the increased leaf photosynthesis in the BTK lines were investigated by examining the photosynthesis and related parameters, as well as mesophyll cell anatomy during ontogenesis. Their photosynthetic rate was greater than that of 'Takanari' in the 13th leaf, as well as the flag leaf, but there were no differences in the 7th and 10th leaves. There were no consistent differences in the stomatal conductance, or the leaf nitrogen and Rubisco contents in the 13th and flag leaves. The total surface area of mesophyll cells per leaf area (TA) in the 13th and flag leaves increased significantly in the BTK lines due to the increased number and developed lobes of mesophyll cells compared with in 'Takanari'. The mesophyll conductance (g ) became greater in the BTK lines compared with 'Takanari' in the flag leaves but not in the 10th leaves. A close correlation was observed between TA and g . We concluded that the increased mesophyll conductance through the development of mesophyll cells during the reproductive period is a probable cause of the greater photosynthetic rate in the BTK lines.

摘要

高产品系籼稻 'Takanari' 的叶片光合作用速率高于商业粳稻品种。在 'Takanari' 和粳稻品种 'Koshihikari' 的杂交后代的回交自交系中,两个系 BTK-a 和 BTK-b 的旗叶在完全抽穗时的光合速率比 'Takanari' 高约 20%。这是水稻叶片光合作用速率的最高记录。在这里,通过检查光合作用和相关参数以及在个体发育过程中的叶肉细胞解剖结构,研究了 BTK 系中叶片光合作用增加的时间和原因。它们的光合速率在第 13 叶和旗叶中均大于 'Takanari',但在第 7 叶和第 10 叶中没有差异。第 13 叶和旗叶的气孔导度、叶片氮含量和 Rubisco 含量没有一致的差异。由于与 'Takanari' 相比,第 13 叶和旗叶中每个叶片面积的叶肉细胞总表面积 (TA) 增加,BTK 系中每个叶片面积的叶肉细胞总表面积 (TA) 显著增加。与 'Takanari' 相比,BTK 系中旗叶的叶肉导度 (g) 增大,但第 10 叶的 g 没有变化。在旗叶中,TA 与 g 之间存在密切的相关性。我们得出的结论是,在生殖期通过叶肉细胞的发育增加叶肉导度可能是 BTK 系中光合速率增加的原因。

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