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首页> 外文期刊>Journal of Plant Research >Photosynthetic and biochemical activities in flag leaves of a newly developed superhigh-yield hybrid rice (Oryza sativa) and its parents during the reproductive stage
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Photosynthetic and biochemical activities in flag leaves of a newly developed superhigh-yield hybrid rice (Oryza sativa) and its parents during the reproductive stage

机译:新型超高产杂交稻(Oryza sativa)及其亲本繁殖期旗叶的光合和生化活性

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Responses of net photosynthetic rates to intercellular CO2 concentration (P-n/C-i curves) and photochemical characteristics were investigated in flag leaves of newly developed superhigh-yield hybrid rice (Oryza sativa L.) LiangYouPeiJiu (LYPJ) and its maternal PeiAi64S (PA64S) and paternal Wu-Mang9311 (WM9311) lines grown in the field during the reproductive stage. The results showed that photosynthetic functions, such as the electron transport activities of photosystems and photophosphorylation, assessed in vivo from P-n/C-i curves under field conditions declined more or earlier than those obtained in vitro. The degradation of polypeptides of thylakoid membranes was slower than those for P-Ca=360 (light-saturated net photosynthetic rate measured at 360 mu mol mol(-1)) and CE (carboxylation efficiency, obtained from the initial slope of the P-n/C-i curve). The initial inhibition of the PSII electron transport and oxygen-evolving activity induced by senescence occurred before the degradation of the oxygen-evolving complex. In comparison, LYPJ had intermediate photosynthetic functions in the early stage of leaf development, but greater photochemical activities in the mid and late stages. WM9311 showed a similar pattern of changes but lower values, and PA64S had higher values in the early stage but showed a faster rate of senescence than LYPJ. These findings implied that the hybrid LYPJ demonstrated intermediate photosynthetic activities between its parents in the early stage of leaf development, whereas it had higher photosynthetic activities than its parents in the mid and late stages, which may be responsible for its high yield.
机译:研究了新开发的超高产杂交稻两优培九(LYPJ)及其母本PaiAi64S(PA64S)和父本的净光合速率对细胞间CO 2浓度(Pn / Ci曲线)和光化学特性的响应。 Wu-Mang9311(WM9311)系在生殖阶段在田间生长。结果表明,在野外条件下从体内的P-n / C-i曲线评估的光合功能,例如光系统的电子传输活性和光磷酸化,比体外获得的下降得更快或更早。类囊体膜多肽的降解比P-Ca = 360(在360μmol mol(-1)下测得的光饱和净光合速​​率)和CE(羧化效率,从Pn /的初始斜率获得)的降解慢Ci曲线)。衰老引起的PSII电子迁移和氧释放活性的初始抑制发生在氧释放复合物降解之前。相比之下,LYPJ在叶片发育的早期具有中等的光合作用功能,但在中后期具有较高的光化学活性。 WM9311表现出相似的变化模式,但值较低,而PA64S的早期值较高,但衰老速率比LYPJ快。这些发现暗示,杂种LYPJ在叶片发育的早期显示出其亲本之间的中间光合作用活性,而在中后期则具有高于其亲本的光合作用活性,这可能是其高产量的原因。

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