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首页> 外文期刊>Acta Horticulturae >Changes of photosynthesis and chlorophyll fluorescence under high temperature stress in cowpea seedling leaves.
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Changes of photosynthesis and chlorophyll fluorescence under high temperature stress in cowpea seedling leaves.

机译:cow豆幼苗叶片高温胁迫下光合作用和叶绿素荧光的变化

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摘要

Two cowpea varieties (Vigna unguiculata W., 'ZaoyouNo.1' and 'Youxuanzhijiang28-2') were used to study the changes of photosynthesis and chlorophyll fluorescence under high temperature stress (45/33 degrees C). The results showed that as time went by, all of the net photosynthetic rate (PN), photochemical efficiency of photosystem (PS) 2 in the darkness (Fv/Fm) and quantum yield of PS 2 electron transport ( Phi PS2) of the two varieties decreased. Moreover, the stomata conductance (Gs) increased during the first three days, and then decreased. However, the intercellular carbon dioxide (CO2) concentration (Ci) increased. These results indicated: 1. Under high temperature stress, non-stomatal limitation was the major factor leading to photosynthesis limitation. 2. The high temperature tolerance of 'ZaoyouNo.1' was demonstrably stronger than that of 'Youxuanzhijiang 28-2'. 3. PN, Phi PS II and Fv/Fm of the higher tolerance cowpea variety to high temperature were greater at 45 degrees C/33 degrees C (dayight) and 35 degrees C/27 degrees C (dayight). 4. When identifying high temperature tolerance of cowpea plants, PN, Phi PS II and Fv/Fm can be used as physiological indexes.
机译:利用两个cow豆品种(Vigna unguiculata W。,“ Zoyou No.1”和“ Youxuanzhijiang28-2”)研究了高温胁迫(45/33摄氏度)下光合作用和叶绿素荧光的变化。结果表明,随着时间的流逝,两者的净净光合速率(PN),光系统(PS)2的光化学效率(Fv / Fm)和PS 2电子传输的量子产率(Phi PS2)品种减少。此外,气孔导度(Gs)在前三天增加,然后下降。但是,细胞间二氧化碳(CO2)浓度(Ci)增加。这些结果表明:1.在高温胁迫下,非气孔限制是导致光合作用限制的主要因素。 2.“早油一号”的高温耐受性明显强于“油玄之江28-2”。 3.耐高温cow豆品种的PN,Phi PS II和Fv / Fm在45摄氏度/ 33摄氏度(白天/夜晚)和35摄氏度/ 27摄氏度(白天/夜晚)时更高。 4.在鉴定of豆植物的高温耐受性时,可以将PN,Phi PS II和Fv / Fm用作生理指标。

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