首页> 美国卫生研究院文献>Plant Physiology >Determination of the Rate Limiting Step for Photosynthesis in a Nearly Isonuclear Rapeseed (Brassica napus L.) Biotype Resistant to Atrazine
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Determination of the Rate Limiting Step for Photosynthesis in a Nearly Isonuclear Rapeseed (Brassica napus L.) Biotype Resistant to Atrazine

机译:抗阿特拉津的近等核油菜(Brassica napus L.)生物型中光合作用的限速步骤的确定

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摘要

Plant biotypes that are resistant to S-triazines under most conditions often grow less vigorously and have lower quantum yields and lower maximum rates of photosynthesis. The photosynthetic reactions responsible for these effects were identified in whole leaves and thylakoids of nearly isonuclear lines of oilseed rape (Brassica napus L.). The lower quantum yield was a result of poor efficiency in the use of separated charge at the photosystem II reaction center. Charge separation occurred normally, but over 30% of the charges recombined instead of being used for oxygen evolution and for reduction capacity in photosystem I. The lower maximum rate of photosynthesis in the resistant biotype was set by the transfer of electrons between the primary, QA, and secondary, QB, acceptors of photosystem II. This charge transfer reaction became rate limiting in resistant biotypes. The decreased quantum yield and decreased maximum rate of photosynthesis are both believed to be consequences of changes in the 32 kilodalton herbicide binding protein. As such, it is likely that these traits will not be genetically separable.
机译:在大多数情况下,对S-三嗪具有抗性的植物生物型通常生长较弱,且量子产率较低,光合作用的最大速率较低。在油菜的近全同核品系(甘蓝型油菜)的整片叶子和类囊体中鉴定出了负责这些作用的光合作用反应。较低的量子产率是由于在光系统II反应中心使用分离电荷效率低下的结果。电荷分离正常发生,但超过30%的电荷重新组合而不是用于氧气释放和光系统I的还原能力。抗性生物型中光合作用的最大光合速率较低是由主要QA之间的电子转移引起的,以及光系统II的次要QB受体。这种电荷转移反应成为耐药生物型的限速。降低的量子产率和降低的光合作用的最大速率均被认为是32千道尔顿除草剂结合蛋白发生变化的结果。因此,这些性状很可能在遗传上是不可分离的。

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