一个新的番茄黄绿叶突变体表型鉴定与遗传分析
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国家自然科学基金(31301779);西南大学大学生创新项目(201510635029)。


Phenotypic Identification and Genetic Analysis of A Novel Tomato Yellow Green Leaf Mutant
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    摘要:

    植物黄绿叶突变体不但在植物的光合作用、叶绿素的合成代谢途径、叶绿体的遗传分化与发育等一系列基础研究中具有重要作用,而且还可以作为标记性状应用到育种研究上。本研究以前期化学诱变得到的一个番茄黄绿叶突变体为材料,对其主要表型与光合作用特征特性进行鉴定分析,发现突变体从第一片真叶开始变黄,植株矮小,叶片叶绿素含量和净光合速率相对野生型显著降低,叶绿体类囊体片层结构畸形。突变体和野生型进行正反交,分析其遗传方式。发现其F2群体正常叶与黄绿叶的分离比为3:1,表明黄绿叶是由单个基因突变引起的隐性性状。本研究为后期的基因定位奠定了基础。

    Abstract:

    Plant yellow-green leaf mutant plays an important role in a series of basic studies such as photosynthesis, synthetic metabolic pathway of chlorophyll, genetic differentiation and development of chloroplast, as well as a marker trait to breeding research. In this study, we analyzed the phenotypic characteristics and photosynthesis of a tomato yellow-green leaf mutant that was generated by chemical mutagenesis. We found that the yellow-green phenotype of mutant (mu) became visible in the first true leaf. The mu plant showed dwarfism, the reduction of chlorophyll content and net photosynthetic rate in relative to that of the wild type M82. By analyzing the ultra-structure of chloroplast with transmission microscope, the chloroplast thylakoid was impaired development in the mu mutant. By genetic analysis between mu and M82, the segregation ratio (3:1) was observed in the seedlings with normal and yellow leaves in a F2 population, supporting a single recessive gene underlying the mutated yellow-green phenotype. Thus, this study identified a chloroplast-abnormal mutant that might be useful in exploring the signaling in nucleus and chloroplast, for example, by isolating the target gene controlling the yellow-green phenotype of leaves.

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王亚玲,李小寒,宫方林,等.一个新的番茄黄绿叶突变体表型鉴定与遗传分析[J].植物遗传资源学报,2019,20(1):215-220.

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历史
  • 收稿日期:2018-05-18
  • 最后修改日期:2018-11-07
  • 录用日期:2018-08-28
  • 在线发布日期: 2019-06-05
  • 出版日期: 2019-01-16
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