Takada Yoshinobu, Sato Takahiro, Suzuki Go, Shiba Hiroshi, Takayama Seiji, Watanabe Masao
Graduate School of Life Sciences, Tohoku University, Sendai 980-8577, Japan.
Division of Natural Science, Osaka Kyoiku University, Kashiwara 582-8582, Japan.
G3 (Bethesda). 2013 Apr 9;3(4):719-726. doi: 10.1534/g3.113.005892.
Plants have evolved many systems to prevent undesirable fertilization. Among these, incompatibility is a well-organized system in which pollen germination or pollen tube growth is inhibited in pistils. We previously found that a novel one-way pollen-stigma incompatibility response [unilateral incompatibility (UI)] occurred between two self-incompatible Brassica rapa plants, a Turkish line, and a Japanese cultivated hybrid variety, "Osome." Pollen from the Turkish line is rejected on the stigma of the Osome line, but the reverse cross is compatible; such a UI phenotype closely resembles self-incompatibility (SI). The pollen factor of this UI has been genetically explained by a single locus which is different from the S-locus. In this study, we performed further genetic analyses of this intraspecies UI and showed that the stigma factor was also controlled by a single locus, and we named the loci corresponding to the stigma and pollen factors of the intraspecies UI, stigmatic unilateral incompatibility (SUI), and pollen unilateral incompatibility (PUI) loci, respectively. Interestingly, segregation analyses of SUI and PUI indicated that they are closely linked to each other and behave as a single unit. To investigate the effect of an SI-related gene, MLPK in this UI, we produced segregation lines for SUI and mlpk A distorted segregation ratio of SUI phenotype in an mlpk background indicated involvement of MLPK in SUI, suggesting the existence of an MLPK-dependent novel pollen-stigma recognition mechanism.
植物已经进化出许多系统来防止不良受精。其中,不亲和性是一种组织良好的系统,在雌蕊中花粉萌发或花粉管生长会受到抑制。我们之前发现,在两种自交不亲和的白菜型油菜植株(一个土耳其品系和一个日本栽培杂交品种“大粒”)之间发生了一种新的单向花粉 - 柱头不亲和反应[单向不亲和性(UI)]。来自土耳其品系的花粉在大粒品系的柱头上被拒绝,但反交是亲和的;这种UI表型与自交不亲和性(SI)非常相似。这种UI的花粉因子已通过一个与S位点不同的单一位点进行了遗传学解释。在本研究中,我们对这种种内UI进行了进一步的遗传分析,结果表明柱头因子也由一个单一位点控制,并且我们将与种内UI的柱头和花粉因子相对应的位点分别命名为柱头单向不亲和性(SUI)和花粉单向不亲和性(PUI)位点。有趣的是,SUI和PUI的分离分析表明它们彼此紧密连锁,并作为一个单一单元起作用。为了研究SI相关基因MLPK在这种UI中的作用,我们构建了SUI和mlpk的分离系。在mlpk背景下SUI表型的扭曲分离比例表明MLPK参与了SUI,这表明存在一种依赖于MLPK的新的花粉 - 柱头识别机制。