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A Gain-of-Function Mutation of Arabidopsis Lipid Transfer Protein 5 Disturbs Pollen Tube Tip Growth and Fertilization

机译:功能增益的拟南芥脂质转移蛋白5干扰花粉管尖端生长和受精。

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During compatible pollination of the angiosperms, pollen tubes grow in the pistil transmitting tract (TT) and are guided to the ovule for fertilization. Lily (Lilium longiflorum) stigma/style Cys-rich adhesin (SCA), a plant lipid transfer protein (LTP), is a small, secreted peptide involved in pollen tube adhesion-mediated guidance. Here, we used a reverse genetic approach to study biological roles of Arabidopsis thaliana LTP5, a SCA-like LTP. The T-DNA insertional gain-of-function mutant plant for LTP5 (ltp5-1) exhibited ballooned pollen tubes, delayed pollen tube growth, and decreased numbers of fertilized eggs. Our reciprocal cross-pollination study revealed that ltp5-1 results in both male and female partial sterility. RT-PCR and beta-glucuronidase analyses showed that LTP5 is present in pollen and the pistil TT in low levels. Pollen-targeted overexpression of either ltp5-1 or wild-type LTP5 resulted in defects in polar tip growth of pollen tubes and thereby decreased seed set, suggesting that mutant ltp5-1 acts as a dominant-active form of wild-type LTP5 in pollen tube growth. The ltp5-1 protein has additional hydrophobic C-terminal sequences, compared with LTP5. In our structural homology/molecular dynamics modeling, Tyr-91 in ltp5-1, replacing Val-91 in LTP5, was predicted to interact with Arg-45 and Tyr-81, which are known to interact with a lipid ligand in maize (Zea mays) LTP. Thus, Arabidopsis LTP5 plays a significant role in reproduction.
机译:在被子植物的兼容授粉过程中,花粉管在雌蕊传递道(TT)中生长,并被引导至胚珠进行受精。百合(Lilium longiflorum)柱头/样式富含Cys的粘附素(SCA),一种植物脂质转移蛋白(LTP),是一种小的分泌肽,参与花粉管粘附介导。在这里,我们使用反向遗传方法研究拟南芥LTP5(一种类似SCA的LTP)的生物学作用。 LTP5(ltp5-1)的T-DNA插入功能获得性突变植物表现出花粉管膨胀,花粉管生长延迟和受精卵数量减少。我们的相互异花授粉研究表明,ltp5-1导致男性和女性部分不育。 RT-PCR和β-葡萄糖醛酸苷酶分析表明,LTP5在花粉和雌蕊TT中的含量较低。以花粉为靶标的ltp5-1或野生型LTP5的过表达导致花粉管极尖生长的缺陷,从而减少种子结实,表明突变体ltp5-1充当花粉中野生型LTP5的显性活性形式管增长。与LTP5相比,ltp5-1蛋白具有其他疏水性C端序列。在我们的结构同源性/分子动力学建模中,预测ltp5-1中的Tyr-91取代LTP5中的Val-91与Arg-45和Tyr-81相互作用,后者与玉米中的脂质配体相互作用(Zea可能)LTP。因此,拟南芥LTP5在繁殖中起重要作用。

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