Disruption of pollen tube homogalacturonan synthesis relieves pollen tube penetration defects in the Arabidopsis O-FUCOSYLTRANSFERASE1 mutant.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Kayleigh J Robichaux, Devin K Smith, Madison N Blea, Chrystle Weigand, Jeffrey F Harper, Ian S Wallace
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Abstract

During angiosperm sexual reproduction, pollen tubes must penetrate through multiple cell types in the pistil to mediate successful fertilization. Although this process is highly choreographed and requires complex chemical and mechanical signaling to guide the pollen tube to its destination, aspects of our understanding of pollen tube penetration through the pistil are incomplete. Our previous work demonstrated that disruption of the Arabidopsis thaliana O-FUCOSYLTRANSFERASE1 (OFT1) gene resulted in decreased pollen tube penetration through the stigma-style interface. Here, we demonstrate that second site mutations of Arabidopsis GALACTURONOSYLTRANSFERASE 14 (GAUT14) effectively suppress the phenotype of oft1 mutants, partially restoring silique length, seed set, pollen transmission, and pollen tube penetration deficiencies in navigating the female reproductive tract. These results suggest that disruption of pectic homogalacturonan (HG) synthesis can alleviate the penetrative defects associated with the oft1 mutant and may implicate pectic HG deposition in the process of pollen tube penetration through the stigma-style interface in Arabidopsis. These results also support a model in which OFT1 function directly or indirectly modifies structural features associated with the cell wall, with the loss of oft1 leading to an imbalance in the wall composition that can be compensated for by a reduction in pectic HG deposition.

Abstract Image

在拟南芥O- focusYLTRANSFERASE1突变体中,花粉管同源半乳糖酸合成的中断缓解了花粉管穿透缺陷。
在被子植物有性生殖过程中,花粉管必须穿透雌蕊中的多种细胞类型才能成功受精。尽管这个过程是高度编排的,需要复杂的化学和机械信号来引导花粉管到达目的地,但我们对花粉管穿透雌蕊的理解还不完整。我们之前的研究表明,拟南芥O- focusYLTRANSFERASE1 (OFT1)基因的破坏导致花粉管通过柱头柱界面的渗透减少。在这里,我们证明了拟南芥GALACTURONOSYLTRANSFERASE 14 (GAUT14)的第二位点突变有效地抑制了oft1突变体的表型,部分恢复了雌性生殖道导航中硅片长度、种子结实、花粉传播和花粉管穿透缺陷。这些结果表明,果胶高半乳糖酸(HG)合成的破坏可以减轻与oft1突变体相关的渗透缺陷,并可能与果胶HG沉积在拟南芥花粉管穿透柱头柱界面的过程有关。这些结果也支持了一个模型,即OFT1的功能直接或间接地改变了与细胞壁相关的结构特征,OFT1的损失导致细胞壁成分的不平衡,而这种不平衡可以通过减少塑料HG沉积来补偿。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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