Department of Horticultural Science, University of Minnesota, Saint Paul, MN, 55108, USA.
BMC Plant Biol. 2019 Mar 29;19(1):118. doi: 10.1186/s12870-019-1728-8.
The transmitting tissue of the style is the pathway for pollen tube growth to the ovules and has components that function in recognizing and discriminating appropriate pollen genotypes. In Nicotiana tabacum, the class III pistil extensin-like (PELPIII) arabinogalactan protein is essential for the inhibition of N. obtusifolia pollen tube growth. The transmitting tissue-specific (TTS) arabinogalactan protein amino acid sequence and expression pattern is similar to PELPIII, but it facilitates self-pollinated N. tabacum. The TTS and PELPIII arabinogalactan protein can be divided into the less conserved N-terminal (NTD) and the more conserved C-terminal (CTD) domains. This research tested whether the NTD is the key domain in determining PELPIII function in the inhibition of interspecific pollen tube growth. Three variant PELPIII gene constructs were produced where the PELPIII NTD was exchanged with the TTS NTD and a single amino acid change (cysteine to alanine) was introduced into the PELPIII NTD. The PELPIII variants of N. tabacum were tested for activity by measuring the inhibition N. obtusifolia pollen tube growth by using them to complement a 3'UTR RNAi transgenic line with reduced PELPIII mRNA.
The RNAi N. tabacum line had reduced PELPIII mRNA accumulation and reduced inhibition of N. obtusifolia pollen tube growth, but had no effect on self-pollen tube growth or pollen tube growth of 12 other Nicotiana species. The NTD of PELPIII with either the PELPIII or TTS CTDs complemented the loss PELPIII activity in the RNAi transgenic line as measured by inhibition of N. obtusifolia pollen tube growth. The TTS NTD with the PELPIII CTD and a variant PELPIII with a cysteine to alanine mutation in its NTD failed to complement the loss of PELPIII activity and did not inhibit N. obtusifolia pollen tube growth.
The NTD is a key determinant in PELPIII's function in regulating interspecific pollen tube growth and is a first step toward understanding the mechanism of how PELPIII NTD regulates pollen tube growth.
花柱的传递组织是花粉管生长到胚珠的途径,其中包含识别和区分合适花粉基因型的功能成分。在烟草中,III 类柱头伸展素样(PELPIII)阿拉伯半乳聚糖蛋白对于抑制钝叶烟草花粉管生长是必不可少的。传递组织特异(TTS)阿拉伯半乳聚糖蛋白的氨基酸序列和表达模式与 PELPIII 相似,但它促进了自花授粉的烟草。TTS 和 PELPIII 阿拉伯半乳聚糖蛋白可分为不太保守的 N 端(NTD)和更保守的 C 端(CTD)结构域。本研究测试了 NTD 是否是决定 PELPIII 在抑制种间花粉管生长中的功能的关键结构域。生成了三个变体 PELPIII 基因构建体,其中 PELPIII 的 NTD 被 TTS 的 NTD 取代,并且在 PELPIII 的 NTD 中引入了单个氨基酸变化(半胱氨酸变为丙氨酸)。通过使用它们来补充 PELPIII mRNA 减少的 3'UTR RNAi 转基因系,来测量对钝叶烟草花粉管生长的抑制作用,从而测试了烟草的 PELPIII 变体的活性。
RNAi 烟草系的 PELPIII mRNA 积累减少,对钝叶烟草花粉管生长的抑制作用降低,但对自花粉管生长或 12 种其他烟草物种的花粉管生长没有影响。具有 PELPIII 或 TTS CTD 的 PELPIII NTD 补充了 RNAi 转基因系中 PELPIII 活性的丧失,如对钝叶烟草花粉管生长的抑制作用所示。具有 PELPIII CTD 的 TTS NTD 和具有 NTD 中半胱氨酸到丙氨酸突变的变体 PELPIII 未能补充 PELPIII 活性的丧失,并且不能抑制钝叶烟草花粉管生长。
NTD 是 PELPIII 调节种间花粉管生长功能的关键决定因素,是了解 PELPIII NTD 如何调节花粉管生长机制的第一步。