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长腺毛的排泄有助于减轻烟草中的镉毒性。

Excretion from long glandular trichomes contributes to alleviation of cadmium toxicity in Nicotiana tabacum.

机构信息

Key Laboratory for Cultivation of Tobacco Industry, College of Tobacco Science, Henan Agricultural University, Zhengzhou, 450002, China.

Key Laboratory for Cultivation of Tobacco Industry, College of Tobacco Science, Henan Agricultural University, Zhengzhou, 450002, China.

出版信息

Environ Pollut. 2021 Sep 15;285:117184. doi: 10.1016/j.envpol.2021.117184. Epub 2021 Apr 29.

Abstract

The B-type cyclin gene, CycB2, serves as a negative regulator of glandular trichome initiation. Through targeted knockout of NtCycB2 in Nicotiana tabacum cv. K326 using the CRISPR/Cas9 system, we created a variety, HK326, which exhibits significantly increased density and larger glandular heads of long glandular trichomes. Under Cd-stress, HK326 exhibited enhanced Cd tolerance, as demonstrated by a robust root system, strengthened cell membrane stability, and higher photosynthetic parameters. HK326 exhibited enhanced Cd-stress tolerance due to a strong excretion capacity of long glandular trichomes by forming calcium oxalate crystals. Cd mainly accumulated in tobacco shoots rather than remained in roots. Specifically, Cd levels of the HK326 shoot surface were nearly two-fold of those of K326, resulting in less Cd internally in the roots and shoots. Gene expression patterns revealed 11 Cd transporter genes that were upregulated after Cd-stress in shoots, roots, and trichomes. Among them, the NtHMA2 gene encoding heavy metal ATPases and involved in the transport of divalent heavy metal cations was expressed consistently and significantly higher in HK326 than K326, both before and after Cd-stress. NtHMA2 expression was strong in trichomes, moderate in shoots, while weak in roots. The results indicate that NtHMA2 may be involved in Cd excretion from glandular trichomes. Our findings suggest HK326 may be an appropriate candidate plant for Cd-stress tolerance.

摘要

B 型细胞周期蛋白基因 CycB2 作为调控腺毛起始的负调控因子。通过 CRISPR/Cas9 系统靶向敲除烟草 cv.K326 中的 NtCycB2,我们创建了一个品种 HK326,其表现出明显增加的密度和更大的长腺毛的腺头部。在 Cd 胁迫下,HK326 表现出增强的 Cd 耐受性,表现为强壮的根系、增强的细胞膜稳定性和更高的光合参数。HK326 由于长腺毛形成草酸钙晶体而具有较强的排泄能力,从而表现出增强的 Cd 胁迫耐受性。Cd 主要积累在烟草地上部分,而不是留在根部。具体而言,HK326 地上部分的 Cd 水平几乎是 K326 的两倍,导致根部和地上部分的 Cd 含量减少。基因表达模式揭示了 11 个 Cd 转运基因在 Cd 胁迫后在地上部分、根和腺毛中上调。其中,编码重金属 ATP 酶并参与二价重金属阳离子转运的 NtHMA2 基因在 HK326 中的表达一致且显著高于 K326,无论是在 Cd 胁迫之前还是之后。NtHMA2 在腺毛中表达强烈,在地上部分中度表达,而在根部弱表达。结果表明,NtHMA2 可能参与了从腺毛中排出 Cd。我们的研究结果表明,HK326 可能是一种适合 Cd 胁迫耐受性的候选植物。

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