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柑橘黄脉明脉病毒感染引发柑橘韧皮部中铁和锌烟酰胺的再转运。

Citrus yellow vein clearing virus infection triggers phloem remobilization of iron- and zinc-nicotianamine in citrus.

作者信息

Jiang Tianchi, Chen Jiuzhou, Xu Kuan, Sharon Bone, Li Luxi, Guo Jiansheng, Liu Lianghui, Ge Jun, Lin Haizhong, Tian Shengke, Lu Lingli

机构信息

Zhejiang Provincial Key Laboratory of Subtropic Soil and Plant Nutrition, Zhejiang University, Hangzhou 310058, China.

Key Laboratory of Environment Remediation and Ecological Health (Zhejiang University, College of Environmental & Resource Science), Ministry of Education, Hangzhou 310058, China.

出版信息

Plant Physiol. 2025 Feb 7;197(2). doi: 10.1093/plphys/kiae528.

Abstract

Citrus yellow vein clearing virus (CYVCV) is a worldwide and highly destructive disease of citrus, but the mechanisms involved in CYVCV-inhibited plant growth are not well understood. This study examined nutrient levels and their cellular distribution in different organs of healthy and CYVCV-affected citrus (Citrus reticulata 'Kanpei') plants. We found that CYVCV-infected plants exhibit characteristic symptoms, including a significant reduction in iron (Fe) and other elemental nutrients in the shoots. Our data suggest that CYVCV-induced chlorosis in citrus leaf veins is primarily due to iron deficiency, leading to reduced chlorophyll synthesis. Further analysis revealed a marked decrease in iron concentration within the pith and xylem of citrus petioles post-CYVCV infection, contrasting with increased Fe and zinc (Zn) concentrations in the phloem. Moreover, a substantial accumulation of starch granules was observed in the pith, xylem, and phloem vessels of infected plants, with vessel blockage due to starch accumulation reaching up to 81%, thus significantly obstructing Fe transport in the xylem. Additionally, our study detected an upregulation of genes associated with nicotinamide metabolism and Fe and Zn transport following CYVCV infection, leading to increased levels of nicotinamide metabolites. This suggests that CYVCV-infected citrus plants may induce nicotinamide synthesis in response to Fe deficiency stress, facilitating the transport of Fe and Zn in the phloem as nicotinamide-bound complexes. Overall, our findings provide insight into the mechanisms of long-distance Fe and Zn transport in citrus plants in response to CYVCV infection and highlight the role of nutritional management in mitigating the adverse effects of CYVCV, offering potential strategies for cultivating CYVCV-resistant citrus varieties.

摘要

柑橘黄脉明脉病毒(CYVCV)是一种在全球范围内极具破坏性的柑橘病害,但CYVCV抑制植物生长的机制尚未完全明确。本研究检测了健康和受CYVCV影响的柑橘(Citrus reticulata 'Kanpei')植株不同器官中的养分水平及其细胞分布。我们发现,受CYVCV感染的植株呈现出典型症状,包括新梢中铁(Fe)和其他元素养分显著减少。我们的数据表明,CYVCV诱导的柑橘叶脉黄化主要是由于缺铁,导致叶绿素合成减少。进一步分析发现,CYVCV感染后柑橘叶柄髓部和木质部中的铁浓度显著降低,而韧皮部中的铁和锌(Zn)浓度则升高。此外,在受感染植株的髓部、木质部和韧皮部导管中观察到淀粉颗粒大量积累,淀粉积累导致的导管堵塞高达81%,从而显著阻碍了木质部中铁的运输。此外,我们的研究检测到CYVCV感染后与烟酰胺代谢以及铁和锌运输相关的基因上调,导致烟酰胺代谢产物水平升高。这表明,受CYVCV感染的柑橘植株可能会响应缺铁胁迫诱导烟酰胺合成,促进铁和锌以烟酰胺结合复合物的形式在韧皮部中运输。总体而言,我们的研究结果深入了解了柑橘植株在应对CYVCV感染时铁和锌长距离运输的机制,并突出了营养管理在减轻CYVCV不利影响方面的作用,为培育抗CYVCV柑橘品种提供了潜在策略。

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