Cucurbit Leaf Crumple Virus Is Seed Transmitted in Yellow Squash (Cucurbita pepo).

IF 4.4 2区 农林科学 Q1 PLANT SCIENCES
Plant disease Pub Date : 2025-01-01 Epub Date: 2025-01-04 DOI:10.1094/PDIS-06-24-1330-RE
Dalvir Kaur Dhadly, Saritha Raman Kavalappara, Theodore McAvoy, Paul M Severns, Alvin M Simmons, Rajagopalbabu Srinivasan, Sudeep Bag
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引用次数: 0

Abstract

The traditional understanding of begomovirus transmission exclusively through the whitefly Bemisia tabaci (Gennadius) has shifted with findings of seed transmission in some begomoviruses over the last decade. We investigated the seed transmissibility of cucurbit leaf crumple virus (CuLCrV), a bipartite begomovirus that has recently emerged as a severe constraint for yellow squash (Cucurbita pepo L.) production in the southeastern United States. We found a high concentration of CuLCrV in the male and female flower tissues of infected squash, including the pollen and ovules. The virus infiltrated the fruit tissues, including the endocarp and funiculus, which are anatomically positioned adjacent to the seeds. In seeds, CuLCrV was detected in the endosperm and embryo, where there are no vascular connections, in addition to the seed coat. The virus was detected in the radicle, plumule, cotyledonary leaves, and true leaves of seedlings grown from seeds collected from infected fruits. In the grow-out test conducted, CuLCrV infections ranged from 17 to 56% of the progeny plants. To ensure that partial viral genome fragments were not being mistaken for replicative forms of the virus, we performed rolling circle amplification PCR and amplified complete DNA-A and DNA-B of CuLCrV from seed tissues, seedlings, and progeny plants of CuLCrV-infected squash. Near-complete DNA-A and DNA-B sequences of CuLCrV were recovered from a progeny plant, further validating our findings. Our results demonstrate that CuLCrV can translocate from vegetative to reproductive tissues of yellow squash, persist within the seeds, and subsequently induce infection in progeny plants, confirming its capacity for seed transmission.

葫芦叶皱缩病毒 (CuLCrV) 在黄瓜(Cucurbita pepo L.)中通过种子传播。
过去十年中,随着一些乞猴病毒种子传播的发现,人们对乞猴病毒仅通过粉虱传播的传统认识发生了转变。我们研究了葫芦叶皱缩病毒(CuLCrV)的种子传播性,这是一种最近在美国东南部出现的严重制约黄瓜(Cucurbita pepo L.)生产的二联乞猴病毒。我们在受感染南瓜的雄花和雌花组织(包括花粉和胚珠)中发现了高浓度的 CuLCrV。病毒渗入了果实组织,包括内果皮和菌核,从解剖学角度看,它们与种子相邻。在种子中,除了种皮外,在没有维管连接的胚乳和胚中也检测到了 CuLCrV。在从受感染果实上采集的种子培育的幼苗的胚根、羽叶、子叶和真叶中都检测到了病毒。在进行的生长试验中,CuLCrV 的感染率为后代植株的 17-56%。为了确保部分病毒基因组片段不会被误认为是病毒的复制形式,我们进行了 RCA ̶ PCR 扩增,并从感染 CuLCrV 的南瓜种子组织、幼苗和后代植株中扩增出完整的 CuLCrV DNA-A 和 DNA-B。从一株后代植株中恢复了近乎完整的 CuLCrV DNA-A 和 DNA-B 序列,进一步验证了我们的发现。我们的研究结果表明,CuLCrV 可以从黄色南瓜的无性组织转移到生殖组织,并在种子中持续存在,随后诱导后代植株感染,这证实了它的种子传播能力。
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来源期刊
Plant disease
Plant disease 农林科学-植物科学
CiteScore
5.10
自引率
13.30%
发文量
1993
审稿时长
2 months
期刊介绍: Plant Disease is the leading international journal for rapid reporting of research on new, emerging, and established plant diseases. The journal publishes papers that describe basic and applied research focusing on practical aspects of disease diagnosis, development, and management.
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