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小麦根分泌物中的二羟丙酮可作为燕麦孢囊线虫的引诱剂。

Dihydroxyacetone of wheat root exudates serves as an attractant for Heterodera avenae.

机构信息

Key Laboratory of Plant Pathology of Hubei Province, College of Plant Science & Technology, Huazhong Agricultural University, Wuhan, Hubei, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Science, Beijing, China.

出版信息

PLoS One. 2020 Jul 23;15(7):e0236317. doi: 10.1371/journal.pone.0236317. eCollection 2020.

Abstract

Heterodera avenae, as an obligate endoparasite, causes severe yield loss in wheat (Triticum aestivum). Investigation on the mechanisms how H. avenae perceives wheat roots is limited. Here, the attractiveness of root exudates from eight plant genotypes to H. avenae were evaluated on agar plates. Results showed that the attraction of H. avenae to the root exudates from the non-host Brachypodium distachyon variety Bd21-3 was the highest, approximately 50 infective second-stage juveniles (J2s) per plate, followed by that from three H. avenae-susceptible wheat varieties, Zhengmai9023, Yanmai84 and Xiangmai25, as well as the resistant one of Xinyuan958, whereas the lowest attractive activity was observed in the two H. avenae-resistant wheat varieties, Xianmai20 (approximately 12 J2s/plate) and Liangxing66 (approximately 11 J2s/plate). Then Bd21-3, Zhengmai9023 and Heng4399 were selected for further assays as their different attractiveness and resistance to H. avenae, and attractants for H. avenae in their root exudates were characterized to be heat-labile and low-molecular compounds (LM) by behavioral bioassay. Based on these properties of the attractants, a principle of identifying attractants for H. avenae was set up. Then LM of six root exudates from the three plants with and without heating were separated and analyzed by HPLC-MS. Finally, dihydroxyacetone (DHA), methylprednisolone succinate, embelin and diethylpropionin in the root exudates were identified to be putative attractants for H. avenae according to the principle, and the attraction of DHA to H. avenae was validated by behavioral bioassay on agar. Our study enhances the recognition to the orientation mechanism of H. avenae towards wheat roots.

摘要

燕麦孢囊线虫是一种专性内寄生线虫,会导致小麦(Triticum aestivum)严重减产。目前对于燕麦孢囊线虫感知小麦根系的机制的研究还很有限。本研究采用琼脂平板法,评价了 8 种基因型小麦根系分泌物对燕麦孢囊线虫的吸引力。结果表明,非寄主植物短柄草 Bd21-3 根系分泌物对燕麦孢囊线虫的吸引力最强,每个平板约有 50 条感染性 2 龄幼虫(J2),其次是 3 个燕麦孢囊线虫敏感小麦品种郑麦 9023、烟 25 和偃 22,以及抗性品种新麦 958,而 2 个燕麦孢囊线虫抗性小麦品种先 20 和良星 66 的根系分泌物对燕麦孢囊线虫的吸引力最低,每个平板约有 12 条和 11 条 J2。因此,选择 Bd21-3、郑麦 9023 和衡 4399 进行进一步的分析,因为它们对燕麦孢囊线虫的吸引力和抗性不同,并且通过行为生物测定法发现它们的根系分泌物中的引诱剂是热不稳定的和低分子量化合物(LM)。基于这些引诱剂的特性,建立了鉴定燕麦孢囊线虫引诱剂的原理。然后通过 HPLC-MS 对这三种植物的未加热和加热后的 6 种根系分泌物中的 LM 进行分离和分析。最后,根据原理,从这三种植物的根系分泌物中鉴定出二羟丙酮(DHA)、甲泼尼龙琥珀酸钠、棓丙酯和乙基丙酯是燕麦孢囊线虫的可能引诱剂,并用琼脂上的行为生物测定法验证了 DHA 对燕麦孢囊线虫的吸引力。本研究提高了对燕麦孢囊线虫朝向小麦根系定向机制的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd5b/7377440/62bcdc6af730/pone.0236317.g001.jpg

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