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Enhancing Neoplasm Expression in Field Pea (Pisum sativum) via Intercropping and Its Significance to Pea Weevil (Bruchus pisorum) Management

机译:通过间作增强豌豆(Pisum sativum)的肿瘤表达及其对豌豆象鼻虫(Bruchus pisorum)的管理意义

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摘要

Neoplasm formation, a non-meristematic tissue growth on young field pea (Pisum sativum L.) pods is triggered in the absence of UV light and/or in response to oviposition by pea weevil (Bruchus pisorum L.). This trait is expressed in some genotypes [neoplastic (Np) genotypes] of P. sativum and has the capacity to obstruct pea weevil larval entry into developing seeds. In the present study, 26% of the tested accessions depicted the trait when grown under greenhouse conditions. However, UV light inhibits full expression of this trait and subsequently it is inconspicuous at the field level. In order to investigate UV light impact on the expression of neoplasm, particular Np genotypes were subjected to UV lamp light exposure in the greenhouse and sunlight at the field level. Under these different growing conditions, the highest mean percentage of Np pods was in the control chamber in the greenhouse (36%) whereas in single and double UV lamp chambers, the percentage dropped to 10 and 15%, respectively. Furthermore, when the same Np genotypes were grown in the field, the percentage of Np pods dropped significantly (7%). In order to enhance Np expression at the field level, intercropping of Np genotypes with sorghum was investigated. As result, the percentage of Np pods was threefold in intercropped Np genotypes as compared to those without intercropping. Therefore, intercropping Np genotypes with other crops such as sorghum and maize can facilitate neoplasm formation, which in turn can minimize the success rate of pea weevil larvae entry into developing seeds. Greenhouse artificial infestation experiments showed that pea weevil damage in Np genotypes is lower in comparison to wild type genotypes. Therefore, promoting Np formation under field conditions via intercropping can serve as part of an integrated pea weevil management strategy especially for small scale farming systems.
机译:在没有紫外光和/或豌豆象鼻虫(Bruchus pisorum L.)产卵的情况下,会触发新芽的形成,即在豌豆(Pisum sativum L.)荚上的非变生组织生长。该性状在豌豆假单胞菌的某些基因型[肿瘤(Np)基因型]中表达,并具有阻止豌豆象鼻虫幼虫进入发育中的种子的能力。在本研究中,在温室条件下生长时,有26%的受试种质表现出该性状。但是,紫外线会抑制该性状的完整表达,因此在田间水平上并不明显。为了研究紫外线对肿瘤表达的影响,对特定的Np基因型在温室和日光下进行了野外紫外线照射。在这些不同的生长条件下,Np荚的最高平均百分比在温室的控制室内(36%),而在单灯和双灯紫外线灯室中,该百分比分别降至10%和15%。此外,当在田间种植相同的Np基因型时,Np荚的百分比显着下降(7%)。为了增强田间水平上的Np表达,研究了Np基因型与高粱间作。结果,间作Np基因型的Np荚的百分比是不间作Np荚的百分比的三倍。因此,将Np基因型与其他作物(例如高粱和玉米)间作可促进赘生物的形成,从而可将豌豆象鼻虫幼虫进入发育中的种子的成功率降至最低。温室人工侵染试验表明,与野生型基因型相比,Np基因型的豌豆象鼻虫危害要低。因此,通过间作在田间条件下促进Np的形成可以作为豌豆象鼻虫综合治理策略的一部分,尤其是对于小规模耕作系统而言。

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