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在菌根形成方面是否存在遗传变异? (你提供的原文“Is there genetic variation in mycorrhization of?”似乎不完整,少了具体所指对象,我是按照合理理解翻译的。)

Is there genetic variation in mycorrhization of ?

作者信息

Dreher Dorothée, Yadav Heena, Zander Sindy, Hause Bettina

机构信息

Department of Cell and Metabolic Biology, Leibniz Institute of Plant Biochemistry, Halle, Germany.

出版信息

PeerJ. 2017 Sep 7;5:e3713. doi: 10.7717/peerj.3713. eCollection 2017.

Abstract

Differences in the plant's response among ecotypes or accessions are often used to identify molecular markers for the respective process. In order to analyze genetic diversity of in respect to interaction with the arbuscular mycorrhizal (AM) fungus , mycorrhizal colonization was evaluated in 32 lines of the nested core collection representing the genetic diversity of the SARDI collection. All studied lines and the reference line Jemalong A17 were inoculated with and the mycorrhization rate was determined at three time points after inoculation. There were, however, no reliable and consistent differences in mycorrhization rates among all lines. To circumvent possible overlay of potential differences by use of the highly effective inoculum, native sandy soil was used in an independent experiment. Here, significant differences in mycorrhization rates among few of the lines were detectable, but the overall high variability in the mycorrhization rate hindered clear conclusions. To narrow down the number of lines to be tested in more detail, root system architecture (RSA) of -grown seedlings of all lines under two different phosphate (Pi) supply condition was determined in terms of primary root length and number of lateral roots. Under high Pi supply (100 µM), only minor differences were observed, whereas in response to Pi-limitation (3 µM) several lines exhibited a drastically changed number of lateral roots. Five lines showing the highest alterations or deviations in RSA were selected and inoculated with using two different Pi-fertilization regimes with either 13 mM or 3 mM Pi. Mycorrhization rate of these lines was checked in detail by molecular markers, such as transcript levels of and . Under high phosphate supply, the ecotypes L000368 and L000555 exhibited slightly increased fungal colonization and more functional arbuscules, respectively. To address the question, whether capability for mycorrhizal colonization might be correlated to general invasion by microorganisms, selected lines were checked for infection by the root rot causing pathogen, . The mycorrhizal colonization phenotype, however, did not correlate with the resistance phenotype upon infection with two strains of as L000368 showed partial resistance and L000555 exhibited high susceptibility as determined by quantification of rRNA within infected roots. Although there is genetic diversity in respect to pathogen infection, genetic diversity in mycorrhizal colonization of is rather low and it will be rather difficult to use it as a trait to access genetic markers.

摘要

不同生态型或种质间植物反应的差异常被用于识别各自过程的分子标记。为了分析在与丛枝菌根(AM)真菌相互作用方面的遗传多样性,在代表SARDI种质遗传多样性的32个巢式核心种质系中评估了菌根定殖情况。所有研究的种质系和参考系Jemalong A17都接种了[具体接种物未提及],并在接种后的三个时间点测定了菌根化率。然而,所有种质系之间的菌根化率没有可靠且一致的差异。为了避免使用高效接种物可能掩盖潜在差异,在一项独立实验中使用了天然沙质土壤。在此实验中,少数种质系之间的菌根化率存在显著差异,但菌根化率的总体高变异性阻碍了得出明确结论。为了更详细地缩小待测试种质系的数量,在两种不同的磷酸盐(Pi)供应条件下,根据主根长度和侧根数量测定了所有种质系的 - 生长幼苗的根系结构(RSA)。在高Pi供应(100 μM)下,仅观察到微小差异,而在Pi限制(3 μM)条件下,几个种质系的侧根数量发生了剧烈变化。选择了五个在RSA方面表现出最大变化或偏差的种质系,并使用13 mM或3 mM Pi的两种不同Pi施肥方案接种[具体接种物未提及]。通过分子标记,如[具体基因未提及]和[具体基因未提及]的转录水平,详细检查了这些种质系的菌根化率。在高磷供应下,生态型L000368和L000555分别表现出真菌定殖略有增加和更多功能性丛枝。为了解决菌根定殖能力是否可能与微生物的一般入侵相关的问题,对选定的种质系检查了由根腐病致病病原体[具体病原体未提及]引起的感染情况。然而,菌根定殖表型与感染两种[具体病原体未提及]菌株后的抗性表型不相关,因为通过定量感染根内的[具体基因未提及]rRNA确定,L000368表现出部分抗性,L000555表现出高易感性。尽管在病原体感染方面存在遗传多样性,但[具体植物未提及]菌根定殖的遗传多样性相当低,将其用作获取遗传标记的性状将相当困难。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3454/5592082/4eef08c00432/peerj-05-3713-g001.jpg

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