RAPD标记B20的分子分析显示,凡纳滨对虾(Penaeus vannamei)有两个微卫星和mRNA的差异表达。

D K Garcia, A K Dhar, A Alcivar-Warren
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引用次数: 0

摘要

我们之前报道了在凡纳滨对虾中发现的一个种群特异性DNA片段(B20),该片段使用随机扩增多态性DNA (RAPD)方法发现,该片段存在于种群2中,而不存在于种群1和4中。本研究的具体目的是克隆和测序该遗传标记,确定该克隆序列的全部或部分是否可以在该标记无法扩增的任何其他群体中找到,并通过使用Northern blot杂交检查mRNA的稳态表达水平来检查该标记是否代表功能基因。1259 bp B20克隆序列信息显示2颗微卫星和2个候选开放阅读框。虽然整个B20序列只能在种群2(来自厄瓜多尔)、种群3(种群1和种群2的杂交)和少量野生厄瓜多尔虾样本中扩增,但在种群1、2、3、候选种群4和野生厄瓜多尔虾样本中可以扩增到部分B20 DNA。这些微型卫星的大小因人口和家庭而异。使用放射性标记的B20探针进行Northern blot杂交分析,检测到约1.5和2.0 kb的两个mRNA转录本。在整个发育过程中的表达数据表明,这些转录本在使用种群1的亲本检测的三个杂交中的两个的nauplii中存在低水平。在三个杂交中,有一个杂交的后幼虫(PL) 6、PL8和PL10的含量较高。所有杂交个体在幼鱼尾肌中均表现出较高的表达水平。在zoea 3、PL2和PL4发育阶段和尾肌中未检测到mRNA转录水平。B20 mRNA转录本的表达水平在种群1、2、3、4和野生厄瓜多尔个体之间,以及种群1中七个家族的个体之间和个体内部都有显著差异。总之,B20克隆揭示了两个微卫星的存在,它们在种群之间大小不同。这些微型卫星将有助于估计种群内和种群间的遗传多样性,确定家族特异性标记,以及绘制对虾经济上重要性状的位点。B20克隆检测到的mRNA水平在发育过程中存在差异表达,其表达模式受亲本杂交遗传背景的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular analysis of a RAPD marker (B20) reveals two microsatellites and differential mRNA expression in Penaeus vannamei.

We previously reported a population-specific DNA fragment (B20) in Penaeus vannamei shrimp, fragment found using the randomly amplified polymorphic DNA (RAPD) procedure, that was present in Population 2 but not in Populations 1 and 4. The specific objectives of this study were to clone and sequence this genetic marker, determine if all or part of this cloned sequence could be found in any of the other populations in which this marker could not be amplified, and examine if this marker represents a functional gene by examining the steady-state levels of mRNA expression using Northern blot hybridization. Sequence information of the 1259-bp B20 clone revealed two microsatellites and two candidate open reading frames. Although the entire B20 sequence could only be amplified in Population 2 (from Ecuador), Population 3 (a hybrid of Populations 1 and 2), and a few individuals from wild Ecuadorian shrimp samples, portions of the B20 DNA could be amplified in individuals from Populations 1, 2, 3, candidate Population 4, and wild Ecuadorian samples. These microsatellites vary in size between populations and families. Northern blot hybridization analysis using radiolabeled B20 probe detected two mRNA transcripts of approximately 1.5 and 2.0 kb. Expression data throughout development indicated that these transcripts were present at low levels in nauplii from two of the three crosses examined using broodstocks of Population 1. Higher levels were observed in postlarvae (PL) 6, PL8, and PL10 in one of the three crosses. Individuals from all crosses showed higher levels of expression in the juvenile tail muscle. The mRNA transcript levels were undetected in zoea 3, PL2, and PL4 stages of development and broodstock tail muscle. The levels of expression of B20 mRNA transcripts varied significantly between Populations 1, 2, 3, 4, and wild Ecuadorian individuals as well as between families and within individuals representative of seven families from Population 1. In summary, the B20 clone revealed the presence of two microsatellites that vary in size between populations. These microsatellites will be useful for estimating genetic diversity within and between populations, identifying family-specific markers, and mapping loci responsible for economically important traits in penaeid shrimp. The mRNA levels detected by the B20 clone showed differential expression during development, and the pattern of expression was influenced by the genetic background of the parental crosses used.

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