Raymond James A, Morgan-Kiss Rachael
School of Life Sciences, University of Nevada, Las Vegas, Las Vegas, Nevada, 89154, USA.
Department of Microbiology, Miami University, Oxford, Ohio, 45056, USA.
J Phycol. 2017 Aug;53(4):848-854. doi: 10.1111/jpy.12550. Epub 2017 Jul 5.
Ice-associated algae produce ice-binding proteins (IBPs) to prevent freezing damage. The IBPs of the three chlorophytes that have been examined so far share little similarity across species, making it likely that they were acquired by horizontal gene transfer (HGT). To clarify the importance and source of IBPs in chlorophytes, we sequenced the IBP genes of another Antarctic chlorophyte, Chlamydomonas sp. ICE-MDV (Chlamy-ICE). Genomic DNA and total RNA were sequenced and screened for known ice-associated genes. Chlamy-ICE has as many as 50 IBP isoforms, indicating that they have an important role in survival. The IBPs are of the DUF3494 type and have similar exon structures. The DUF3494 sequences are much more closely related to prokaryotic sequences than they are to sequences in other chlorophytes, and the chlorophyte IBP and ribosomal 18S phylogenies are dissimilar. The multiple IBP isoforms found in Chlamy-ICE and other algae may allow the algae to adapt to a greater variety of ice conditions than prokaryotes, which typically have a single IBP gene. The predicted structure of the DUF3494 domain has an ice-binding face with an orderly array of hydrophilic side chains. The results indicate that Chlamy-ICE acquired its IBP genes by HGT in a single event. The acquisitions of IBP genes by this and other species of Antarctic algae by HGT appear to be key evolutionary events that allowed algae to extend their ranges into polar environments.
与冰相关的藻类会产生冰结合蛋白(IBP)以防止冻害。到目前为止,已检测的三种绿藻的IBP在物种间几乎没有相似性,这表明它们可能是通过水平基因转移(HGT)获得的。为了阐明绿藻中IBP的重要性和来源,我们对另一种南极绿藻莱茵衣藻ICE-MDV(Chlamy-ICE)的IBP基因进行了测序。对基因组DNA和总RNA进行测序,并筛选已知的与冰相关的基因。Chlamy-ICE有多达50种IBP亚型,这表明它们在生存中起着重要作用。这些IBP属于DUF3494类型,具有相似的外显子结构。DUF3494序列与原核生物序列的关系比与其他绿藻序列的关系更为密切,并且绿藻IBP和核糖体18S系统发育不同。在Chlamy-ICE和其他藻类中发现的多种IBP亚型可能使藻类比通常只有单个IBP基因的原核生物能够适应更多种冰条件。DUF3494结构域的预测结构有一个带有有序排列的亲水性侧链的冰结合面。结果表明,Chlamy-ICE通过一次HGT事件获得了其IBP基因。这种藻类和其他南极藻类通过HGT获得IBP基因似乎是关键的进化事件,使藻类能够将其分布范围扩展到极地环境。