MacAlister Cora A, Ortiz-Ramírez Carlos, Becker Jörg D, Feijó José A, Lippman Zachary B
Cold Spring Harbor Laboratory, Cold Spring Harbor, NY, 11746, USA.
Instituto Gulbenkian de Ciência, P-2780-156, Oeiras, Portugal.
Plant J. 2016 Jan;85(2):193-208. doi: 10.1111/tpj.13079. Epub 2015 Dec 27.
Hydroxyproline O-arabinosyltransferases (HPATs) are members of a small, deeply conserved family of plant-specific glycosyltransferases that add arabinose sugars to diverse proteins including cell wall-associated extensins and small signaling peptides. Recent genetic studies in flowering plants suggest that different HPAT homologs have been co-opted to function in diverse species-specific developmental contexts. However, nothing is known about the roles of HPATs in basal plants. We show that complete loss of HPAT function in Arabidopsis thaliana and the moss Physcomitrella patens results in a shared defect in gametophytic tip cell growth. Arabidopsis hpat1/2/3 triple knockout mutants suffer from a strong male sterility defect as a consequence of pollen tubes that fail to fully elongate following pollination. Knocking out the two HPAT genes of Physcomitrella results in larger multicellular filamentous networks due to increased elongation of protonemal tip cells. Physcomitrella hpat mutants lack cell-wall associated hydroxyproline arabinosides and can be rescued with exogenous cellulose, while global expression profiling shows that cell wall-associated genes are severely misexpressed, implicating a defect in cell wall formation during tip growth. Our findings point to a major role for HPATs in influencing cell elongation during tip growth in plants.
羟脯氨酸O-阿拉伯糖基转移酶(HPATs)是一个小型的、高度保守的植物特异性糖基转移酶家族的成员,该家族能将阿拉伯糖添加到多种蛋白质上,包括与细胞壁相关的伸展蛋白和小信号肽。最近在开花植物中的遗传学研究表明,不同的HPAT同源物已被用于在不同物种特异性的发育环境中发挥作用。然而,关于HPATs在基部植物中的作用却一无所知。我们发现,拟南芥和小立碗藓中HPAT功能的完全丧失会导致配子体顶端细胞生长出现共同缺陷。拟南芥hpat1/2/3三重敲除突变体由于授粉后花粉管未能完全伸长而出现严重的雄性不育缺陷。敲除小立碗藓的两个HPAT基因会导致多细胞丝状网络变大,这是由于原丝体顶端细胞伸长增加所致。小立碗藓hpat突变体缺乏与细胞壁相关的羟脯氨酸阿拉伯糖苷,并且可以用外源纤维素挽救,而全局表达谱分析表明与细胞壁相关的基因严重表达错误,这意味着顶端生长过程中细胞壁形成存在缺陷。我们的研究结果表明,HPATs在影响植物顶端生长过程中的细胞伸长方面发挥着重要作用。