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首页> 外文期刊>Frontiers in Plant Science >Genome-Wide Identification and Characterization of the Aquaporin Gene Family and Transcriptional Responses to Boron Deficiency in Brassica napus
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Genome-Wide Identification and Characterization of the Aquaporin Gene Family and Transcriptional Responses to Boron Deficiency in Brassica napus

机译:甘蓝型油菜的水通道蛋白基因家族的全基因组鉴定和特征以及对硼缺乏的转录响应

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Aquaporins (AQPs) are an abundant protein family and play important roles to facilitate small neutral molecule transport across membranes. Oilseed rape ( Brassica napus L.) is an important oil crop in China and elsewhere in the world, and is very sensitive to low boron (B) stress. Several AQP family genes have been reported to be involved in B transport across plasma membranes in plants. In this study, a total of 121 full-length AQPs were identified and characterized in B. napus (AC genome), and could be classified into four sub-families, including 43 PIPs (plasma membrane intrinsic proteins), 35 TIPs (tonoplast intrinsic proteins), 32 NIPs (NOD26-like intrinsic proteins), and 11 SIPs (small basic intrinsic proteins). The gene characteristics of BnaAQP s were similar to those of BraAQP s (A genome) and BolAQP s (C genome) including the composition of each sub-family, gene structure, and substrate selectivity filters. The BnaNIP was the most complex AQP sub-family, reflecting the composition of substrate selectivity filter structures which affect the permeation of solution molecules. In this study, the seedlings of both B-efficient (QY10) and B-inefficient (W10) cultivars were treated with two boron (B) levels: deficient (0.25 μM B) and sufficient (25 μM B). The transcription of AQP genes in root (R), juvenile leaf (JL), and old leaf (OL) tissues of both cultivars was investigated under B deficient and sufficient conditions. Transcription of most BnaPIP s and BnaTIP s was significantly increased compared with other BnaAQP s in all the three tissues, especially in the roots, of both B-efficient and B-inefficient cultivars under both B conditions. With B deprivation, the expression of the majority of the BnaPIP s and BnaTIP s was down-regulated in the roots. However, the BnaNIP s were up-regulated. In addition, the BnaCnn_random . PIP1;4b, BnaPIP2;4 s, BnaC04.TIP4;1a, BnaAnn_random.TIP1;1b , and BnaNIP5;1 s (except for BnaA07.NIP5;1c and BnaC06.NIP5;1c ) exhibited obvious differences at low B between B-efficient and B-inefficient cultivars. These results will help us to understand boron homeostasis in B. napus .
机译:水通道蛋白(AQP)是一个丰富的蛋白质家族,在促进中性小分子跨膜运输方面起着重要作用。油菜(Brassica napus L.)是中国和世界其他地区的重要油料作物,对低硼(B)胁迫非常敏感。据报道,一些AQP家族基因参与了植物跨质膜的B转运。在这项研究中,共鉴定了121个全长AQP,并在油菜B. napus(AC基因组)中进行了表征,可以分为四个亚科,包括43个PIP(质膜内在蛋白),35个TIP(液泡内在蛋白),32个NIP(类似于NOD26的内在蛋白)和11个SIP(小的基本内在蛋白)。 BnaAQP的基因特征与BraAQP的基因特征(A基因组)和BolAQP的基因特征(C基因组)相似,包括每个亚家族的组成,基因结构和底物选择性滤膜。 BnaNIP是最复杂的AQP子家族,反映了影响溶液分子渗透的底物选择性过滤器结构的组成。在这项研究中,对低效B(QY10)和低效B(W10)品种的幼苗均采用两种硼(B)水平处理:不足(0.25μMB)和足够(25μMB)。在B缺乏和充分条件下,研究了两个品种的根(R),幼叶(JL)和老叶(OL)组织中AQP基因的转录。与BnaAQP相比,B效率高和B效率低的两个品种在三个B条件下,大多数BnaPIP和BnaTIP的转录均显着增加。随着B的剥夺,大多数BnaPIP和BnaTIP的表达在根中被下调。但是,BnaNIP被上调。另外,BnaCnn_random。 PIP1; 4b,BnaPIP2; 4 s,BnaC04.TIP4; 1a,BnaAnn_random.TIP1; 1b和BnaNIP5; 1 s(BnaA07.NIP5; 1c和BnaC06.NIP5; 1c除外)在低B时在B-之间表现出明显差异高效和低效率的品种。这些结果将有助于我们了解油菜中的硼稳态。

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