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首页> 外文期刊>BMC Plant Biology >Molecular characterization of the genome-wide BOR transporter gene family and genetic analysis of BnaC04.BOR1;1c in Brassica napus
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Molecular characterization of the genome-wide BOR transporter gene family and genetic analysis of BnaC04.BOR1;1c in Brassica napus

机译:基因组宽硼转运蛋白基因家族及BNAC04.BOR1的遗传分析的分子表征; 1C在Brassica Napus中

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摘要

Boron (B) deficiency is an agricultural problem that causes significant losses of crop yield in many areas of the world. However, systematic analysis of BOR family genes for B transport in rapeseed is still lacking. We aimed to identify and characterize BOR transporters in Brassica napus and the potential role of these transporters in B homeostasis in response to B deficiency. Here, we identified 20 BOR transporters from the Brassica napus genome, which were classified into six distinct groups that represent clear orthologous relationships to their family members in Arabidopsis. qRT-PCR revealed distinct expression profiles for BnBORs in different tissues and in response to external B levels. The B-efficient cultivar QY10 accumulated more B in shoots than the B-inefficient cultivar W10, and overexpression of BnaBOR1;1c could alleviate shoot B-deficiency symptoms in W10 by distributing more B from roots to shoots. Additionally, BnBOR1;1c expression was up-regulated by B deficiency, and the induction of BnBOR1;1c was more intense in QY10. Moreover, two conserved InDels were found in the promoter regions of BnBOR1;1c within different B-efficient genotypes. Overall, the molecular characterization of the BnBOR genes of two B-efficient cultivars and their responses to B deficiency highlights the diversity of the family members in B. napus, and BnaC4.BOR1;1c has potential as a candidate gene for improving B nutrition.
机译:硼(B)缺乏是一个农业问题,导致世界许多地区的作物产量的显着损失。然而,仍然缺乏对Bor族族传输的Bor家族基因的系统分析。我们的旨在识别和表征Brassica Napus的硼转运蛋白,以及这些转运蛋白在B稳态中的潜在作用是响应B缺乏症。在此,我们鉴定了来自芸苔属植物基因组的20个硼转运蛋白,其分为六个不同的群体,其与拟南芥中的家庭成员表示明确的正交关系。 QRT-PCR揭示了不同组织中BNBORS的不同表达曲线,并响应于外部B水平。 B高效的品种QY10在芽中累积了更多的B,而不是B效率的品种W10,并且BNaBor1的过度表达可以通过将更多B从根部分配到射击来减轻W10中的射击B缺乏症状。此外,Bnbor1; 1C表达受到B缺乏症的上调,BNBOR1的诱导; 1C在QY10中更强烈。此外,在Bnbor1的启动子区域中发现了两个保守的诱导; 1C在不同的B效率基因型中。总体而言,两种高效培养的BNBor基因的分子表征及其对B缺乏的反应突出了B. Napus和BNAC4.BOR1的家族成员的多样性.1C具有改善B营养的候选基因。

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