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白桦BpHOX2转录因子与不同的顺式作用元件结合并赋予渗透耐受性。

Betula platyphylla BpHOX2 transcription factor binds to different cis-acting elements and confers osmotic tolerance.

作者信息

Tan Zilong, Wen Xuejing, Wang Yucheng

机构信息

CAS Key Laboratory of Biogeography and Bioresource in Arid Land, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, 830011, China.

State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, 830011, China.

出版信息

J Integr Plant Biol. 2020 Nov;62(11):1762-1779. doi: 10.1111/jipb.12994. Epub 2020 Aug 12.

Abstract

The homeodomain-leucine zipper (HD-Zip) proteins play crucial roles in plant developmental and environmental responses. However, how they mediate gene expression to facilitate abiotic stress tolerance remains unknown. In the present study, we characterized BpHOX2 (encoding a HD-Zip I family protein) from birch (Betula platyphylla). BpHOX2 is predominately expressed in mature stems and leaves, but expressed at a low level in apical buds and roots, suggesting that it has tissue-specific characteristics. BpHOX2 expression was highly induced by osmotic and salt, but only slightly induced by abscisic acid. Overexpression of BpHOX2 markedly improved osmotic tolerance, while knockdown of BpHOX2 increased sensitivity to osmotic stress. BpHOX2 could induce the expression of pyrroline-5-carboxylate synthase, peroxidase, and superoxide dismutase genes to improve proline levels and the reactive oxygen species scavenging capability. Chromatin immunoprecipitation sequencing combined with RNA sequencing showed that BpHOX2 could bind to at least four cis-acting elements, including dehydration-responsive element "RCCGAC", Myb-p binding box "CCWACC," and two novel cis-acting elements with the sequences of "AAGAAG" and "TACGTG" (termed HBS1 and HBS2, respectively) to regulate gene expression. Our results suggested that BpHOX2 is a transcription factor that binds to different cis-acting elements to regulate gene expression, ultimately improving osmotic tolerance in birch.

摘要

同源异型域-亮氨酸拉链(HD-Zip)蛋白在植物发育和环境响应中发挥着关键作用。然而,它们如何介导基因表达以促进非生物胁迫耐受性仍不清楚。在本研究中,我们对桦树(白桦)中的BpHOX2(编码一种HD-Zip I家族蛋白)进行了表征。BpHOX2主要在成熟茎和叶中表达,但在顶芽和根中表达水平较低,这表明它具有组织特异性特征。BpHOX2的表达受到渗透和盐胁迫的高度诱导,但仅受到脱落酸的轻微诱导。BpHOX2的过表达显著提高了渗透耐受性,而BpHOX2的敲低则增加了对渗透胁迫的敏感性。BpHOX2可以诱导脯氨酸-5-羧酸合成酶、过氧化物酶和超氧化物歧化酶基因的表达,以提高脯氨酸水平和活性氧清除能力。染色质免疫沉淀测序结合RNA测序表明,BpHOX2可以与至少四个顺式作用元件结合,包括脱水响应元件“RCCGAC”、Myb-p结合框“CCWACC”以及两个序列分别为“AAGAAG”和“TACGTG”的新型顺式作用元件(分别称为HBS1和HBS2),以调节基因表达。我们的结果表明,BpHOX2是一种转录因子,它与不同的顺式作用元件结合以调节基因表达,最终提高桦树的渗透耐受性。

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