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Ethylene-induced changes in lignification and cell wall-degrading enzymes in the roots of mungbean (Vigna radiata) sprouts

机译:乙烯诱导的绿豆(Vigna radiata)芽根中木质化和细胞壁降解酶的变化

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As an important regulator, ethylene inhibits root growth and development in plants. To determine the mechanism of ethylene on root elongation growth and lateral root formation, ethylene-induced lignification and cell wall-degrading enzymes in the roots of mungbean sprouts were tested. We initially observed that primary root elongation and lateral root numbers were inhibited, while lignin content was enhanced by ethephon (ETH). Cell wall remolding proteins, polygalacturonase (PG) and carboxymethyl cellulose (Cx) activities were reduced, but α-expansins and xyloglucan endotransglucosylases/hydrolases (XTH) were enhanced by ETH. The promotion in lignin production was correlated with changes in activities of key lignin biosynthesis enzymes and hydrogen peroxide (H_2O_2) content. These actions induced by ETH were altered via treatment with an ethylene perception antagonist (Ag~+). We subsequently demonstrated that the role of endogenous ethylene in regulating root elongation growth and lateral root formation were correlated with lignification and cell wall-degrading enzymes, respectively. These results suggested that the ethylene-regulated inhibition of primary root elongation growth was caused by an increase in lignification that reinforced the cell wall and shortened root length, and the suppression of lateral root formation was linked to activities of PG, Cx, a-expansins and XTH.
机译:作为重要的调节剂,乙烯抑制植物根系的生长和发育。为了确定乙烯对根伸长增长和侧根形成的机制,测试了乙烯诱导的绿豆芽木质化和细胞壁降解酶。最初,我们观察到主根伸长和侧根数受到抑制,而乙烯利(ETH)增强了木质素含量。 ETH降低了细胞壁重塑蛋白,聚半乳糖醛酸酶(PG)和羧甲基纤维素(Cx)的活性,但α-扩展酶和木葡聚糖内切葡糖苷酶/水解酶(XTH)增强了。木质素生产的促进与关键木质素生物合成酶活性的变化和过氧化氢(H_2O_2)的含量有关。通过用乙烯感知拮抗剂(Ag〜+)治疗改变了由ETH诱导的这些作用。随后,我们证明了内源性乙烯在调节根伸长生长和侧根形成中的作用分别与木质化和细胞壁降解酶有关。这些结果表明,乙烯调节的对初生根伸长的抑制作用是由木质化的增加引起的,木质化的增加增强了细胞壁并缩短了根的长度,而侧根形成的抑制与PG,Cx,α-扩展酶的活性有关。和XTH。

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