Departamento de Fisiología Vegetal, Centro Hispano Luso de Investigaciones Agrarias, Universidad de Salamanca. Plaza Doctores de la Reina s/n, 37007 Salamanca, Spain.
Plant Cell Physiol. 2013 Jun;54(6):960-70. doi: 10.1093/pcp/pct050. Epub 2013 Mar 28.
βIII-Gal, a member of the chickpea β-galactosidase family, is the enzyme responsible for the cell wall autolytic process. This enzyme, whose activity increases during epicotyl growth, displays significant hydrolytic activity against cell wall pectins, and its natural substrate has been determined as an arabinogalactan from the pectic fraction of the cell wall. In the present work, the localization of βIII-Gal in different seedling and plant organs was analyzed by using specific anti-βIII-Gal antibodies. Our results revealed that besides its possible role in cell wall loosening and in early events during primary xylem and phloem fiber differentiation βIII-Gal acts on the development of sieve elements. Localization of the enzyme in this tissue, both in epicotyls and radicles from seedlings and in the different stem internodes, is consistent with the reduction in galactan during the maturation of phloem elements, as can be observed with LM5 antibodies. Thus, βIII-Gal could act on its natural substrate, the neutral side chains of rhamnogalacturonan I, contributing to cell wall reinforcement allowing phloem elements to differentiate, and conferring the necessary strengthening of the cell wall to fulfill its function. This work completes the immunolocation studies of all known chickpea β-galactosidases. Taken together, our results reflect the broad range of developmental processes covered by different members of this protein family, and confirm their crucial role in cell wall remodeling during tissue differentiation.
βIII-Gal 是鹰嘴豆β-半乳糖苷酶家族的一员,是负责细胞壁自溶过程的酶。这种酶的活性在胚轴生长过程中增加,对细胞壁果胶显示出显著的水解活性,其天然底物已被确定为细胞壁果胶部分的阿拉伯半乳聚糖。在本工作中,通过使用特异性抗-βIII-Gal 抗体分析了βIII-Gal 在不同幼苗和植物器官中的定位。我们的结果表明,除了在细胞壁疏松和初生木质部和韧皮部纤维分化的早期事件中可能发挥作用外,βIII-Gal 还作用于筛管的发育。该酶在组织中的定位,无论是在幼苗的胚轴和根中,还是在不同的茎节间,都与韧皮部元素成熟过程中半乳糖的减少一致,如 LM5 抗体所观察到的。因此,βIII-Gal 可以作用于其天然底物,即半乳糖醛酸 I 的中性侧链,有助于细胞壁的加固,允许韧皮部元素分化,并赋予细胞壁必要的强化,以履行其功能。这项工作完成了所有已知鹰嘴豆β-半乳糖苷酶的免疫定位研究。总之,我们的结果反映了这个蛋白质家族的不同成员所涵盖的广泛发育过程,并证实了它们在组织分化过程中细胞壁重塑中的关键作用。