Battaglia Marina E, Martin María Victoria, Lechner Leandra, Martínez-Noël Giselle M A, Salerno Graciela L
Instituto de Investigaciones en Biodiversidad y Biotecnología (INBIOTEC-CONICET) and Fundación para Investigaciones Biológicas Aplicadas (FIBA), Mar del Plata, Argentina.
PLoS One. 2017 Sep 25;12(9):e0185286. doi: 10.1371/journal.pone.0185286. eCollection 2017.
Alkaline/neutral invertases (A/N-Inv), glucosidases that irreversibly hydrolyze sucrose into glucose and fructose, play significant roles in plant growth, development, and stress adaptation. They occur as multiple isoforms located in the cytosol or organelles. In Arabidopsis thaliana, two mitochondrial A/N-Inv genes (A/N-InvA and A/N-InvC) have already been investigated. In this study, we functionally characterized A/N-InvH, a third Arabidopsis gene coding for a mitochondrial-targeted protein. The phenotypic analysis of knockout mutant plants (invh) showed a severely reduced shoot growth, while root development was not affected. The emergence of the first floral bud and the opening of the first flower were the most affected stages, presenting a significant delay. A/N-InvH transcription is markedly active in reproductive tissues. It is also expressed in the elongation and apical meristem root zones. Our results show that A/N-InvH expression is not evident in photosynthetic tissues, despite being of relevance in developmental processes and mitochondrial functional status. NaCl and mannitol treatments increased A/N-InvH expression twofold in the columella root cap. Moreover, the absence of A/N-InvH prevented ROS formation, not only in invh roots of salt- and ABA-treated seedlings but also in invh control roots. We hypothesize that this isoform may take part in the ROS/sugar (sucrose or its hydrolysis products) signaling pathway network, involved in reproductive tissue development, cell elongation, and abiotic stress responses.
碱性/中性转化酶(A/N-Inv)是一类将蔗糖不可逆地水解为葡萄糖和果糖的糖苷酶,在植物生长、发育及胁迫适应过程中发挥着重要作用。它们以多种同工型的形式存在于细胞质或细胞器中。在拟南芥中,已经对两个线粒体A/N-Inv基因(A/N-InvA和A/N-InvC)进行了研究。在本研究中,我们对A/N-InvH进行了功能表征,它是拟南芥中第三个编码靶向线粒体蛋白的基因。敲除突变体植株(invh)的表型分析表明,地上部生长严重受抑,而根部发育未受影响。第一个花芽的出现和第一朵花的开放是受影响最严重的阶段,出现了显著延迟。A/N-InvH转录在生殖组织中明显活跃。它也在根伸长区和顶端分生组织区域表达。我们的结果表明,尽管A/N-InvH在发育过程和线粒体功能状态中具有相关性,但其在光合组织中的表达并不明显。NaCl和甘露醇处理使根冠柱状细胞中的A/N-InvH表达增加了两倍。此外,A/N-InvH的缺失不仅阻止了盐处理和ABA处理的幼苗invh根中活性氧的形成,也阻止了invh对照根中活性氧的形成。我们推测,这种同工型可能参与了活性氧/糖(蔗糖或其水解产物)信号通路网络,该网络涉及生殖组织发育、细胞伸长和非生物胁迫响应。