LeClere Sherry, Schmelz Eric A, Chourey Prem S
USDA-ARS1, Center for Medical and Veterinary Entomology, Chemistry Unit, 1700 SW 23rd Drive, Gainesville, FL 32608-1069, USA.
Phytochemistry. 2008 Feb;69(3):692-9. doi: 10.1016/j.phytochem.2007.09.011. Epub 2007 Oct 26.
The Zea mays (maize) miniature1 (Mn1) locus encodes the cell wall invertase INCW2, which is localized predominantly in the basal endosperm transfer layer (BETL) of developing kernels and catalyzes conversion of sucrose into glucose and fructose. Mutations in Mn1 result in numerous changes that include a small kernel phenotype resulting from both decreased cell size and number. To explore the pleiotropic effects of this mutation, we investigated the levels of indole-3-acetic acid (IAA), abscisic acid (ABA), salicylic acid (SA), and jasmonic acid (JA) in basal regions, upper regions, and embryos of developing kernels in the inbred line W22. We measured phytohormones from 6 to 28 days after pollination (DAP) in wild type (WT) and two alleles of mn1, mn1-1 and mn1-89. IAA was the predominant hormone in kernels, with WT levels of free IAA accumulating over time to more than 2microg/g of fresh weight. Kernels of mn1-1 accumulated up to 10-fold less IAA than WT, and levels of IAA sugar conjugates were similarly reduced. Although less abundant, differences were also observed in levels of ABA, JA, and SA between WT and the mn1 alleles. SA levels were increased by as much as 10-fold in mn1-1, and mn1-89 displayed intermediate SA levels at most timepoints. These findings indicate that invertase-mediated sucrose cleavage directly or indirectly regulates the levels of key plant hormones during seed development.
玉米(Zea mays)的微型1(Mn1)位点编码细胞壁转化酶INCW2,该酶主要定位于发育中籽粒的胚乳基部转移层(BETL),并催化蔗糖转化为葡萄糖和果糖。Mn1突变会导致许多变化,包括由于细胞大小和数量减少而产生的小籽粒表型。为了探究该突变的多效性,我们研究了自交系W22发育中籽粒的基部区域、上部区域和胚中吲哚-3-乙酸(IAA)、脱落酸(ABA)、水杨酸(SA)和茉莉酸(JA)的水平。我们在授粉后6至28天(DAP)测量了野生型(WT)以及mn1的两个等位基因mn1-1和mn1-89中的植物激素。IAA是籽粒中的主要激素,野生型中游离IAA的水平随时间积累至超过2μg/g鲜重。mn1-1的籽粒积累的IAA比野生型少多达10倍,IAA糖缀合物的水平也同样降低。尽管含量较少,但在野生型和mn1等位基因之间,ABA、JA和SA的水平也存在差异。mnl-1中的SA水平增加了多达10倍,并且mn1-89在大多数时间点显示出中等的SA水平。这些发现表明,转化酶介导的蔗糖裂解直接或间接调节种子发育过程中关键植物激素的水平。