Man Yao-Yang, Lv Yan-Hui, Lv Hui-Min, Jiang Han, Wang Tao, Zhang Ya-Li, Li Yuan-Yuan
National Apple Engineering Technology Research Center, Shandong Collaborative Innovation, Center of Fruit & Vegetable Quality and Efficient Production, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, 271018, Shandong, China.
Tai'an Institute for Food and Drug Control, Tai-An, 271000, Shandong, China.
Plant Physiol Biochem. 2024 Jan;206:108288. doi: 10.1016/j.plaphy.2023.108288. Epub 2023 Dec 20.
Apple epidermal wax protects plants from environmental stresses, determines fruit gloss and improves postharvest storage quality. However, the molecular mechanisms underlying the biosynthesis and regulation of apple epidermal waxes are not fully understood. In this study, we isolated a MdDEWAX gene from apple, which localized in the nucleus, expressed mainly in apple fruit, and induced by drought. We transformed the MdDEWAX gene into Arabidopsis, and found that heterologous expression of MdDEWAX reduced the accumulation of cuticular waxes in leaves and stems, increased epidermal permeability, the rate of water loss, and the rate of chlorophyll extraction of leaves and stems, altered the sensitivity to ABA, and reduced drought tolerance. Meanwhile, overexpression or silencing of the gene in the epidermis of apple fruits decreased or increased wax content, respectively. This study provides candidate genes for breeding apple cultivars and rootstocks with better drought tolerance.
苹果表皮蜡质可保护植物免受环境胁迫,决定果实光泽并提高采后贮藏品质。然而,苹果表皮蜡质生物合成及调控的分子机制尚未完全明确。在本研究中,我们从苹果中分离出一个MdDEWAX基因,该基因定位于细胞核,主要在苹果果实中表达,并受干旱诱导。我们将MdDEWAX基因转入拟南芥,发现MdDEWAX的异源表达降低了叶片和茎中角质蜡质的积累,增加了表皮通透性、水分散失速率以及叶片和茎的叶绿素提取率,改变了对脱落酸的敏感性,并降低了耐旱性。同时,该基因在苹果果实表皮中的过表达或沉默分别降低或增加了蜡质含量。本研究为培育具有更好耐旱性的苹果品种和砧木提供了候选基因。