Lei Yingying, Chen Cui, Chen Wenjun, Dai Hongyan
College of Horticulture, Shenyang Agricultural University, Shenyang 110866, China.
Plant Physiol. 2024 Dec 2;196(4):2795-2811. doi: 10.1093/plphys/kiae467.
Breeding dwarf apple (Malus domestica) varieties is a recent trend in agriculture because such varieties are easy to maintain and have high yields; however, dwarf apple trees generally have poor stress tolerance. Balancing apple plant height and stress response has been an important breeding goal. In this study, aux/indole-3-acetic acid 29 gene in apple (MdIAA29) overexpression lines (#1, #2, and #3) had reduced plant height by 39%, 31%, and 35%, respectively, suitable for close planting applications. Surprisingly, the dwarf MdIAA29-overexpressing lines also showed increased plant tolerance to salt and drought stresses. Further analysis showed that MdIAA29 inhibited the regulation of auxin response factor 4 (ARF4) on Gretchen Hagen 3.9 (GH3.9) gene and 9-cis-epoxycarotenoid dioxygenase 3 (NCED3) gene in apple and changed the contents of auxin and abscisic acid in different tissues, thus achieving a balance between plant height and stress tolerance. In addition, we also found that MdIAA7 enhanced the inhibitory effect of MdIAA29 on MdARF4. In brief, the MdIAA29-MdARF4 complex significantly impacts the height of apple plants and their ability to respond to salt and drought stress.
培育矮化苹果(苹果属)品种是农业领域的一个新趋势,因为这类品种易于养护且产量高;然而,矮化苹果树通常抗逆性较差。平衡苹果植株高度和应激反应一直是一个重要的育种目标。在本研究中,苹果中的生长素/吲哚 - 3 - 乙酸29基因(MdIAA29)过表达系(#1、#2和#3)的株高分别降低了39%、31%和35%,适合密植应用。令人惊讶的是,MdIAA29过表达的矮化株系对盐胁迫和干旱胁迫的耐受性也有所增强。进一步分析表明,MdIAA29抑制了生长素响应因子4(ARF4)对苹果中格雷琴·哈根3.9(GH3.9)基因和9 - 顺式环氧类胡萝卜素双加氧酶3(NCED3)基因的调控,并改变了不同组织中生长素和脱落酸的含量,从而实现了植株高度和抗逆性之间的平衡。此外,我们还发现MdIAA7增强了MdIAA29对MdARF4的抑制作用。简而言之,MdIAA29 - MdARF4复合物对苹果植株的高度及其对盐胁迫和干旱胁迫的响应能力有显著影响。