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Molecular cloning of the tomato Hairless gene implicates actin dynamics in trichome-mediated defense and mechanical properties of stem tissue

机译:番茄的分子克隆无毛基因牵涉肌动蛋白动力学在毛组织介导的干组织防御和机械特性中

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摘要

Trichomes are epidermal structures that provide a first line of defense against arthropod herbivores. The recessive hairless (hl) mutation in tomato (Solanum lycopersicum L.) causes severe distortion of trichomes on all aerial tissues, impairs the accumulation of sesquiterpene and polyphenolic compounds in glandular trichomes, and compromises resistance to the specialist herbivore Manduca sexta. Here, we demonstrate that the tomato Hl gene encodes a subunit (SRA1) of the highly conserved WAVE regulatory complex that controls nucleation of actin filaments in a wide range of eukaryotic cells. The tomato SRA1 gene spans a 42-kb region containing both Solyc11g013280 and Solyc11g013290. The hl mutation corresponds to a complex 3-kb deletion that removes the last exon of the gene. Expression of a wild-type SRA1 cDNA in the hl mutant background restored normal trichome development, accumulation of glandular trichome-derived metabolites, and resistance to insect herbivory. These findings establish a role for SRA1 in the development of tomato trichomes and also implicate the actin-cytoskeleton network in cytosolic control of specialized metabolism for plant defense. We also show that the brittleness of hl mutant stems is associated with altered mechanical and cell morphological properties of stem tissue, and demonstrate that this defect is directly linked to the mutation in SRA1.
机译:毛滴虫是提供针对节肢动物食草动物的第一道防线的表皮结构。番茄(Solanum lycopersicum L.)的隐性无毛(hl)突变会导致所有气生组织中毛状体的严重变形,损害倍半萜烯和多酚类化合物在腺毛状体中的积累,并削弱了对特异草食性Manduca sexta的抗性。在这里,我们证明了番茄H1基因编码高度保守的WAVE调控复合物的亚基(SRA1),该复合物控制着广泛的真核细胞中肌动蛋白丝的成核。番茄的SRA1基因跨越一个42kb的区域,包含Solyc11g013280和Solyc11g013290。 hl突变对应于复杂的3-kb缺失,其删除了基因的最后一个外显子。在hl突变体背景中表达野生型SRA1 cDNA可恢复正常的毛状体发育,腺性毛状体来源的代谢产物的积累以及对昆虫的食草性的抵抗力。这些发现建立了SRA1在番茄毛状体发育中的作用,并且还暗示了肌动蛋白-细胞骨架网络参与植物防御的专门代谢的胞质控制。我们还表明,hl突变茎的脆性与茎组织的改变的机械和细胞形态特性有关,并证明此缺陷与SRA1中的突变直接相关。

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