Department of Plant Physiology, Swammerdam Institute of Life Sciences, University of Amsterdam, 1098 XH Amsterdam, The Netherlands.
Proc Natl Acad Sci U S A. 2012 Dec 4;109(49):20124-9. doi: 10.1073/pnas.1208756109. Epub 2012 Nov 19.
Tomato breeding has been tremendously efficient in increasing fruit quality and quantity but did not focus on improving herbivore resistance. The biosynthetic pathway for the production of 7-epizingiberene in a wild tomato was introduced into a cultivated greenhouse variety with the aim to obtain herbivore resistance. 7-Epizingiberene is a specific sesquiterpene with toxic and repellent properties that is produced and stored in glandular trichomes. We identified 7-epizingiberene synthase (ShZIS) that belongs to a new class of sesquiterpene synthases, exclusively using Z-Z-farnesyl-diphosphate (zFPP) in plastids, probably arisen through neo-functionalization of a common ancestor. Expression of the ShZIS and zFPP synthases in the glandular trichomes of cultivated tomato resulted in the production of 7-epizingiberene. These tomatoes gained resistance to several herbivores that are pests of tomato. Hence, introduction of this sesquiterpene biosynthetic pathway into cultivated tomatoes resulted in improved herbivore resistance.
番茄育种在提高果实质量和数量方面非常有效,但并未专注于提高抗虫性。本研究将野生番茄中产生 7-表姜烯的生物合成途径引入到温室栽培品种中,旨在获得抗虫性。7-表姜烯是一种具有毒性和驱避性的特定倍半萜烯,在腺毛中产生并储存。我们鉴定了 ShZIS(7-表姜烯合酶),它属于一个新的倍半萜合酶家族,仅在质体中使用 Z-Z-法呢基二磷酸(zFPP),可能是通过共同祖先的新功能化而产生的。在栽培番茄的腺毛中表达 ShZIS 和 zFPP 合酶可产生 7-表姜烯。这些番茄对几种以番茄为害的害虫具有抗性。因此,将这种倍半萜生物合成途径引入到栽培番茄中可提高其抗虫性。