Miller Robert Neil Gerard, Costa Alves Gabriel Sergio, Van Sluys Marie-Anne
Universidade de Brasília, Instituto de Ciências Biológicas, 70910-900, Brasilia, DF, Brazil.
Universidade de São Paulo, Instituto de Biociências, 05508-090, São Paulo, SP, Brazil.
Ann Bot. 2017 Mar 1;119(5):681-687. doi: 10.1093/aob/mcw284.
Plants are constantly exposed to evolving pathogens and pests, with crop losses representing a considerable threat to global food security. As pathogen evolution can overcome disease resistance that is conferred by individual plant resistance genes, an enhanced understanding of the plant immune system is necessary for the long-term development of effective disease management strategies. Current research is rapidly advancing our understanding of the plant innate immune system, with this multidisciplinary subject area reflected in the content of the 18 papers in this Special Issue.
Advances in specific areas of plant innate immunity are highlighted in this issue, with focus on molecular interactions occurring between plant hosts and viruses, bacteria, phytoplasmas, oomycetes, fungi, nematodes and insect pests. We provide a focus on research across multiple areas related to pathogen sensing and plant immune response. Topics covered are categorized as follows: binding proteins in plant immunity; cytokinin phytohormones in plant growth and immunity; plant-virus interactions; plant-phytoplasma interactions; plant-fungus interactions; plant-nematode interactions; plant immunity in Citrus; plant peptides and volatiles; and assimilate dynamics in source/sink metabolism.
Although knowledge of the plant immune system remains incomplete, the considerable ongoing scientific progress into pathogen sensing and plant immune response mechanisms suggests far reaching implications for the development of durable disease resistance against pathogens and pests.
植物不断面临不断进化的病原体和害虫的威胁,作物损失对全球粮食安全构成了重大威胁。由于病原体的进化能够克服单个植物抗性基因所赋予的抗病性,因此,深入了解植物免疫系统对于制定有效的疾病管理策略的长期发展至关重要。当前的研究正在迅速增进我们对植物固有免疫系统的理解,本期特刊中的18篇论文的内容反映了这一多学科研究领域。
本期重点介绍了植物固有免疫特定领域的进展,重点关注植物宿主与病毒、细菌、植原体、卵菌、真菌、线虫和害虫之间发生的分子相互作用。我们着重介绍了与病原体感知和植物免疫反应相关的多个领域的研究。涵盖的主题分类如下:植物免疫中的结合蛋白;细胞分裂素植物激素在植物生长和免疫中的作用;植物-病毒相互作用;植物-植原体相互作用;植物-真菌相互作用;植物-线虫相互作用;柑橘中的植物免疫;植物肽和挥发物;以及源/库代谢中的同化物动态。
尽管对植物免疫系统的了解仍然不完整,但目前在病原体感知和植物免疫反应机制方面取得的重大科学进展表明,这对于开发针对病原体和害虫的持久抗病性具有深远意义。